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1

Jacobs, James A., Jay H. Lehr, and Stephen M. Testa, eds. Acid Mine Drainage, Rock Drainage, and Acid Sulfate Soils. John Wiley & Sons, Inc., 2014. http://dx.doi.org/10.1002/9781118749197.

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2

Krasilʹnikov, P. V. Sulʹfatnokislye pochvy vostochnoĭ Fennoskandii (na vneberegovykh otlozhenii͡a︡kh). Rossiĭskai͡a︡ akademii͡a︡ nauk, Karelʹskiĭ nauch. t͡s︡entr in-t biologii, 1997.

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3

Boivin, Pascal. Caractérisation physique des sols sulfatés acides de la vallée de Katouré, Basse Casmance, Sénégal : étude de la variabilité spatiale et relation avec les caractériques pédologiques. Editions de l'ORSTOM, 1991.

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4

Võ, Quang Minh, Thị Gương Võ та Mỹ Hoa Nguyễn. Một số kết quả nghiên cứu về sử dụng và quản lý đất phèn ở Đồng bằng Sông Cửu Long. Nhà xuất bản Nông nghiệp, 2010.

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5

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

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6

Dent, David. Quick quantitative assessment of the acid sulphate hazard. CSIRO Division of Soils, 1996.

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7

Colley, Raymond. Constraints imposed by acid sulfate soils on the Gambia's bridge-barrage scheme. Great Lakes and Marine Waters Center, University of Michigan, 1985.

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8

Simposium, Nasional Pendayagunaan Tanah Masam (2003 Bandar Lampung Indonesia and Lampung Timur Indonesia). Prosiding. Pusat Penelitian dan Pengembangan Tanah dan Agroklimat, Badan Penelitian dan Pengembangan Pertanian, Departemen Pertanian, 2004.

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9

I, White, and Water Research Foundation of Australia., eds. Reducing acidic discharges from coastal wetlands in eastern Australia. Water Research Foundation of Australia, 1998.

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10

Ohmann, L. F. Properties of soils and tree wood tissue across a Lake States sulfate deposition gradient. U.S. Dept. of Agriculture, Forest Service, North Central Forest Experiment Station, 1991.

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11

H, Van den Bosch, ed. Evaluation of water management strategies for sustainable land use of acid sulphate soils in coastal low lands in the tropics. DLO-Staring Centrum, 1998.

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12

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

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13

Byerly, Don W. Guidelines for handling excavated acid-producing materials. U.S. Dept. of Transportation, Federal Highway Administration, 1990.

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14

Hossner, L. R., Delvin Seymour Fanning, and J. A. Kittrick. Acid Sulfate Weathering. Wiley & Sons, Limited, John, 2015.

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15

Acid sulfate soils in Malaysia. Universiti Putera Malaysia Press, 2006.

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16

Acid Sulfate Soils: A Baseline for Research and Development (ILRI Publication). Water Resources Pubns, 1986.

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17

A, Jacobs James, Stephen M. Testa, and Jay H. Lehr. Acid Mine Drainage, Rock Drainage, and Acid Sulfate Soils: Causes, Assessment, Prediction, Prevention, and Remediation. Wiley & Sons, Incorporated, John, 2014.

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18

Jacobs, James A., Stephen M. Testa, and Jay H. Lehr. Acid Mine Drainage, Rock Drainage, and Acid Sulfate Soils: Causes, Assessment, Prediction, Prevention, and Remediation. Wiley, 2014.

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19

A, Jacobs James, Stephen M. Testa, and Jay H. Lehr. Acid Mine Drainage, Rock Drainage, and Acid Sulfate Soils: Causes, Assessment, Prediction, Prevention, and Remediation. Wiley & Sons, Incorporated, John, 2014.

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20

A, Jacobs James, Stephen M. Testa, and Jay H. Lehr. Acid Mine Drainage, Rock Drainage, and Acid Sulfate Soils: Causes, Assessment, Prediction, Prevention, and Remediation. Wiley & Sons, Incorporated, John, 2014.

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21

A, Jacobs James, Stephen M. Testa, and Jay H. Lehr. Acid Mine Drainage, Rock Drainage, and Acid Sulfate Soils: Causes, Assessment, Prediction, Prevention, and Remediation. Wiley & Sons, Limited, John, 2014.

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22

A, Jacobs James, Stephen M. Testa, and Jay H. Lehr. Acid Mine Drainage, Rock Drainage, and Acid Sulfate Soils: Causes, Assessment, Prediction, Prevention, and Remediation. Wiley & Sons, Incorporated, John, 2015.

