Teses / dissertações sobre o tema "Agroforestery Systems"
Crie uma referência precisa em APA, MLA, Chicago, Harvard, e outros estilos
Veja os 50 melhores trabalhos (teses / dissertações) para estudos sobre o assunto "Agroforestery Systems".
Ao lado de cada fonte na lista de referências, há um botão "Adicionar à bibliografia". Clique e geraremos automaticamente a citação bibliográfica do trabalho escolhido no estilo de citação de que você precisa: APA, MLA, Harvard, Chicago, Vancouver, etc.
Você também pode baixar o texto completo da publicação científica em formato .pdf e ler o resumo do trabalho online se estiver presente nos metadados.
Veja as teses / dissertações das mais diversas áreas científicas e compile uma bibliografia correta.
Gebreeyesus, Kinfe Asayehegn. "Impact of climate change on the agro-ecological innovation of coffee agroforestery systems in central Kenya". Thesis, Montpellier, SupAgro, 2017. http://www.theses.fr/2017NSAM0010/document.
Texto completo da fonteClimate change and variability is the most widespread anthropogenic challenge affecting agricultural production and productivity particularly in the tropics. Coffee sector is sensitive to climate change as it requires relatively cold temperature and higher rainfall duration. Adaptation to climate change in the coffee agroforestry is, therefore, important to address the impacts, but there are barriers, and limits. The aim of this Thesis was to analyze the adaptation strategies to climate change in Central Kenya. We studied the steps in adaptation, which includes (1) the knowledge on climate change and adaptation, the motivation towards adaptation, (2) current choices of households’ adaptation strategies, and their determinants, (3) the roles of innovation system and institutional context to support adaptation. This study was based on four sources of information: - (1) Focus Group Discussions to predefine the questionnaires, (2) household surveys, (3) stakeholders interview, and, (4) historical climate data. The data collection considered four farming typologies; - food crops, specialized coffee, diversified coffee-dairy and specialized dairy farming systems in the coffee and food crops zones. Mann-Kendal trend analysis and Sen’s slope estimator were used to compare the farmers’ knowledge of climate change with the historical climate data, while Heckman model was used to analyze adaptation strategies and their determinants. The findings explore consistent results between farmers’ knowledge and historical data analysis for temperature, while inconsistency is observed in rainfall change. Analysis of farmers’ perception revealed rainfall is radically declining over time, while no evidence in rainfall record is found to support the farmers’ perception. The inconsistency is therefore, substantiated with analysis of patterns. Coffee and food crop farmers are found to adapt to climate change differently. Farmers who are aware of the changes are found more willing to explore adaptation strategies although some of the farmers who do not perceive the climate is changing are also adopting strategies for factors other than perception. The comparison between coffee and dairy sectors found that actors in the coffee are limited, the system is highly centralized with limited options for farmers to process and market their products, while the dairy sector is informally controlled by demand based business and comparatively, numerous actors. We conclude in this study that the patterns in rainfall affects the farming activities of the study area higher than the annual changes. Consequently, farmers adopt a series of adaptation strategies in response to their perception of changes in climate and economic pressure in the farm. This adaptation to climate change also depends on the nature of actors’ interaction and institutional context. In relation to policy development, this Thesis contributes to household level adaptation policies, research policies and international agreements and negotiations. The household level policy recommendations consists of three scenarios. Farmers’ intensification in coffee applying the right technological innovations. The second and third policy options are the diversification to dairy and complete sectoral transformation to dairy depending on the profitability and adaptation level of the sectors. The results in this study are derived from surveys and analysis of innovation systems. Other strategies such as new infrastructural development and institutional subsidies could be potential for adaptation. We therefore, recommend, these could be potential future research topics
Anderson, Thomas R. "Computer modelling of agroforestry systems". Thesis, University of Edinburgh, 1991. http://hdl.handle.net/1842/13429.
Texto completo da fonteSinclair, Fergus L. "Light interception and growth in agroforestry systems". Thesis, University of Edinburgh, 1995. http://hdl.handle.net/1842/14424.
Texto completo da fonteBealey, William James. "Agroforestry systems for ammonia air quality management". Thesis, University of Edinburgh, 2016. http://hdl.handle.net/1842/20402.
Texto completo da fonteSalazar, Diaz Ricardo. "Effet de la diversité végétale sur la production des systèmes de culture multi-espèces, cas des systèmes agroforestiers de Talamanca, Costa Rica". Thesis, Montpellier, 2017. http://www.theses.fr/2017MONTT099/document.
