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1

Ananthanarayana, R. Soil acidity and liming in Karnataka. Dept. of Soil Science and Agricultural Chemistry, Agriculture College, G.K.V.K, 1998.

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2

Ravi, M. V. Acidity and liming in coffee growing soils of Karnataka. Dept. of Soil Science and Agricultural Chemistry, University of Agricultural Sciences, 2000.

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3

Shamrikova, E. V. Kislotno-osnovnai︠a︡ bufernostʹ podzolistykh i bolotno-podzolistykh pochv Severo-Vostoka evropeĭskoĭ chasti Rossii. UrO RAN, 2005.

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4

Halvorson, A. R. Soil acidity in central Washington orchards: The nature of the problem and how to manage it. Cooperative Extension, College of Agriculture & Home Economics, Washington State University, 1985.

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5

Rihm, B. Critical Loads of acidity for forest soils and alpine lakes: Steady state mass balance method. FOEFL, 1994.

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6

International Symposium on Acid Sulphate Soils (4th 1992 Ho Chi Minh City, Vietnam). Selected papers of the Ho Chi Minh City Symposium on Acid Sulphate Soils: Ho Chi Minh City, Viet Nam, March 1992. International Institute for Land Reclamation and Improvement, 1993.

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7

Berdén, Maria. Ion leaching and soil acidification in a forest Haplic Podzol: Effects of nitrogen application and clear-cutting. Swedish University of Agricultural Sciences, Dept. of Ecology and Environmental Research, 1994.

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8

Nichnadowicz, Vincent F. Mitigation of acid-producing soils: Final report. The Dept., 2003.

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9

Lü zai tu rang--zhi wu zhong de xing wei ji zhi wu de shi ying ji zhi. Ke xue chu ban she, 2008.

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10

Inskeep, William P. Fate and mobility of arsenic in soils of the Madison River Basin. Montana University System, Water Resources Center, 1999.

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11

Opdecamp, Luc. Effets stimulants et toxiques de l'aluminium sur la croissance des plantes cultivées dans les sols humifères acides du Burundi. ISABU, 1988.

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12

International Symposium on Plant-Soil Interactions at Low pH (4th 1996 Minas Gerais, Brazil). Plant-soil interactions at low pH: Sustainable agriculture and forestry production : proceedings of the fourth International Symposium on Plant-Soil Interactions at Low pH, Belo Horizonte, Minas Gerais, Brazil, 17-24 March 1996. Brazilian Soil Science Society, 1997.

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13

International Symposium on Plant-Soil Interactions at Low pH (3rd 1993 Brisbane, Qld.). Plant-soil interactions at low pH: Principles and management : proceedings of the Third International Symposium on Plant-Soil Interactions at Low pH, Brisbane, Queensland, Australia, 12-16 September 1993. Kluwer Academic, 1995.

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14

J, Wright R., Baligar V. C, and Murrmann R. P, eds. Plant-soil interactions at low pH: Proceedings of the Second International Symposium on Plant-Soil Interactions at Low pH, 24-29 June, 1990, Beckley, West Virginia, USA. Kluwer Academic, 1991.

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15

Palko, Jukka. Happamien sulfaattimaiden kuivatus ja kalkitus Limingan koekentällä 1984-1987. Vesi- ja ympäristöhallitus, 1988.

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16

Wherry, Edgar T. Soil acidity. Springer-Verlag, 1991.

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17

Ulrich, B., and M. E. Sumner, eds. Soil Acidity. Springer Berlin Heidelberg, 1991. http://dx.doi.org/10.1007/978-3-642-74442-6.

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18

Food, Ontario Ministry of Agriculture and. Soil acidity and liming. Ministry of Agriculture and Food, 1991.

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19

Bilski, Jerzy. Zakwaszenie i zasolenie podłoża jako czynniki stresowe dla roślin. Państwowe Wydawn. Nauk., 1990.

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20

Victoria. Parliament. Environment and Natural Resources Committee. Inquiry on the impact and trends in soil acidity: Report of the Environment and Natural Resources Committee. Victorian Government Printer, 2004.

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21

Pavan, Marcos Antonio. Lições de fertilidade do solo: PH. Instituto Agronômico do Paraná, 1997.

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22

Opdecamp, Luc. Mécanismes de pédogenèse acide dans les régions agro-pastorales d'altitude du Burundi. ISABU, 1988.

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23

Pavan, Marcos Antonio. Manejo da acidez do solo. Instituto Agronômico do Paraná, 1997.

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24

Peatland acidity budgets and the effects of acid deposition. Ecological Applications Research Division, Sustainable Development, Environment Canada, 1989.

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25

Binkley, Dan, Charles T. Driscoll, H. Lee Allen, Philip Schoeneberger, and Drew McAvoy. Acidic Deposition and Forest Soils. Springer New York, 1989. http://dx.doi.org/10.1007/978-1-4612-3586-6.

