Livros sobre o tema "Soils Agricultural chemical content"

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1

Sauerbeck, Dieter. Funktionen, Güte und Belastbarkeit des Bodens aus agrikulturchemischer Sicht. Stuttgart: Kohlhammer, 1985.

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2

Xu, Minggang. Nong tian tu rang pei fei. 8a ed. Beijing: Ke xue chu ban she, 2009.

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3

Regional, Fertilizer Conference (42nd 1991 Coeur d'Alene Idaho). Proceedings Forty Second Annual Regional Fertilizer Conference: Coeur d'Alene Resort, Coeur d'Alene, Idaho, July 7-9, 1991. [Spokane, WA: The Association, 1991.

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4

Baker, B. L. Attenuation of pollutants by Alberta soils. Edmonton: Research Management Division, Alberta Environment, 1985.

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5

Brown, Kenneth Warren. The stability and mobility of mutagenic activity from wastewater and sludge in agricultural soils. Research Triangle Park, NC: U.S. Environmental Protection Agency, Health Effects Research Laboratory, 1988.

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6

Brown, Kenneth Warren. The stability and mobility of mutagenic activity from wastewater and sludge in agricultural soils. Research Triangle Park, NC: U.S. Environmental Protection Agency, Health Effects Research Laboratory, 1988.

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7

R, Leschber, Davis R. D. 1949-, L'Hermite P. 1936- e Commission of the European Communities., eds. Chemical methods for assessing bio-available metals in sludges and soil: Proceedings of a seminar organized by the Commission of the European Communities ... held in Münster, Federal Republic of Germany, 11-13 April 1984. London: Elsevier Applied Science Publishers, 1985.

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8

Baldwin, Joe A. Ground water and soils reconnaissance of the Lower Payette area, Payette County, Idaho. [Boise]: Idaho Dept. of Health and Welfare, Division of Environmental Quality, 1994.

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9

F, Führ, Ophoff Holger e Deutsche Forschungsgemeinschaft. Senatskommission zur Beurteilung von Stoffen in der Landwirtschaft., eds. Pesticide bound residues in soil : workshop, September 3rd-4th, 1996. Weinheim: Wiley-VCH, 1998.

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10

Detroy, Mark G. Occurrence and distribution of nitrate and herbicides in the Iowa River alluvial aquifer, Iowa--May 1984 to November 1985. Iowa City, Iowa: Dept. of the Interior, U.S. Geological Survey, 1989.

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11

Reynolds, W. D. Methodology for predicting agrochemical contamination of ground water resources. [Ottawa]: Research Branch, Agriculture and Agri-Food Canada, 1994.

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12

Leventhal, Joel S. Soil organic carbon content in rice soils of Arkansas and Louisiana and a comparison to non-agricultural soils, including a bibliography for agricultural soil carbon. [Denver, CO]: U.S. Geological Survey, 1997.

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13

Leventhal, Joel S. Soil organic carbon content in rice soils of Arkansas and Louisiana and a comparison to non-agricultural soils, including a bibliography for agricultural soil carbon. [Denver, CO]: U.S. Geological Survey, 1997.

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14

International Symposium on Sulphur in Agricultural Soils (1986 Dhaka, Bangladesh). Proceedings of the International Symposium on Sulphur in Agricultural Soils, BARC, Dhaka, April 20-22, 1986. Dhaka, Bangladesh: Organizing Committee, 1986.

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15

Great Britain. Department for Environment, Food & Rural Affairs. Guidelines for farmers in NVZs: England. [London]: DEFRA, 2002.

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16

Lund, L. J. Determination and predication of chemical forms of trace metals in sewage sludge and sludge-amended soils. Cincinnati, OH: U.S. Environmental Protection Agency, Water Engineering Research Laboratory, 1985.

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17

Clark, David W. Pesticides in soils and ground water in selected irrigated agricultural areas near Havre, Ronan, and Huntley, Montana. Helena, Mont: Dept. of the Interior, U.S. Geological Survey, 1990.

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18

Clark, David W. Pesticides in soils and ground water in selected irrigated agricultural areas near Havre, Ronan, and Huntley, Montana. Helena, Mont: Dept. of the Interior, U.S. Geological Survey, 1990.