Texto completo da fonteAdding plant diversity is increasingly presented as a mean to improve the sustainability of agrosystems. However, there is still a lack of knowledge on how plant functional diversity alters processes that support production. Because they cover a broad range of plant diversity, agroforestry systems in the tropics are a good case study to better understand the diversity-production relation. Agroforestry systems in the Talamanca region in Costa Rica are particularly interesting because among the cultivated plants they encompass, banana and cacao are two cash crops of major importance and for which production can easily be quantified and analyzed. Another specificity of these systems is that their vertical and horizontal organization is particularly diverse. Understanding how plant diversity and its organization alter the performances of these complex systems is particularly challenging and requires developing new approaches. The objectives of this thesis were to address the following questions: i) Which factors affect the relationship between plant diversity and productivity? ii) How plant diversity influences the global productivity of agroforestry systems? and iii) How the spatial structure of the plant community affects yields?First, a meta-analysis was carried out to address the diversity-production issue among a very broad range of systems world-wide. This analysis focused on how latitude, climate, and canopy structure modify the effect of plant richness on productivity of agricultural and natural ecosystems. It showed that the gain per unit of diversity added decreased as plant richness increased. Our findings also showed that the response of productivity to plant richness largely depends on the type of plants in the community, especially if the community includes trees.Then, we extensively studied the diversity and the productivity of 180 plots located within 20 fields in the Talamanca region. A global evaluation of the productivity of these systems was possible with the estimation of the production of each plant during 1 year. This production was converted into income according to local market prices. While we observed a global positive effect of plant diversity on global income, this effect was contrasted according to the functional group considered (banana, cacao, other fruits, timber, firewood. When considering the functional group separately, there was a positive effect of plant diversity for higher strata groups and a negative effect for lower strata groups. This suggested that complementarity between plants was stronger than competition for those plants occupying the higher strata of the canopy but that competition was stronger than complementarity for plants occupying the lower strata of the canopy.The second part of the analysis of the Talamanca fields dataset focused on the effect of neighbouring plants on the production of banana and cacao plants. An individual-based analysis was developed to determine whether the number of neighbouring plants of a given functional groups explained the potential yield of each banana or cacao plant. We found that the distance at which other plants alters the yield of banana or cacao plants was greater for larger functional groups (fruit or wood trees) than for smaller ones (cacao trees or banana plants). Interestingly, higher strata trees had a smaller effect than lower strata trees, suggesting that moderate densities of tall trees could be compatible with high banana and cacao production. These findings were discussed in terms of complementary and competition with respect to the availability of light at higher and lower strata of the canopy. On an applied perspective, our results suggest that productivity could be maximized by a reasonably number of plant species, and then we proposed new direction to organize fields in order to maximize the production of cash crops while providing supplementary income for farmers and ecosystem services
Choengthong, Suchart. "Agroforestry in the south of Thailand /". free to MU campus, to others for purchase, 1999. http://wwwlib.umi.com/cr/mo/fullcit?p9962512.
Texto completo da fonteToth, Justina Marie. "Assessment of potential agroforestry systems for Kafuta a village in the Western Division of the Gambia /". CONNECT TO THIS TITLE ONLINE, 2007. http://etd.lib.umt.edu/theses/available/etd-12292007-102517.
Texto completo da fonteGraves, Anil Robert. "Bio-economic evaluation of agroforestry systems for Europe". Thesis, Cranfield University, 2005. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.426067.
Texto completo da fonteNascimento, Wagner Luiz Nascimento do. "Desenvolvimento de sistemas agroflorestais nos territórios rurais da Amazônia". Electronic Thesis or Diss., Le Mans, 2024. http://www.theses.fr/2024LEMA3009.
Texto completo da fonteThe debate on other ways of farming is necessary and urgent. The crises that areravaging society increasingly highlight the importance of adapting practices, techniquesand tools to produce in rural areas of the Amazon. For centuries, family farming hasbeen based on a practice that consists of cutting and burning the forest, linked toitinerant agriculture. Recent factors, such as population growth and the demand forfood, have increased the production areas to meet market demand. This endangersnatural resources such as water, soil and air. Rethinking production methods andsystems is a key point to achieve family farming capable of meeting the fundamentalaspects of sustainability. In this sense, agroforestry systems (AFS) are an alternativeadopted by family farmers in the Amazon, as they are well adapted to the diverserealities of the region, but these systems are spreading slowly. Thus, the presentresearch aims to identify the aspects related to the barriers that prevent the adoptionand/or diffusion of AFS in family farming and the possible adoption strategies that cancontribute to overcoming them in rural areas of the Amazon. The research wasconducted in the floodplain areas of Igarapé-Miri and on the mainland of Tomé-Açu,Eastern Amazon, adopting a qualitative-quantitative research approach, withexploratory and descriptive purposes. At the end of the research, as main results, weidentified that research on SAF has focused on a more socio-environmental debate,while the main barriers identified both at the property level and at the multi-level spatiallevels Local/Territorial and Regional/Federal, the factors that limit the adoption of SAFare linked to socioeconomic factors. Another result is to consider both the specificitiesof the biophysical environment to structure these systems and the techniques used toimplement them, considering various aspects of the farms such as availability of labor,financial resources, time, materials, inputs, among others. Finally, another extremelyimportant result that we identified is linked to cooperation relationships and the creationof networks in the territory: they reveal strategic and fundamental elements to overcomethe barriers encountered and thus support family farmers in the agroecologicaltransition
O debate sobre outras formas de fazer agricultura é necessário e urgente. As crises queassolam a sociedade destacam cada vez mais a importância da adaptação de práticas,técnicas e ferramentas para produzir nos territórios rurais da Amazônia. A agriculturafamiliar baseou-se durante séculos numa prática que consiste no corte e queima dafloresta, ligada à agricultura itinerante. Fatores recentes, como o crescimentopopulacional e a procura de alimentos, intensificaram as áreas de produção parasatisfazer a procura do mercado. Isto põe em perigo recursos naturais como a água, osolo e o ar. Repensar os métodos e sistemas de produção é um ponto chave paraalcançar uma agricultura familiar capaz de atender aos aspectos fundamentais dasustentabilidade. Nesse sentido, os sistemas agroflorestais (SAFs) são uma alternativaadotada pelos agricultores familiares na Amazônia, pois estão bem adaptados àsdiversas realidades da região, mas esses sistemas estão se espalhando lentamente.Assim, a presente pesquisa tem como objetivo identificar os aspectos relacionados àsbarreiras que impedem a adoção e/ou difusão do SAF na agricultura familiar e aspossíveis estratégias de adoção que possam contribuir para superá-las nos territóriosrurais da Amazônia. A pesquisa foi realizada nas áreas de várzea do Igarapé-Miri e nocontinente de Tomé-Açu, Amazônia Oriental, adotando uma abordagem de pesquisaquali-quantitativa, com fins exploratórios e descritivos. Ao final da pesquisa, comoprincipais resultados, identificamos que a pesquisa sobre SAF tem se concentrado emum debate mais socioambiental, enquanto as principais barreiras identificadas tanto nonível da propriedade quanto nos multiníveis espaciais Local/Territorial eRegional/Federal, o os factores que limitam a adopção do SAF estão ligados a factoressocioeconómicos. Outro resultado é considerar tanto as especificidades do ambientebiofísico para estruturar esses sistemas quanto as técnicas utilizadas para implementálos,considerando diversos aspectos das fazendas como disponibilidade de mão de obra,recursos financeiros, tempo, materiais, insumos, entre outros. Por fim, outro resultadoextremamente importante que identificamos está ligado às relações de cooperação e àcriação de redes no território: revelam-se elementos estratégicos e fundamentais parasuperar as barreiras encontradas e assim apoiar os agricultores familiares na transiçãoagroecológica
Meylan, Louise. "Design of cropping systems combining production and ecosystem services : developing a methodology combining numerical modeling and participation of farmers. Application to coffee-based agroforestry in Costa Rica". Thesis, Montpellier, SupAgro, 2012. http://www.theses.fr/2012NSAM0031/document.
