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1

Khotʹko, Ė I. Pochvennai͡a︡ fauna Belarusi. Minsk: "Navuka i tėkhnika", 1993.

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2

Bahuguna, V. K. Tropical forest ecosystem soil fauna in sub-tropics. Dehra Dun, India: International Book Distributors, 1991.

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3

Eisenbeis, Gerhard. Atlas on the biology of soil arthropods. Berlin: Springer-Verlag, 1987.

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4

Pochvennai͡a fauna v ėkologicheskom kontrole. Moskva: "Nauka", 1994.

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5

Setälä, Heikki. Effects of soil fauna on decomposition and nutrient dynamics in coniferous forest soil. Jyväskylä: University of Jyväskylä, 1990.

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6

United States. Bureau of Land Management. Jarbidge Resource Area. Watershed activity plan: Hagerman Fauna Site. [Boise, Idaho]: [Bureau of Land Management], Jarbidge Resource Area, Boise District, 1985.

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7

Rafailovna, Striganova Bella, Zakharov A. A e Institut ėvoli͡u︡t͡s︡ionnoĭ morfologii i ėkologii zhivotnykh im. A.N. Severt͡s︡ova., a cura di. Pochvennai͡a︡ fauna i pochvennoe plodorodie: Trudy 9-go Mezhdunarodnogo kollokviuma po pochvennoĭ zoologii, Moskva, avgust 1985 g. Moskva: "Nauka", 1987.

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8

Julian, Fennessy, Schneider Stephanie, Desert Research Foundation of Namibia. e Gobabeb Training and Research Centre., a cura di. Hoanib River catchment study, northwestern Namibia: Fauna. Windhoek: Desert Research Foundation of Namibia, 2001.

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9

Lagerlöf, Jan. Ecology of soil fauna in arable land: Dynamics and activity of microarthropods and enchytraeids in four cropping systems. Uppsala: Swedish University of Agricultural Sciences, Dept. of Ecology and Environmental Research, 1987.

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10

Hazra, A. K. Ecology of subterrenean macro and micro arthropod fauna in different degraded and polluted soil environment of West Bengal, India. Calcutta: Zoological Survey of India, 1990.

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11

United States. Bureau of Land Management. Hagerman Fauna Sites National Natural Landmark: Interim management plan. Boise, Idaho?]: [U.S. Department of the Interior, Bureau of Land Management], 1985.

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12

Vatsauliya, P. K. Ecological studies on jhum fallows (Meghalaya) with particular reference to soil fauna. Calcutta: The Survey, 1993.

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13

Compost critters. New York: Dutton Children's Books, 1993.

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14

United States. Bureau of Land Management. Jarbidge Resource Area. Summary of management actions and decisions to protect the natural resources of the Hagerman Fauna Sites National Natural Landmark. [Boise, Idaho: Bureau of Land Management, Jarbidge Resource Area, Boise District], 1988.

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15

Persson, Tryggve. Effekter av kalktillförsel på markfaunan i skogsmark: En litteraturöversikt = Effects of liming on the soil fauna in forests : a literature review. Solna: National Swedish Environment Protection Board, 1988.

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16

EuroMAB e United States. Dept. of State. Bureau of Oceans and International Environmental and Scientific Affairs., a cura di. Access 1996: A directory of permanent plots which monitor flora, fauna, climate, hydrology, soil, geology, and the effects of anthropogenic changes at 132 biosphere reserves in 27 countries. [Washington, D.C.?]: Dept. of State, Bureau of Oceans and International Environmental and Scientific Affairs, 1996.

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17

J, Mitchell Myron, e Nakas James P, a cura di. Microfloral and faunal interactions in natural and agro-ecosystems. Dordrecht: M. Nijhoff/Dr. W. Junk, 1986.

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18

Under ground: How creatures of mud and dirt shape our world. Washington, DC: Island Press/Shearwater Books, 2004.

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19

Emet︠s︡, V. M. Monitoring raznoobrazii︠a︡ pochvennoĭ fauny na rekreat︠s︡ionno ispolʹzuemykh i zapovednykh lesnykh territorii︠a︡kh: Pervyĭ urovenʹ. Voronezh: Ministerstvo prirodnykh resursov Rossiĭsko ̆Federat︠s︡ii, 2002.

