Books on the topic 'Zone of improved soil'

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1

Kanmegne, Jacques. Slash and burn agriculture in the humid forest zone of southern Cameroon: Soil quality dynamics, improved fallow management, and farmers' perceptions. Wageningen: Wageningen University, 2004.

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2

Robert, Michel. Soil carbon sequestration for improved land management. Rome: Food and Agricultural Organization of the United Nations, 2001.

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3

R, Calvet, and Prost R. 1938-, eds. Soil pollution: Processes and dynamics. Berlin: Springer, 1996.

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4

Luckner, Ludwig. Migration processes in the soil and groundwater zone. Chelsea, Mich: Lewis Publishers, 1991.

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5

Miller, Perry Ray. Introducing alternative crops to the brown soil zone. Ottawa, Ont: Agriculture and Agri-Food Canada, Research Branch, 1995.

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6

Tindall, James A. Unsaturated zone hydrology for scientists and engineers. Upper Saddle River, N.J: Prentice Hall, 1999.

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7

Samt͡sov, A. S. Ėkologii͡a khvoĭnykh porod i formirovanie fitot͡senozov v zone vodokhranilishch. Minsk: Navuka i tėkhnika, 1991.

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8

Murray, E. J. Unsaturated soils: A fundamental interpretation of soil behaviour. Chichester, West Sussex, U.K: Wiley-Blackwell, 2010.

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9

Ng, C. W. W. Unsaturated soil mechanics and engineering. London: Taylor & Francis, 2007.

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10

Gooding, Dominic Edward Maxwell. Improved processes for the production of soil-cement building blocks. [s.l.]: typescript, 1994.

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11

Gomez, Jesus E. Development of an improved numerical model for concrete-to-soil interfaces in soil-structure interaction analyses. Vicksburg, Miss: U.S. Army Engineer Waterways Experiment Station, 1999.

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12

Powell, Scott L. Contribution of state coastal zone management programs to improved coastal water quality. Portland, Or: NCRI, 1991.

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13

Carucci, Volli F. P. Guidelines on soil and water conservation for the Myanmar dry zone. [Yangon: United Nations Development Programme, Food and Agriculture Organization of the United Nations, 2001.

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14

Huang, P. M., and Jianming Xu. Molecular environmental soil science at the interfaces of the earth's critical zone. Heidelberg: Springer, 2010.

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15

Jin-Song, Chen, Haan C. T. 1941-, Oklahoma Agricultural Experiment Station, and Robert S. Kerr Environmental Research Laboratory, eds. Evaluation of unsaturated/vadose zone models for Superfund sites. Ada, Okla: Robert S. Kerr Environmental Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1994.

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16

Mvukiyumwami, Joseph. Etude phytosociologique et agrologique des jachères naturelles de la zone Kigali-Est. Butare, République rwandaise: Institut national de recherche scientifique, 1985.

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17

Shepherd, Keith D., and M. J. Swift. Saving Africa's soils: Science and technology for improved soil management in Africa. Nairobi, Kenya: World Agroforestry Centre, 2007.

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18

Ėkologicheskoe sostoi︠a︡nie selʹskokhozi︠a︡ĭstvennykh zemelʹ v zone vozdeĭstvii︠a︡ krupnykh promyshlennykh t︠s︡entrov. Minsk: MGĖU im. A.D. Sakharova, 2010.

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19

Charbeneau, R. J. Kinematic modeling of multiphase solute transport in the vadose zone. Ada, OK: U.S. Environmental Protection Agency, Robert S. Kerr Environmental Research Laboratory, 1989.

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20

Scholtis, Andreas. Transport von anorganischen und organischen Substanzen durch die Wasser-ungesättigte Zone unter Einwirkung unterschiedlicher Modell-Niederschlagswässer =: Transport of inorganic and organic substances through the water-unsaturated zone under the influence of various model precipitations. Kiel, B.R. Deutschland: Geologisch-Paläontologisches Institut und Museum, Christian-Albrechts-Universität, 1986.

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21

Xu, Jianming, and Pan Ming Huang, eds. Molecular Environmental Soil Science at the Interfaces in the Earth’s Critical Zone. Berlin, Heidelberg: Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-05297-2.

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22

Powell, Scott L. Contribution of state coastal zone management programs to improved coastal water quality: Executive summary. Portland, Or: NCRI, 1991.

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23

Genuchten, M. Th Van. The RETC code for quantifying the hydraulic functions of unsaturated soils. Ada, Okla: Robert S. Kerr Environmental Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1992.

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24

Genuchten, M. Th Van. The RETC code for quantifying the hydraulic functions of unsaturated soils. Ada, Okla: Robert S. Kerr Environmental Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1992.

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25

Cowell, D. W. Organic and mineral soils of the Southwestern James Bay coastal zone in relation to landform and vegetation physiognomy. [Ontario]: Canada-Ontario Forest Resource Development Agreement, 1991.

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26

J, Walsh Timothy. Liquefaction features from a subduction zone earthquake: Preserved examples from the 1964 Alaska earthquake. Olympia, WA: Washington State Dept. of Natural Resources, Division of Geology and Earth Resources, 1995.

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27

Michels, Karlheinz. Wind erosion in the southern Sahelian zone: Extent, control, and effects on millet production. Stuttgart: Verlag Ulrich E. Grauer, 1994.