Texto completo da fonteIn the face of increasing concerns about sustainability of agricultural production, cropping systemsare evolving towards systems that fulfill multiple agronomic and environmental objectives. Researchin cropping systems design (CSD) is concerned with studying the effect of farming practices oncropping systems and their performance. The interaction between production and ecosystemservices, and quantification of trade-offs between the two, is a key aspect of this research. A varietyof approaches have been theorized, such as use of models and mobilization of expert knowledge.Models allows fast and low-cost testing of the effect of farming practices under a variety ofconditions, but the application of theoretical outcomes to on-farm changes can be limited by localconstraints and researcher-farmer communication. Mobilizing farmers and other relevantstakeholders for CSD can help overcome these obstacles; however this limits innovation to the scopeof expert knowledge.The objective of this thesis is to combine modeling and participatory methods for a CSD frameworkthat harnesses the potential of numerical modeling while ensuring the proposed solutions take intoaccount socioeconomic and environmental constraints. After an overview of current advances inprototyping and CSD, we propose an methodological framework divided into four parts; a) combininga typology of farming practices and a conceptual model to appraise the diversity of farming practices,constraints and trade-offs at the plot scale in a defined production area; b) collection of field data forquantifying relevant trade-offs between production and ecosystem services; c) selecting andpreparing an appropriate numerical model for simulating the effects of farming practices onproduction and provision of ecosystem services; and d) evaluating whether the interaction of farmerswith a numerical model can generate candidate cropping systems that fulfill our agro-environmentalobjectives (provision of ecosystem service) as well as being suitable for the farmers who will adaptthem for on-farm experimentation.The coffee-based agroforestry systems (coffee/shade trees) of central Costa Rica were the chosenproduction system for answering these questions. Agroforestry systems offer plentiful opportunitiesfor valuing ecosystem services in addition to crop production; the combination of two perennialcrops brings long-term performance assessment and sustainability of the system to the heart of thequestion. Coffee cultivation in central Costa Rica concerns a large amount of livelihoods, but is alsobased on intensive management of a highly valued cash crop vulnerable to price fluctuations on theglobal market as well as climate change. Steep slopes and heavy rainfall also cause high levels of soilerosion; yet certain indirect erosion control practices (such as the use of shade trees of weeds) alsohave an impact on coffee production. The reconciliation of these two aspects offers the opportunityto test our methodological framework in situations where precise discussions onproduction/environment trade-offs are needed.Finally, in the last chapter we reflect on the importance of correctly choosing and preparing the rightmodel for the job, potential application of this methodology, as well as the recommendations wereable to make in terms of erosion control practices in the study area
Williams, Sandy E. "Interactions between components of rubber agroforestry systems in Indonesia". Thesis, Bangor University, 2000. https://research.bangor.ac.uk/portal/en/theses/interactions-between-components-of-rubber-agroforestry-systems-in-indonesia(c3d48899-f75c-4e88-b305-7d1e31930670).html.
Texto completo da fonteHoward, Stephen B. "Resource capture and productivity of agroforestry systems in Kenya". Thesis, University of Nottingham, 1997. http://eprints.nottingham.ac.uk/28417/.
Texto completo da fonteKaonga, Martin Leckson. "Understanding carbon dynamics in agroforestry systems in Eastern Zambia". Thesis, University of Cambridge, 2005. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.615272.
Texto completo da fonteOduol, Peter Allan. "Genetic assessment of perennial Sesbania species in agroforestry systems". Thesis, University of Edinburgh, 1994. http://hdl.handle.net/1842/11226.
Texto completo da fonteChiwindo, Privata Simon. "Economics of Mono-Cropping and Agroforestry Systems in Tanzania". The Ohio State University, 2016. http://rave.ohiolink.edu/etdc/view?acc_num=osu1469175239.
Texto completo da fonteBotengan, Mary Ann Pollisco. "Organization of household labor in agroforestry systems: Philippine cases". Diss., The University of Arizona, 1990. http://hdl.handle.net/10150/185236.
Texto completo da fonteMohiuddin, Mohammed. "Plant water relations in a model agroforestry system". Thesis, University of Edinburgh, 1992. http://hdl.handle.net/1842/11174.
Texto completo da fonteJeswani, Sapna D. "ADSS a web-based agroforestry decision support system /". [Gainesville, Fla.] : University of Florida, 2003. http://purl.fcla.edu/fcla/etd/UFE0000709.
Texto completo da fonteWalker, Daniel Harmen. "A knowledge-based systems approach to agroforestry research and extension". Thesis, Bangor University, 1994. https://research.bangor.ac.uk/portal/en/theses/a-knowledgebased-systems-approach-to-agroforestry-research-and-extension(01899f22-8cf4-42be-897e-00e904d186f3).html.