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19

Clark, David W. Pesticides in soils and ground water in selected irrigated agricultural areas near Havre, Ronan, and Huntley, Montana. Helena, Mont: Dept. of the Interior, U.S. Geological Survey, 1990.

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20

Bjarnason, Sigfús. Turnover of organic nitrogen in agricultural soils and the effects of management practices on soil fertility. Uppsala: Swedish University of Agricultural Sciences, Dept. of Soil Sciences, Division of Soil Fertility and Plant Nutrition, 1988.

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21

Follett, R. F., R. Lal e J. M. Kimble. Agricultural practices and policies for carbon sequestration in soil. Boca Raton, Fla: Lewis Publishers, 2002.

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22

Dolan, Sylvia. Effects of nutrient adition on the chemical composition of leachates from forest and grassland soils. Dublin: University College Dublin, 1997.

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23

Andrén, Olof. Spatial variation of soil physical and chemical properties in an arable field with high clay content. Uppsala: Sveriges lantbruksuniversitet, Institutionen för ekologi och miljövård, 1990.

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24

Piccolo, Alessandro. Carbon Sequestration in Agricultural Soils: A Multidisciplinary Approach to Innovative Methods. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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25

Somasundaram, J. Conservation agriculture for carbon sequestration and sustaining soil health. New Delhi: New India Pub. Agency, 2014.

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26

Seminar on Nitrogen Efficiency in Agricultural Soils and the Efficient Use of Fertilizer Nitrogen (1987 Edinburgh, Scotland). Nitrogen efficiency in agricultural soils: A Seminar on Nitrogen Efficiency in Agricultural Soils and the Efficient Use of Fertilizer Nitrogen, held in Edinburgh, 16-18 September 1987, as part of the EC Programme for the Coordination of Agricultural Research. London: Elsevier Applied Science, 1988.

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27

He, Zhongqi. Phosphorus forms in animal manure and the impact on soil P status. Hauppauge, N.Y: Nova Science Publishers, 2009.

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28

Tandon, H. L. S. Phosphorus research and agricultural production in India. New Delhi, India: Fertiliser Development and Consultation Organisation, 1987.

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29

Colloquium, International Potash Institute. Potassium in Asia: Balanced fertilization to increase and sustain agricultural production : 24th Colloquium of the International Potash Institute, Chiang Mai, Thailand, February 21-24, 1995. Basel, Switzerland: The Institute, 1995.

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30

Clune, John W. Residence time, chemical and isotopic analysis of nitrate in the groundwater and surface water of a small agricultural watershed in the coastal plain, Bucks Branch, Sussex County, Delaware. Reston, VA: U.S. Geological Survey, 2012.

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31

International Symposium on "Manganese in Soils and Plants" (1988 Waite Agricultural Research Institute). Manganese in soils and plants: Proceedings of the International Symposium on "Manganese in Soils and Plants" held at the Waite Agricultural Research Institute, the University of Adelaide, Glen Osmond, South Australia, August 22-26, 1988, as an Australian Bicentennial event. Dordrecht: Kluwer Academic, 1988.

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32

Jandl, R., Mirco Rodeghiero e Mats Olsson. Soil carbon in sensitive European ecosystems: From science to land management. Chichester, West Sussex: John Wiley & Sons, 2011.

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33

Banin, A., e U. Kafkafi. Agrochemicals in Soils. Elsevier Science & Technology Books, 2013.

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34

Mervyn, Richardson, ed. Chemistry, agriculture and the environment. xiii, 546 p: ill., 1991.

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35

K, Hubbard R., ed. Characteristics of selected upland soils of the Georgia Coastal Plain. [Washington, D.C.?]: U.S. Dept. of Agriculture, Agricultural Research Service, 1985.

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36

Brandi-Dohrn, Florian M. Field evaluation of passive capillary samplers in monitoring the leaching of agrochemicals. 1993.

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37

Non-First Order Degradation and Time-Dependent Sorption of Organic Chemicals in Soil. American Chemical Society, 2015.

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38

Australian Soil Fertility Manual. CSIRO Publishing, 2006. http://dx.doi.org/10.1071/9780643100725.