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20

Didiuk, Andrew B. Carte de la couverture terrestre du Refuge d'oiseaux migrateurs du golfe Reine-Maud, Nunavut. Ottawa, Ont: Service canadien de la faune, 2005.

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21

Medina, Alvin L. An English-Spanish glossary of terminology used in forestry, range, wildlife, fishery, soils, and botany =: Glosario en inglés-español de terminologia usados en forestales, pastizales, fauna silvestre, pesqueria, suelos, y botanica. Fort Collins, Colo: U.S. Dept. of Agriculture, Forest Service, Rocky Mountain Forest and Range Experiment Station, 1988.

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22

1980-, Cserháti Hajnalka, a cura di. L'hippopotin. [Saint-Mandé]: Talents hauts, 2011.

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23

John, Bendall-Brunello, a cura di. Makari na borousa na koimētho. Athēna: Ekodoseis Savvalas, 2012.

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24

1968-, O'Hare Mark, Hillenburg Stephen e Girard-Audet Catherine, a cura di. Bob l'éponge superstar. Montréal: Presses aventure, 2004.

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25

ill, O'Hare Mark 1968, a cura di. SpongeBob Superstar. New York: Simon Spotlight/Nickelodeon, 2001.

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26

Benckiser, Gero, a cura di. Fauna in Soil Ecosystems. CRC Press, 1997. http://dx.doi.org/10.1201/9781482273571.

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27

A, Krivolut͡s︡kiĭ D., e Institut ėvoli͡u︡t͡s︡ionnoĭ morfologii i ėkologii zhivotnykh im. A.N. Severt͡s︡ova., a cura di. Pochvennai͡a︡ fauna Severnoĭ Evropy. Moskva: "Nauka", 1987.

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28

Cayuela, Maria Luz, Julia Clause, Jan Frouz e Philippe C. Baveye, a cura di. Interactive Feedbacks between Soil Fauna and Soil Processes. Frontiers Media SA, 2020. http://dx.doi.org/10.3389/978-2-88963-548-1.

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29

Soil Fauna Assemblages: Global to Local Scales. Cambridge University Press, 2019.

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30

Nielsen, Uffe N. Soil Fauna Assemblages: Global to Local Scales. Cambridge University Press, 2019.

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31

Nielsen, Uffe N. Soil Fauna Assemblages: Global to Local Scales. University of Cambridge ESOL Examinations, 2019.

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32

Gilman, Joseph C. A Manual of Soil Fungi. Biotech Books, 2001.

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33

Fauna in soil ecosystems: Recycling processes, nutrient fluxes, and agricultural production. New York: Marcel Dekker, 1997.

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34

Benckiser, Gero. Fauna in Soil Ecosystems: Recycling Processes, Nutrient Fluxes, and Agricultural Production. Taylor & Francis Group, 1997.

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35

Benckiser, Gero. Fauna in Soil Ecosystems: Recycling Processes, Nutrient Fluxes, and Agricultural Production. Taylor & Francis Group, 1997.

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36

K, Veeresh G., Rajagopal D, Viraktamath C. A e International Soil Zoology Colloquium (10th : 1988 : Bangalore, India), a cura di. Advances in management and conservation of soil fauna. New Delhi: Oxford & IBH Pub. Co., 1991.

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37

Ecosystem Consequences of Soil Warming: Microbes, Vegetation, Fauna and Soil Biogeochemistry. Elsevier Science & Technology, 2019.

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38

Mohan, Jacqueline E. Ecosystem Consequences of Soil Warming: Microbes, Vegetation, Fauna and Soil Biogeochemistry. Elsevier Science & Technology Books, 2019.

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39

Stirling, Graham, Helen Hayden, Tony Pattison e Marcelle Stirling. Soil Health, Soil Biology, Soilborne Diseases and Sustainable Agriculture. CSIRO Publishing, 2016. http://dx.doi.org/10.1071/9781486303052.