Texto completo da fonteBorremans, Lieve. "The development of agroforestry systems in Flanders. A farming systems research approach to social, institutional and economic inquiry". Doctoral thesis, Universite Libre de Bruxelles, 2019. https://dipot.ulb.ac.be/dspace/bitstream/2013/281527/3/TOC.pdf.
Texto completo da fonteDoctorat en Sciences agronomiques et ingénierie biologique
info:eu-repo/semantics/nonPublished
Lott, James E. "Resource capture and use in semi-arid overstorey agroforestry systems". Thesis, University of Nottingham, 1998. http://eprints.nottingham.ac.uk/27974/.
Texto completo da fonteOkorio, John. "Light interception and water use in boundary planting : agroforestry systems". Thesis, University of Reading, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.325164.
Texto completo da fonteGomes, Lucas de Carvalho. "Soil CO2 Efflux in Agroforestry and Full-Sun Coffee Systems". Universidade Federal de Viçosa, 2014. http://www.locus.ufv.br/handle/123456789/6469.
Texto completo da fonteMade available in DSpace on 2015-10-29T11:11:58Z (GMT). No. of bitstreams: 1 texto completo.pdf: 803649 bytes, checksum: 1e519e635e92e44f028a9515469cedbe (MD5) Previous issue date: 2014-10-29
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior
A mudança climática global tem sido atribuída ao aumento da concentração de gases de efeito estufa na atmosfera, especialmente o dióxido de carbono (CO2), como resultado das atividades humanas. Para atenuar esse efeito, existe um esforço global em reduzir as emissões de CO2 e desenvolver tecnologias para remover parte desse gás da atmosfera. A maneira mais simples e natural para remover o CO2 da atmosfera é realizada pelas plantas através da fotossíntese. Este processo remove o carbono da atmosfera formando biomassa vegetal, a qual mais tarde será depositada no solo, maior reservatório de carbono (2500 GtC) na biosfera terrestre. O balanço de carbono no solo é resultado da deposição de biomassa vegetal e perda de carbono, especialmente como CO2. Portanto, o solo, no ciclo global do carbono, pode atuar como fonte ou dreno de carbono da atmosfera. Para melhor compreensão do papel do solo no ciclo do carbono não é suficiente conhecer apenas a quantidade de carbono que determinadas espécies de plantas depositam no solo, mas também como esse carbono é liberado de volta para a atmosfera. O CO2 é liberado (efluxo de CO2 do solo) a partir de respiração do solo, a maior fonte de CO2 da biosfera terrestre. O efluxo de CO2 do solo é um processo complexo que depende das características biológicas e físicas do solo, especialmente das condições de temperatura e umidade do solo. No entanto, o tipo de vegetação e as práticas agrícolas podem ser os principais componentes que controlam o efluxo de CO2 do solo em agroecossistemas, porque influenciam as características biológicas e físicas do solo e regulam as condições de temperatura e umidade do solo. Nos sistemas agroflorestais as árvores aportam matéria orgânica no solo e o protegem contra a radiação solar direta, influenciando assim o efluxo de CO2 do solo. O objetivo geral deste estudo foi compreender como a copa das árvores, em sistemas agroflorestais com café, afetam o efluxo de CO2 do solo e quais os fatores controladores deste processo em comparação com café a pleno sol. Para isso avaliou-se o efluxo de CO2 do solo (in situ), em sistemas agroflorestais com café e em sistemas com café a pleno sol em três propriedades de agricultores familiares na Zona da Mata de Minas Gerais, Brasil. O aumento nos níveis de cobertura da copa das árvores resultou no aumento da umidade do solo e na diminuição da temperatura do ar e do solo a 5 e 10 cm de profundidade. O efeito das árvores no microclima não afetou a média diária de efluxo de CO2 do solo entre os sistemas agroflorestais e a pleno sol, mas contribuiu para que a dinâmica das emissões diárias fosse diferente entre os sistemas. No sistema agroflorestal o efluxo de CO2 do solo foi mais estável durante o dia com menor variação entre o período de 08:00-10:00h e 12:00-14:00h e maior variação espacial do que no sistema a pleno sol. No sistema agroflorestal o efluxo de CO2 foi explicado principalmente por variações na quantidade de nitrogênio total e carbono lábil e no sistema a pleno solo pela temperatura do solo, especialmente a 10 cm de profundidade. A análise de componetes principais mostrou que em geral o efluxo de CO2 do solo correlacionou positivamente com a temperatura do solo a 5 e 10 cm de profundidade e negativamente com a umidade do solo. Em conclusão, as árvores em sistemas agroflorestais de café trouxeram maior estabilidade para o microclima e para o efluxo de CO2 do solo comparado com sistemas a pleno sol.