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26

R, Kennedy I. Acid soil and acid rain: The impact on the environment of nitrogen and sulphur cycling. Research Studies Press, 1986.

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27

Acid soil and acid rain. 2nd ed. Research Studies Press, 1992.

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28

Tolstokoneva, E. N. Bufernostʹ ravninnykh pochv i︠u︡ga Dalʹnego Vostoka Rossii. Dalʹnauka, 2005.

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29

Ratliff, Raymond D. Soil acidity, temperature, and water relationships of four clovers in the Sierra Nevada meadows. U.S. Dept. of Agriculture, Forest Service, Pacific Southwest Research Station, 1993.

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30

Visser, S. Effects of acid-forming emissions on soil microorganisms and microbially-mediated processes. Acid Deposition Research Program, 1987.

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31

Rastogi, Vijay. Results from AML sites reclaimed using bactericides. s.n, 1987.

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32

Visser, S. Effects of acid-forming emissions on soil microorganisms and microbially-mediated processes. Acid Deposition Research Program, 1987.

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33

Legge, Allan H. Acidic deposition and the environment: A literature overview. Acid Deposition Research Program, 1987.

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34

Dugas, Celeste M. The effects of limestone application on nitrification in metal-contaminated and uncontaminated acidic soils. Laurentian University, Department of Biology, 1998.

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35

Torn, M. S. The effects of acidic deposition on Alberta agriculture: A review. Acid Deposition Research Program, 1987.

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36

Upton, Niamh. The effects of afforestation on the survival and developement of salmonid eggs in acidic streams, in Co. Wicklow. University College Dublin, 1995.

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37

Ohmann, L. F. Physical characteristics of study plots across a Lake States acidic deposition gradient. U.S. Dept. of Agriculture, Forest Service, North Central Forest Experiment Station, 1989.

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38

A, Wood John. Bilans d'acidité des tourbières et effets des retombées acides. Environnement Canada, 1989.

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39

Belsito, Kevin. Immobilization of potentially phytotoxic metals in an acidic, metal-contaminated soil by added organic matter. Laurentian University, Department of Biology, 1996.

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40

Canada. Service de l'environnement atmosphérique. Les pluies acides au Canada, rapport d'évaluation de 1997. Environnement Canada, 1998.

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41

Rengel, Zdenko. Handbook of Soil Acidity (Books in Soils, Plants, and the Environment). CRC, 2003.

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42

White, Robert E. Understanding Vineyard Soils. Oxford University Press, 2015. http://dx.doi.org/10.1093/oso/9780199342068.001.0001.

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The first edition of Understanding Vineyard Soils has been praised for its comprehensive coverage of soil topics relevant to viticulture. However, the industry is dynamic--new developments are occurring, especially with respect to measuring soil variability, managing soil water, possible effects of climate change, rootstock breeding and selection, monitoring sustainability, and improving grape quality and the "typicity" of wines. All this is embodied in an increased focus on the terroir or "sense of place" of vineyard sites, with greater emphasis being placed on wine quality relative to quanti
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43

Dan, Binkley, ed. Acidic deposition and forest soils: Context and case studies of the southeastern U.S. Springer-Verlag, 1989.

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44

Dan, Binkley, ed. Acidic deposition and forest soils: Context and case studies of the southeastern U.S. Springer-Verlag, 1988.

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45

Acidic Deposition and Forest Soils: Context and Case Studies of the Southeastern United States. Springer, 2012.

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46

Allen, H. Lee, Philip Schoeneberger, Drew McAvoy, Dan Binkley, and Charles T. Driscoll. Acidic Deposition and Forest Soils: Context and Case Studies of the Southeastern United States (Ecological Studies). Springer, 1989.

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47

Dan, Binkley, ed. Acidic deposition and forest soils: Context and case studies on the southeastern United States. Springer-Verlag, 1988.

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48

E, Bosilovich Brian, Kardos Nicholas J, and Superfund Innovative Technology Evaluation Program (U.S.), eds. Acid extraction treatment system for treatment of metal contaminated soils. U.S. Environmental Protection Agency, Superfund Innovative Technology Evaluation, 1994.

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49

Hazelton, Pam, and Brian Murphy. Understanding Soils in Urban Environments. CSIRO Publishing, 2011. http://dx.doi.org/10.1071/9780643101432.

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Soil properties such as water retention, salinity and acidity are not just issues for agriculture and forestry. They are equally as significant in creating environmental and structural problems for buildings and other engineering works. As an increasing proportion of the world's population is living in cities, and building and related infrastructure development continues, these problems assume ever-greater importance. In addition, existing works contribute to urban soil erosion and pollution as well as increased levels of urban runoff.
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50

Mensvoort, M. E. F. van., Dent D. L, and International Institute for Land Reclamation and Improvement., eds. Selected papers of the Ho Chi Minh City symposium on acid sulphate soils: Ho Chi Minh City, VietNam, March 1992. International Institute for Land Reclamation and Improvement, 1993.

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