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Abstract (sommario):
Our capacity to maintain world food production depends heavily on the thin layer of soil covering the Earth's surface. The health of this soil determines whether crops can grow successfully, whether a farm business is profitable and whether an enterprise is sustainable in the long term. Farmers are generally aware of the physical and chemical factors that limit the productivity of their soils but often do not recognise that soil microbes and the soil fauna play a major role in achieving healthy soils and healthy crops. Soil Health, Soil Biology, Soilborne Diseases and Sustainable Agriculture provides readily understandable information about the bacteria, fungi, nematodes and other soil organisms that not only harm food crops but also help them take up water and nutrients and protect them from root diseases. Complete with illustrations and practical case studies, it provides growers and their consultants with holistic solutions for building an active and diverse soil biological community capable of improving soil structure, enhancing plant nutrient uptake and suppressing root pests and pathogens. The book is written by scientists with many years' experience developing sustainable crop production practices in the grains, vegetable, sugarcane, grazing and horticultural industries. This book will be useful for: growers, consultants, agronomists and soil chemists, extension personnel working in the grains, livestock, sugarcane and horticultural industries, professionals running courses in soil health/biological farming, and students taking university courses in soil science, ecology, microbiology, plant pathology and other biological sciences.
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40

Roberts, Christine. Spatial relationships of vesicular-arbuscular mycorrhizae, soil fauna and soil nutrients in the juniper-sagebrush-grass communities of central Oregon. 1994.

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41

Lavies, Bianca. Compost critters. Silver Burdett Ginn, 1996.

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42

1967-, Neave Peter, e Soil and Water Environmental Enhancement Program (Canada), a cura di. The response of soil microflora and fauna to spring plowing of zerotill and pasture soils: Final report. [Harrow? Ont.]: SWEEP, 1991.

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43

Centro para la Promoción de la Conservación del Suelo y del Agua., a cura di. El deterioro del ambiente en la Argentina: Suelo, agua, vegetación, fauna. 3a ed. Buenos Aires, República Argentina: Fundación para la Educación, la Ciencia y la Cultura, 1996.

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44

Centro para la Promoción de la Conservación del Suelo y del Agua., a cura di. El Deterioro del ambiente en la Argentina: Suelo-agua-vegetación-fauna. 2a ed. Buenos Aires, República Argentina: Fundación para la Educación, la Ciencia y la Cultura, 1988.

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45

Wilsey, Brian J. Biodiversity of Grasslands. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198744511.003.0002.

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Abstract (sommario):
Grasslands can be surprisingly diverse and contain many charismatic flora and fauna. Plant species are often combined into functional groups. Three major conceptual models: competitors-stress tolerants-ruderals (CSR); the leaf traits, plant height, seed mass (LHS); and R*, used to classify grassland species are described by the author. There are three distinct groups of mammalian herbivores based on the ways that herbivores harbor cellulose degrading microbes: hindgut fermentation, foregut fermentation, and foregut fermentation with rumination. Grasslands have a smaller number of bird species than forested systems, and the bird species that are endemic to grasslands tend to be specialized to open habitat (e.g., large flightless birds). Abundant insects can gathered into feeding groups. Single-celled organisms are important in grassland nutrient cycling and as mutualists and pathogens and are extremely abundant in soil. Soil pH is a strong predictor of bacterial diversity (as in plants), with diversity higher in neutral than in acidic soils.
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46

Colloff, MJ, e RB Halliday. Oribatid Mites. CSIRO Publishing, 1998. http://dx.doi.org/10.1071/9780643105201.

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Abstract (sommario):
Oribatid mites are ancient, minute arthropods that live in soil, plant litter, mosses and lichens, and on trees and shrubs. Prior to the production of this catalogue, Australian Oribatid mites had been poorly documented. This catalogue summarises our knowledge of the fauna of Australian Oribatid mites, including many new records of species and genera. It forms a fundamental resource for anyone interested in these important organisms and their role in soil ecology and as environmental indicators.
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47

Holliday, Vance T. Soils in Archaeological Research. Oxford University Press, 2004. http://dx.doi.org/10.1093/oso/9780195149654.001.0001.