The global climate change has been attributed to increasing greenhouse gas concentration, especially Carbon Dioxide (CO2) in atmosphere as result of human activities. To mitigate this effect, there is a global effort to reduce CO2 emissions and develop technologies to remove part of this gas from the atmosphere. The most simple and natural way to remove CO2 from atmosphere is carried out by plants through photosynthesis. This process removes carbon from atmosphere creating vegetal biomass, which later will be deposited in soil, the biggest reservoir of carbon in the terrestrial biosphere (2500 GtC). The balance of carbon in the soil is the result of input of vegetal biomass and the output of carbon, especially as CO2. Therefore, the soil, in the Global Carbon Cycle, acts either as source or as a sink of carbon from the atmosphere. To better understand the role of soil in Carbon Cycle and to it become sink of CO2 it is not enough to know the carbon that particular plant species can deposit in the soil, but also how this carbon is released back to atmosphere. The CO2 is released from soil (also called soil CO2 efflux) mainly from soil respiration, which is the biggest source of CO2 from terrestrial biosphere. Soil CO2 efflux is a complex process that depends on the soil biological and physical characteristics and especially on the soil temperature and moisture conditions. However, the vegetation type and the agricultural practices may be the main components to control the soil CO2 efflux in agroecosystems, because they influence the soil biological and physical characteristics and control the soil temperature and moisture conditions. Agroforestry coffee management increases the amount of organic matter residue and the canopy’s trees protect the soil against the directly solar radiation, thus, affecting the soil CO2 efflux. The general objective of this study it was to understand how the canopy’s trees in agroforestry and full-sun coffee systems affect the soil CO2 efflux and which factors control it. To this end we evaluated the soil CO2 efflux (in situ) in agroforestry and full-sun coffee systems in three different farms in Zona da Mata of Minas Gerais, Brazil. The increase in canopy cover levels from trees leads to increase soil moisture and decrease air and soil temperature at 5 and 10 cm depth. The effect of trees on microclimate did not affect the daily average of soil CO2 efflux between agroforestry and full-sun coffee systems, but they showed different daily emission dynamics. In agroforestry system the soil CO2 efflux was more stable during the day, presenting less variation from morning to midday and higher spatial variation than the full-sun system. In agroforestry system the variation of soil CO2 efflux was explained mainly by total nitrogen and labile carbon and in full- sun system by soil temperature at 10 cm depth. The principal components analysis shows that in general the soil CO2 efflux was positively correlated with soil temperature at 5 and 10 cm depths and negatively correlated with soil moisture. In conclusion, the trees in agroforestry coffee systems promoted stability to microclimate and soil CO2 efflux compared to Full-Sun systems.
Vigulu, Vaeno Wayne. "Mixed Species and Agroforestry System Interactions in Solomon Islands". Thesis, Griffith University, 2017. http://hdl.handle.net/10072/371221.
Texto completo da fonteThesis (PhD Doctorate)
Doctor of Philosophy (PhD)
School of Natural Sciences
Science, Environment, Engineering and Technology
Full Text
Keen, Christopher Simon. "Utilization of water and light resources by annual crops under semi-arid conditions when planted between Leucaena leucocephala (Lam.) deWit hedgerows". Pretoria : [s.n.], 2007. http://upetd.up.ac.za/thesis/available/etd-07212008-135423.
Texto completo da fonteHägglund, Johanna. "Sustainable Food Production : Farmers’ management of their agroforestry systems in Tanzania". Thesis, Södertörns högskola, Institutionen för naturvetenskap, miljö och teknik, 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:sh:diva-27911.
Texto completo da fonteZiegler, Henrique Ricardo Souza. "Sustainability of Agroforestry Systems in semiarid of Cearà using local inputs". Universidade Federal do CearÃ, 2013. http://www.teses.ufc.br/tde_busca/arquivo.php?codArquivo=13140.
Texto completo da fonteFor thousands of years, people have practiced different forms of agriculture, based mostly on the handling of materials available in their own land. Among these, we highlight the organic origin, that allow an improvement of soil quality and increased crop production. In this context, this dissertation presents a study of five years, from 2008 to 2012, of an Agroforestry System (AFS) for growing corn and beans intercropped with gliricidia and cashews, in conditions of northern coast of CearÃ. The (AFS), had four treatments: Testimony (A), under normal conditions the AFS; Dung (B), with the addition of 116 grams of sheep dung in the pit of corn and beans at planting time; Bagana (C), with addition of 16 tons of carnauba straw on the soil as mulch; and Dung + Bagana (D), which is a combination of treatments B and C. In addition to the experimental treatments, 10 local farmers were interviewed to develop the treatment (T) Regional Testimony (local production system). Two analyzes were performed comparing this 5 treatments: Productivity of the system and its Economic analysis. It was concluded that the AFS assists in fixing agriculture, avoiding the opening of new areas for cultivation, having succeeded to higher production levels than the obtained by local itinerant cultivation. Regarding the productivity, was noticed an increasing pattern from treatment T (lower middle), through A, to the D, which has always had the highest average productivity besides showing greater resilience to the effects of drought. The T and A treatments were not economically viable, with negative indicators. Whereas the B, C and D treatments proved feasible economically and financially, with the best indicators in treatment D. For this set of analyzes, the proposed AFS, especially the treatment D, presents itself as the most advantageous for the exploitation of agriculture in studied conditions.
Durante milhares de anos, diferentes povos tÃm praticado uma agricultura baseada no manejo dos materiais disponÃveis nas suas prÃprias terras. Dentre esses, podemos destacar os de origem orgÃnica, que possibilitam uma melhoria da qualidade do solo e um aumento da produtividade vegetal. Nesse contexto, esta dissertaÃÃo apresenta um estudo sobre 5 anos, de 2008 à 2012, de um Sistema Agroflorestal (SAF) para cultivo de milho e feijÃo, consorciados com gliricÃdia e caju, nas condiÃÃes edafoclimÃticas do litoral norte do CearÃ. O referido SAF, apresentou 4 tratamentos: Testemunho (A), em condiÃÃes normais do SAF; Esterco (B), com adiÃÃo de 116 gramas de esterco de ovelha na cova do milho e do feijÃo no momento do plantio; Bagana (C), com adiÃÃo de 16 toneladas de bagana de carnaÃba sobre o solo como cobertura morta; e o Esterco + Bagana (D), que à uma combinaÃÃo dos tratamentos B e C. AlÃm dos tratamentos experimentais, foram entrevistados 10 agricultores locais para elaborar o tratamento (T) Testemunho Regional (sistema de produÃÃo local). Foram realizados duas anÃlises comparando os 5 tratamentos: Produtividade do sistema e sua AnÃlise econÃmica. Concluiu-se que o SAF auxilia na fixaÃÃo da agricultura, evitando a abertura de novas Ãreas para cultivo, pois conseguiu nÃveis produtivos superiores aos obtidos pela agricultura itinerante local. Em relaÃÃo à produtividade, percebeu-se um padrÃo crescente desde o tratamento T (menores mÃdias), passando pelo A, atà o D, que apresentou sempre as maiores mÃdias de produtividade alÃm de apresentar uma maior resiliÃncia aos efeitos da seca. Os tratamentos T e A nÃo foram economicamente viÃveis, apresentando indicadores negativos. Jà os tratamentos B, C e D mostraram-se viÃvel econÃmica e financeiramente, com os melhores indicadores no tratamento D. Por esse conjunto de anÃlises, o SAF proposto, principalmente o tratamento D, se apresenta como o mais vantajoso para exploraÃÃo da agropecuÃria nas condiÃÃes estudadas.