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23

A, Jacobs James, Stephen M. Testa, and Jay H. Lehr. Acid Mine Drainage, Rock Drainage, and Acid Sulfate Soils: Causes, Assessment, Prediction, Prevention, and Remediation. Wiley & Sons, Incorporated, John, 2014.

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24

A, Jacobs James, Stephen M. Testa, and Jay H. Lehr. Acid Mine Drainage, Rock Drainage, and Acid Sulfate Soils: Causes, Assessment, Prediction, Prevention, and Remediation. Wiley & Sons, Incorporated, John, 2014.

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25

Wildensee, Frank. Surface complexation of protons and sulfate by kaolinite. 1989.

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26

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.
 Understanding Soils in Urban Environments explains h
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27

Hazelton, Pam, and Brian Murphy. Understanding Soils in Urban Environments. CSIRO Publishing, 2021. http://dx.doi.org/10.1071/9781486314027.

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With an ever-increasing proportion of the world’s population living in cities, soil properties such as salinity, acidity, water retention, erosion and pollution are becoming more significant in urban areas. While these are known issues for agriculture and forestry, as urban development increases, it is essential to recognise the potential of soil properties to create problems for the environment as well as structural concerns for buildings and other engineering works.
 
 Understanding Soils in Urban Environments explains how urban soils develop, change and erode. It describes their p
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28

Hazelton, Pam, and Brian Murphy. Interpreting Soil Test Results. CSIRO Publishing, 2007. http://dx.doi.org/10.1071/9780643094680.

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Interpreting Soil Test Results is a practical reference for those who need to interpret results from laboratory analysis of soil. It has a comprehensive listing of the soil properties relevant to most environmental and natural land resource issues and investigations. 
 The precursor to this book, What Do All the Numbers Mean?, known as The Numbers Book, was widely used and accepted for interpreting soil test results. This new edition has been completely updated and many sections have been expanded, particularly those on acid sulfate soils and soil salinity. It is a handy and straightforwa
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29

Isbell, R. Australian Soil Classification. CSIRO Publishing, 2016. http://dx.doi.org/10.1071/9781486304646.

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The Australian Soil Classification provides a framework for organising knowledge about Australian soils by allocating soils to classes via a key. Since its publication in 1996, this book has been widely adopted and formally endorsed as the official national system. It has provided a means of communication among scientists and land managers and has proven to be of particular value in land resource survey and research programs, environmental studies and education.
 Classification is a basic requirement of all science and needs to be periodically revised as knowledge increases. This Second E
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30

Hazelton, Pam, and Brian Murphy. Interpreting Soil Test Results. CSIRO Publishing, 2016. http://dx.doi.org/10.1071/9781486303977.

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Interpreting Soil Test Results is a practical reference enabling soil scientists, environmental scientists, environmental engineers, land holders and others involved in land management to better understand a range of soil test methods and interpret the results of these tests. It also contains a comprehensive description of the soil properties relevant to many environmental and natural land resource issues and investigations.
 This new edition has an additional chapter on soil organic carbon store estimation and an extension of the chapter on soil contamination. It also includes sampling g
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31

Rayment, George E., and David J. Lyons. Soil Chemical Methods - Australasia. CSIRO Publishing, 2010. http://dx.doi.org/10.1071/9780643101364.

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Soil Chemical Methods – Australasia describes over 200 laboratory and field chemical tests relevant to Australasia and beyond. The information and methodology provided across 20 chapters is comprehensive, systematic, uniquely coded, up-to-date and designed to promote chemical measurement quality. There is guidance on the choice and application of analytical methods from soil sampling through to the reporting of results. In many cases, optional analytical ‘finishes’ are provided, such as flow-injection analysis, electro-chemistry, multiple flame technologies, and alternatives to chemical testin
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32

Scott, Keith, and Colin Pain, eds. Regolith Science. CSIRO Publishing, 2009. http://dx.doi.org/10.1071/9780643098268.

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This comprehensive reference on the fundamentals of regolith geoscience describes how regolith is developed from parental rocks and emphasises the importance of chemical, physical, water and biological processes in regolith formation. It provides details for mapping regolith landforms, as well as objective information on applications in mineral exploration and natural resource management. Regolith Science also provides a concise history of weathering through time in Australia. It includes previously unpublished information on elemental abundances in regolith materials along with detailed infor
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