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Abstract (sommario):
Soils, invaluable indicators of the nature and history of the physical and human landscape, have strongly influenced the cultural record left to archaeologists. Not only are they primary reservoirs for artifacts, they often encase entire sites. And soil-forming processes in themselves are an important component of site formation, influencing which artifacts, features, and environmental indicators (floral, faunal, and geological) will be destroyed and to what extent and which will be preserved and how well. In this book, Holliday will address each of these issues in terms of fundamentals as well as in field case histories from all over the world. The focus will be on principles of soil geomorphology , soil stratigraphy, and soil chemistry and their applications in archaeological research.
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48

Under Ground: How Creatures of Mud and Dirt Shape Our World. Island Press, 2006.

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49

Lens, Piet N. L., e Kannan Pakshirajan, a cura di. Environmental Technologies to Treat Selenium Pollution. IWA Publishing, 2021. http://dx.doi.org/10.2166/9781789061055.

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Abstract (sommario):
Abstract Selenium contamination of air, aquatic environments, soils and sediments is a serious environmental concern of increasing importance. Selenium has a paradoxical feature in bringing about health benefits under the prescribed level, but only a few fold increase in its concentration causes deleterious effects to flora and fauna, humans and the environment. This book Environmental Technologies to Treat Selenium Pollution: Principles and Engineering: presents the fundamentals of the biogeochemical selenium cycle and which imbalances in this cycle result in pollution.overviews chemical and biological technologies for successful treatment of selenium contaminated water, air, soils and sediments.explores the recovery of value-added products from selenium laden waste streams, including biofortication and selenium-based nanoparticles and quantum dots. This book may serve both as an advanced textbook for undergraduate and graduate students majoring in environmental sciences, technology or engineering as well as as a handbook for tertiary educators, researchers, professionals and policy makers who conduct research and practices in selenium related fields. It is essential reading for consulting companies when dealing with selenium related environmental (bio)technologies. ISBN: 9781789061048 (Paperback) ISBN: 9781789061055 (eBook)
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50

Md Shah, Rosman, Ratna Laila Shahidin e Faiziah Shamsudin. Antologi lautan bukan pemisah. UUM Press, 2018. http://dx.doi.org/10.32890/9789672210238.

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Abstract (sommario):
Usaha murni dan luar biasa Kerabat Seni Negeri Sembilan (KSNS) di bawah penerajunya, Rosman Md Shah untuk mengangkat karya siswa dua negara bersaudara ke langit antarabangsa wajar menerima sebukit puji. Antologi Lautan Bukan Pemisah berjaya mengumpul sejumlah 48 buah puisi daripada 39 orang siswa dan lima penulis tamu dari Institut Pendidikan Guru Kampus Raja Melewar (IPGKRM), Negeri Sembilan, Malaysia, manakala sejumlah 42 buah puisi daripada 28 orang siswa Universitas Islam Sumatera Utara (UISU), Medan, Sumut, Indonesia telah berjaya menyeberangi Selat Melaka untuk ikut serta membicarakan tema global merentasi sempadan geografi dan kewarganegaraan. Kemanusiaan itu buta warna, tidak mampu untuk melihat perbezaan apa pun. Kealpaan untuk mengakrabi Yang Maha Esa, kemiskinan, penindasan, luka flora dan fauna, impak peperangan, perjuangan untuk menghidupkan kehidupan merupakan isu yang melatari landskap puisi. Demikianlah suara sekelompok para siswa yang membicarakan soal-soal besar lewat puisi. Dengan berpaksikan definisi bahawa puisi merupakan kata-kata terbaik dalam susunan yang terbaik, para siswa ini sehabis upaya memilih diksi yang mampu memaknakan persepsi peribadi mereka terhadap segala yang berlaku seputar dunia yang mereka huni. Persoalan-persoalan yang melingkari kehidupan di jagat raya ini membuktikan bahawa sesungguhnya lautan itu bukan pemisah meskipun secara geografinya kita dikenal atas rupa bangsa sebuah wilayah bernegara. Benarlah bahawa, lautan itu bukan pemisah kerana sempadan negara hanyalah berupa garisan-garisan di peta, sedangkan kemanusiaan itu kepunyaan semua yang memiliki jiwa.
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