McDermott, Molly E. "The Contribution of Agroforestry Systems to Bird Conservation in the Andes". The Ohio State University, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=osu1397647503.
Texto completo da fonteAsmara, Degi Harja. "Agroforestry on post-mining restoration : a challenge beyond plant mixture systems". Doctoral thesis, Université Laval, 2020. http://hdl.handle.net/20.500.11794/67442.
Texto completo da fonteAgroforestry is a dynamic system of ecological management of renewable natural resources, which by integrating woody species into agricultural fields, farms and other landscapes, diversifies and sustains production for increased socio-economic and environmental benefits. As a solution for the provision of ecosystem services, its application to the restoration of degraded damaged, or destroyed ecosystems becomes very important. Degraded, damaged, or destroyed (3-D) lands by mining is characterized by low fertility soil and sometimes high levels of contaminants. These conditions make them difficult to obtain a short-term advantage from agroforestry compared to arable lands, but its main restorative function of restoring ecosystem services and increasing resilience can be beneficial in the long term. The challenge is to develop the best strategy to accelerate plant productivity while improving the soil and the ecosystem through a combination of ecological engineering techniques for bioremediation of mining areas. Here we explore the mixture of plants, microbial inoculation, and biochar amendment, in a woody-herbaceous agroforestry system. The goal is to find the best bioremediation scenario from the combined effects of mixing plants and other related ecological factors. Previous research on agroforestry and restoration has been reviewed worldwide, including the application of the agroforestry concept in bioremediation of post-mining land area. The known restoration strategy in a given environment is not a universal solution. Thus, the identification of any important aspect of previous work on restoration and agroforestry is crucial. The strategy of mixing plants is an important factor in the successional process. But a statistical accounting of plant-plant interactions and adaptation to multi-species conditions is hard to achieve in field experiments; trials under controlled conditions can distinguish effects of planting density and species interactions in the early stages of plant establishment. In this research, we applied the concept of modified Nelder plots for the combination of plant species in a greenhouse experiment on waste rock and fine tailing to explore the interaction at the start of planting. We also applied microbial inoculum and biochar to the plant mixture in greenhouse and field tests on waste rock and fine tailing as soil material on a post-gold mining site. The performance of the co-planting of four woody species: green alder (Alnus viridis (Chaix) DC. ssp. crispa (Aiton) Turrill); white spruce (Picea glauca (Moench) Voss); trembling aspen (Populus tremuloides Michaux); and littletree willow (Salix arbusculoides Andersson) with the herbaceous plant species: oat (Avena sativa L.); red fescue (Festuca rubra L.) and white clover (Trifolium repens L.) was evaluated. Mixing plants is a very important principle in restoration practices, given its known role to increase biodiversity and functional diversity in the sustainable ecological system. Although the plant mixing strategy has been rarely explored, we have found no mixture provided advantages for both species in paired combinations. At the same time, the positive effect of the density on plant growth suggested that the microclimate improvement had played a role in the early growth of the plantations. The field trial confirms the positive effect of the microclimate modification on plant productivity in higher planting density. The trade-off on plant competition has shown, however, that the highest density does not necessarily show an optimal condition for plant productivity. The interaction effect of biochar and inoculation treatment shows the benefit of this treatment, although the impact varies according to the density of planting. The plantation density was shown as the most important factor in generating the net positive effect. We suggest that the mechanism was correlated with the microclimate improvement through soil plant water conservation and microbial activity enhancement over soil temperature modification. Hence, putting emphasis on microclimate improvement, along with other combined factors including microbial inoculation and biochar amendment is very important for accelerating the restoration processes
Zhang, Heping. "Water use in a poplar tree-pasture system". Thesis, University of Reading, 1996. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.336665.
Texto completo da fonteSood, K. K. "Factors affecting tree growing in traditional agroforestry systems in Western Himalaya, India". Thesis, University of Aberdeen, 2003. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.590941.
Texto completo da fonteMarshall, Fiona M. "Resource partitioning and productivity of perennial pigeonpea/groundnut agroforestry systems in India". Thesis, University of Nottingham, 1995. http://eprints.nottingham.ac.uk/12206/.
Texto completo da fonteBroadhead, Jeremy. "Ecophysiology of indigenous trees in agroforestry systems in the semi-arid tropics". Thesis, University of Nottingham, 2000. http://eprints.nottingham.ac.uk/12072/.
Texto completo da fonteBrownlow, Mark J. C. "The characteristics and viability of land-use systems which integrate pig and poultry production with forestry in the UK". Thesis, University of Reading, 1994. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.384901.
Texto completo da fonteCassidy, Daniel L. "An economic and environmental analysis of farm-level windbreak agroforestry management systems in eastern Nebraska /". free to MU campus, to others for purchase, 1998. http://wwwlib.umi.com/cr/mo/fullcit?p9924955.
Texto completo da fonteGray, G. Richard A. "Root distribution of hybrid poplar in a temperate agroforestry intercropping system". Thesis, National Library of Canada = Bibliothèque nationale du Canada, 2000. http://www.collectionscanada.ca/obj/s4/f2/dsk1/tape2/PQDD_0016/MQ55679.pdf.