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28

Lynn, Brian. Nearshore habitat loss in Puget Sound: Recommendations for improved management. [Olympia?, Wash.]: Puget Sound/Georgia Basin International Task Force, [1998], 1998.

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29

Tuttle, M. P. Dating of liquefaction features in the New Madrid seismic zone and implications for earthquake hazard. Washington, D.C: U.S. Nuclear Regulatory Commission, 1998.

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30

S, Ginn Jon, ed. Practical handbook of soil, vadose zone, and ground-water contamination: Assessment, prevention, and remediation. 2nd ed. Boca Raton, Fla: Lewis Publishers, 2004.

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31

Practical handbook of soil, vadose zone, and ground-water contamination: Assessment, prevention, and remediation. Boca Raton: Lewis Publishers, 1995.

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32

Sseguya, Haroon. Participatory development of soil management guidelines for improved food security in Kachonga Sub-County, Tororo District. Kampala, Uganda: NURRU Publications, 2004.

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33

Watts, Jean. Erosion shoreline stabilization through vegetation planting. Raleigh, NC]: Division of Coastal Management, North Carolina Dept. of Natural Resources and Community Development, 1988.

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34

(2010), GeoShanghai International Conference. Experimental and applied modeling of unsaturated soils: Proceedings of the GeoShanghai 2010 International Conference, June 3-5, 2010, Shanghai, China. Reston, Va: American Society of Civil Engineers, 2010.

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35

1972-, Hoyos Laureano R., Zhang Xiong 1971-, Puppala Anand J, and American Society of Civil Engineers, eds. Experimental and applied modeling of unsaturated soils: Proceedings of the GeoShanghai 2010 International Conference, June 3-5, 2010, Shanghai, China. Reston, Va: American Society of Civil Engineers, 2010.

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36

S, Awiti, Ghana. Ministry of Food and Agriculture., and Natural Resources Institute, eds. Improved vegetable production in the Forest-Savannah Transition Zone, Ghana: With special reference to the maintenance of soil fertility. Natural Resources Institute / Ministry of Food & Agriculture, Ghana, 2000.

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37

Hodnett, M. G. Improved Irrigation Efficiency Using Soil Physical Techniques. Centre for Ecology & Hydrology, 1991.

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38

Roberts, Michel. Soil Carbon Sequestration for Improved Land Management (World Soil Resources Reports,). Food & Agriculture Organization of the UN (FA, 2001.

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39

Inorganic contaminants in the vadose zone. Berlin: Springer-Verlag, 1989.

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40

Barrow, N. J., and Bnayahu Bar-Yosef. Inorganic Contaminants in the Vadose Zone. Brand: Springer, 2011.

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41

Houser, Chris, and John R. Giardino. Principles and Dynamics of the Critical Zone. Elsevier, 2015.

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42

Soil water balance in the Sudano-Sahelian zone. Wallingford, Oxfordshire, UK: International Association of Hydrological Sciences, 1991.

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43

Valentin, Christian. Soils As a Key Component of the Critical Zone 5: Degradation and Rehabilitation. Wiley & Sons, Incorporated, John, 2018.

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44

Valentin, Christian. Soils As a Key Component of the Critical Zone 5: Degradation and Rehabilitation. Wiley & Sons, Incorporated, John, 2018.

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45

(Editor), Brian B. Looney, and Ronald W. Falta (Editor), eds. Vadose Zone : Science and Technology Solutions (2 Volume Set). Collector Books, 2000.

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46

Hopkins, Graeme, and Christine Goodwin. Living Architecture. CSIRO Publishing, 2011. http://dx.doi.org/10.1071/9780643103078.

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Abstract:
Extensively illustrated with photographs and drawings, Living Architecture highlights the most exciting green roof and living wall projects in Australia and New Zealand within an international context. Cities around the world are becoming denser, with greater built form resulting in more hard surfaces and less green space, leaving little room for vegetation or habitat. One way of creating more natural environments within cities is to incorporate green roofs and walls in new buildings or to retrofit them in existing structures. This practice has long been established in Europe and elsewhere, and now Australia and New Zealand have begun to embrace it. The installation of green roofs and walls has many benefits, including the management of stormwater and improved water quality by retaining and filtering rainwater through the plants’ soil and root uptake zone; reducing the ‘urban heat island effect’ in cities; increasing real estate values around green roofs and reducing energy consumption within the interior space by shading, insulation and reducing noise level from outside; and providing biodiversity opportunities via a vertical link between the roof and the ground. This book will appeal to a wide range of readers, from students and practitioners of architecture, landscape architecture, urban planning and ecology, through to members of the community interested in how they can more effectively use the rooftops and walls of their homes or workplaces to increase green open space in the urban environment.
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47

Luckner, Ludwig. Migration Processes in the Soil and Groundwater Zone (1991). Taylor & Francis Group, 2017.

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48

Revival: Migration Processes in the Soil and Groundwater Zone. CRC Press, 2019.

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49

Migration Processes in the Soil and Groundwater Zone (1991). CRC Press, 2017. http://dx.doi.org/10.1201/9780203711323.

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50

Lemanceau, Philippe, and Manuel Blouin. Soils As a Key Component of the Critical Zone 6: Ecology. Wiley & Sons, Incorporated, John, 2018.

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