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Resumo:
The Australian Soil Fertility Manual is a trusted guide to the safe use and handling of fertilizers. It describes the types of agricultural soils, how they are classified and the interaction of soil, water and nutrients. It also provides an insight into how plants utilise nutrients and the role that individual nutrients play in the process of plant growth. This edition has been revised to reflect an increased emphasis on the environmental fate of nutrients and appropriate management strategies. It also has additional information on soil physical, chemical, and biological properties and discussions on the use of lime, dolomite and gypsum. New content covers liming effectiveness, nitrogen water use efficiency, regulations for handling and using fertilizers, storage and transport of security sensitive ammonium nitrate, budgeting for profitable nitrogen use and best management practice for nitrogen and phosphorus fertilizers. The chapters on potassium; calcium, magnesium and sulfur; plant nutrients and the environment; and heavy metal in fertilizers and agriculture have all been extensively revised and rewritten. This important work will be an essential text for fertilizer dealers, extension workers, consultants, teachers, farmers, horticulturists, graziers and others concerned with the profitable and environmentally safe use of plant nutrients.
39

Sposito, Garrison. The Chemistry of Soils. Oxford University Press, 2016. http://dx.doi.org/10.1093/oso/9780190630881.001.0001.

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The second edition of The Chemistry of Soils, published in 2008, has been used as a main text in soil-science courses across the world, and the book is widely cited as a reference for researchers in geoscience, agriculture, and ecology. The book introduces soil into its context within geoscience and chemistry, addresses the effects of global climate change on soil, and provides insight into the chemical behavior of pollutants in soils. Since 2008, the field of soil science has developed in three key ways that Sposito addresses in this third edition. For one, research related to the Critical Zone (the material extending downward from vegetation canopy to groundwater) has undergone widespread reorganization as it becomes better understood as a key resource to human life. Secondly, scientists have greatly increased their understanding of how organic matter in soil functions in chemical reactions. Finally, the study of microorganisms as they relate to soil science has significantly expanded. The new edition is still be comprised of twelve chapters, introducing students to the principal components of soil, discussing a wide range of chemical reactions, and surveying important human applications. The chapters also contain completely revised annotated reading lists and problem sets.
40

Nitrogen in agricultural systems. Madison, WI: American Society of Agronomy, 2008.

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41

Soil organic carbon content in rice soils of Arkansas and Louisiana and a comparison to non-agricultural soils, including a bibliography for agricultural soil carbon. [Denver, CO]: U.S. Geological Survey, 1997.

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42

S, Jenkinson D., e Smith K. A. 1940-, eds. Nitrogen efficiency in agricultural soils. London: Elsevier Applied Science, 1988.

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43

Al-ismaily, Said S. Genesis of silica-enriched agricultural pans in soils managed under wheat-fallow cropping systems. 1997.

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44

Al-ismaily, Said S. Genesis of silica-enriched agricultural pans in soils managed under wheat-fallow cropping systems. 1997.

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45

(Editor), Norman J. Rosenberg, e Roberto C. Izaurralde (Editor), eds. Storing Carbon in Agricultural Soils: A Multi-Purpose Environmental Strategy. 5a ed. Springer, 2001.

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46

Faithfull, N. T. Methods in Agricultural Chemical Analysis: A Practical Handbook. CABI, 2002.

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47

(Editor), C. E. Clapp, M. H. B. Hayes (Editor), N. Senesi (Editor), P. R. Bloom (Editor), P. M. Jardine (Editor) e E. C. Clapp (Editor), eds. Humic Substances and Chemical Contaminants. Soil Science Society of America, 2001.

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48

Hayes, Michael H., Phillip M. Jardine, C. E. Clapp, Paul R. Bloom e N. Senesi. Humic Substances and Chemical Contaminants. Wiley & Sons, Limited, John, 2015.

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49

L, Bergström, e Kirchmann H, eds. Carbon and nutrient dynamics in natural and agricultural tropical ecosystems. Wallingford, Oxon, UK: Cab International, 1998.

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50

Chemical methods for assessing bio-available metals in sludges and soils. London: Elsevier Applied Science Publishers, 1985.

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