Texto completo da fonteRodrigo, V. H. Lakshman. "Population density effects on light and water use of rubber/banana interculture systems of Sri Lanka". Thesis, Bangor University, 1997. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.361178.
Texto completo da fonteNwaigbo, Leonard Chinedum. "Spatial variation of tree growth and site factors in a silvopastoral system in northeast Scotland". Thesis, University of Aberdeen, 1996. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.320236.
Texto completo da fonteNoponen, Martin Raimo Andreas. "Carbon and economic performance of coffee agroforestry systems in Costa Rica and Nicaragua". Thesis, Bangor University, 2012. https://research.bangor.ac.uk/portal/en/theses/carbon-and-economic-performance-of-coffee-agroforestry-systems-in-costa-rica-and-nicaragua(6a432d2d-72ce-4a7b-a8af-e0ed74bed9df).html.
Texto completo da fonteSacramento, Josà Augusto Amorim Silva do. "Stocks and flows cen in agricultural systems in tradicional and agroforestry brazilian semiarid". Universidade Federal do CearÃ, 2012. http://www.teses.ufc.br/tde_busca/arquivo.php?codArquivo=8137.
Texto completo da fonteThe objective was to assess the changes promoted in the stocks and flows of C and N from the soil by farming systems agroforestry (agrosilvipasture - AGP and silvipasture - SILV) and traditional (TR), compared to natural vegetation of Caatinga (VN), after 13 years, the experiment was installed on a typical Ortic Chromic Luvisol, the city of Sobral, CearÃ. Soil samples were collected at depths 0-6, 6-12, 12-20, 20-40 and 40-60 cm, relief in four replicates per. Was determined by the total carbon carbon (TOC); total nitrogen (NT) and bulk density. The gas flow was measured using an analyzer in the field of O2, CO2, NO / NO x and SO 2 (UNIGAS Eurotron 3000). To this end, were used for still cameras based on galvanized steel and PVC cover installed in the field. The sampling was done in three replicates, considering the relief plan, convex and concave in each study situation. For each determination were performed triplicate, totaling nine chambers for relief. Soil samples were collected for determination of soil bulk density (Ds) and particle (Dp) and gravimetric moisture (Ug), which allowed the calculation of total porosity (Pt) and the pore space filled with water (EPPA). Among the agroforestry systems studied, the silvipasture, long-term, promoted greater reductions in C stocks and N, the system promoted agrossilvipastroil lower losses and represents a sustainable alternative to sequestration of soil C and N in the Brazilian semi-arid conditions. The traditional cropping system provided a reduction of 58.87 and 9.57 (Mg ha-1), which meant, a reduction of 6.5 and 1.06 (Mg ha-1), for those of TOC and TN, respectively. These results demonstrate the inadequacy of this system for the Brazilian semi-arid conditions. The concave topography (AGP) and flat (SILV) showed the highest values of TOC. For NT the concave shape (VN, AGP, and SILV) showed the highest values. Flows of C-CO2 varied with the time, AGP and SILV being similar to NV in the wet season, while in the dry season are higher. The TR has a different behavior, being higher during the wet season and similar to AGP and SILV in the dry. The flow behavior of NO present without a tendency similar to C-CO2: AGP and SILV presents similar to each other in the wet season, but smaller than VN. During the dry SILV and VN are larger than AGP. In TR NO was not detected in the two periods. The convex shape of relief TR system showed the highest values of C-CO2 fluxes in the wet season. In the dry season were found higher values of C-CO2 flows in AGP, SILV and RT, compared to NV flat terrain. Soil moisture was the variable most correlated with the fluxes of NO, what might be observed in systems SILV and AGP and VN convex reliefs.
Objetivou-se avaliar as alteraÃÃes promovidas nos estoques e fluxos de C e N do solo por sistemas agrÃcolas agroflorestais (Agrossilvipastoril â AGP e Silvipastoril â SILV) e tradicional (TR), comparativamente à vegetaÃÃo natural de Caatinga (VN), apÃs 13 anos, em experimento instalado sobre um Luvissolo CrÃmico Ãrtico tÃpico, no municÃpio de Sobral, CearÃ. Amostras de solo foram coletadas nas profundidades de 0-6, 6-12, 12-20, 20-40 e 40-60 cm, em quatro repetiÃÃes, considerando os relevos plano, convexo e cÃncavo em cada situaÃÃo de estudo. Nestas amostras foram determinados o carbono orgÃnico total do solo (COT), nitrogÃnio total (NT), densidades do solo (Ds) e de partÃcula (Dp) e a umidade gravimÃtrica (Ug), o que possibilitou o cÃlculo da porosidade total (Pt) e o espaÃo poroso preenchido por Ãgua (EPPA). O fluxo dos gases foi quantificado no campo utilizando um analisador de O2, CO2, NO/NOX e SO2 (UnigÃs Eurotron 3000). Para tanto, foram utilizadas cÃmaras estÃticas com base de aÃo galvanizado e tampa de PVC instaladas no campo em triplicatas, totalizando nove cÃmaras por relevo. Entre os sistemas agroflorestais estudados, o silvipastoril, em longo prazo, promoveu maiores reduÃÃes nos estoques de C e N, enquanto que agrossilvipastoril promoveu menores perdas, representando uma alternativa sustentÃvel para o sequestro de C e N do solo nas condiÃÃes semiÃridas brasileira. O sistema de cultivo tradicional (TR) apresentou reduÃÃo no perÃodo 13 anos de 58,87 e 9,57 Mg ha-1 (6,5 e 1,06 Mg ha-1 ano-1) dos estoques de COT e NT, respectivamente, o que comprova a nÃo adequaÃÃo deste sistema para as condiÃÃes semiÃridas brasileiras. Os relevos cÃncavo (AGP) e plano (SILV) apresentaram os maiores valores de estoques de COT, enquanto que para o NT, a forma cÃncava apresentou os maiores valores, no caso VN, AGP e SILV. Os fluxos de C-CO2 variaram com a Ãpoca, sendo AGP e SILV semelhantes à VN no perÃodo Ãmido, enquanto no perÃodo seco estes mesmos sistemas foram maiores. O TR apresenta comportamento diferenciado, sendo maior no perÃodo Ãmido e semelhante ao AGP e SILV no seco. Os fluxos de NO apresentaram comportamento com tendÃncia diferente do C-CO2: AGP e SILV apresentaram-se semelhantes entre si no perÃodo Ãmido, porÃm menores que VN. No perÃodo seco, SILV e VN foram maiores que AGP. No TR, o NO nÃo foi detectado nos dois perÃodos. O relevo convexo no TR apresentou os maiores valores de fluxos de C-CO2 no perÃodo Ãmido. No perÃodo seco foram encontrados maiores valores de fluxos de C-CO2 em AGP, SILV e TR em relaÃÃo à VN no relevo plano. A umidade do solo foi a variÃvel que mais se correlacionou com os fluxos de NO, o que pÃde ser observado nos sistemas SILV e AGP e na VN relevos convexos.
Faye, Jean. "Agroforestry Systems and Food Security in the Sahel: The Case of Toukar, Senegal". Thesis, University of Oregon, 2013. http://hdl.handle.net/1794/13309.
Texto completo da fonteBardaine, Clémence. "La fabrique des paysages et des savoir-faire agroforestiers dans le bassin francilien : acteurs, processus et projets". Thesis, Paris, Institut agronomique, vétérinaire et forestier de France, 2020. http://www.theses.fr/2020IAVF0021.
Texto completo da fonteFaced with the environmental and climatic crisis, practices based on the management of ecological processes are opening up a new horizon for agriculture. The current challenge of agroforestry, based on associations of trees, crops and/or animals, is no longer limited to production alone, but also affects its sustainability and in particular the provision of ecosystem services and the food resilience of territories. However, these agroecological practices cannot result from the application of technical recipes. Can farmers’ naturalistic and agroecological knowledge of landscapes, become a vector for the transmission of agroforestry practices mainly through neighborhood effect and collective learning ? A critical study of the methods and mechanisms of learning, transmission and support of agroforestry practices in the Paris Basin is carried out through a transdisciplinary, ethno-geographic and pragmatic approach. The stories of their agroecological trajectories are retraced through ethnographic investigation and documentary collection from the field (photography, drawing of farmers, project plan). A typology of the different forms of agroforestry landscapes (intra-plot tree lines, diversified hedgerows gridding, etc.) and the range of ecological and diversification knowledge associated with them is proposed. In contrast, the mistrust of trees among some soil conservation farmers is identified. Secondly, the survey on the methods of support by stakeholders in territorial development (farmers, landowners, agricultural development associations, agents of regional nature parks and communities of municipalities), sheds light on conflicts and alliances between actors. The tools and collective learning processes of this outside agroecological university are highlighted through the chronicles of farmers' collective workshops and participatory research projects around the heritage of locally adapted seeds and woody plants (ecological survey, botanical index, reading and landscape design, project and pruning workshops, participatory selection). This work offers a synthesis of the brakes (the long time, the lack of local references and management know-how, the tree in the rural lease). And the conditions of transmission of agroforestry practices (pioneering attitudes, empirical and transversal approaches, involvement of territorial actors) are articulated between different scales: from the plot to the plain, to the community of actors in the large landscape. Finally, this thesis identifies a set of updating of living heritage which, through the agro-ecosystem benefits and the local food systems resulting from these new agricultural landscapes; could become the basis of a local project guaranteeing the environmental, social and economic sustainability of the territory
Seobi, Tshepiso. "Soil hydraulic properties as influenced by grass and agroforestry contour buffer strips /". free to MU campus, to others for purchase, 2004. http://wwwlib.umi.com/cr/mo/fullcit?p1422964.
Texto completo da fonteClinton, Peter William. "Competition for nitrogen and moisture in a Pinus radiata-pasture agroforestry system". Thesis, University of Canterbury. Forestry, 1990. http://hdl.handle.net/10092/6755.
Texto completo da fonteJoshi, Laxman. "Incorporating farmers' knowledge in the planning of interdisciplinary research and extension". Thesis, Bangor University, 1997. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.364125.
Texto completo da fontePent, Gabriel J. "Lamb performance, behavior, and body temperatures in hardwood silvopasture systems". Diss., Virginia Tech, 2017. http://hdl.handle.net/10919/76730.
Texto completo da fontePh. D.
Karki, Uma Goodman Mary Schmitt. "Southern-pine silvopasture systems forage characteristics, soil quality, and landscape utilization by cattle /". Auburn, Ala, 2008. http://hdl.handle.net/10415/1409.
Texto completo da fonteNyberg, Gert. "Carbon and nitrogen dynamics in agroforestry systems : temporal patterns of some important soil processes /". Umeå : Swedish Univ. of Agricultural Sciences (Sveriges lantbruksuniv.), 2001. http://epsilon.slu.se/avh/2001/91-576-6065-4.pdf.
Texto completo da fonteFagerström, Minh Ha Hoang. "Agroforestry systems in Northern Vietnam with Tephrosia candida as an alternative to short-fallow crop rotations /". Uppsala : Swedish University of Agricultural Sciences, 2000. http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&doc_number=009004572&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA.
Texto completo da fonteSanou, Josias. "Optimizing the productivity of agroforestry parkland systems in West Africa using shade-tolerant annual crops". Thesis, Bangor University, 2010. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.520848.
Texto completo da fonte