Livros sobre o tema "Sols – Pollution – Analyse"

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1

Hewitt, Alan D. On-site method for measuring nitroaromatic and nitramine explosives in soil and groundwater using GC-NPD: Feasibility study. Hanover, N.H: US Army Corps of Engineers, Cold Regions Research & Engineering Laboratory, 1999.

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2

Wilkinson, P. The determination of environmental levels of uranium and thorium series isotopes and ℗£℗đʺ́Cs in aquatic and terrestrial samples. Ottawa: Dept. of Fisheries and Oceans, 1985.

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3

Asrari, Elham. Heavy metal contamination of water and soil: Analysis, assessment, and remediation strategies. Toronto: Apple Academic Press, 2014.

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4

1962-, Gauthier Renée, e Québec (Province). Direction des programmes de gestion des déchets et des lieux contaminés., eds. Problématique des sols et des eaux souterraines contaminés par des produits pétroliers: Sélection des paramètres analytiques. [Québec]: Gouvernement du Québec, Le Ministère, Direction des substances dangereuses, 1993.

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5

A, O'Shay Tracey, Hoddinott Keith B. 1956-, ASTM Committee D-18 on Soil and Rock., ASTM Subcommittee D18.06 on Physico-Chemical Properties of Soil. e American Petroleum Institute, eds. Analysis of soils contaminated with petroleum constituents. Philadelphia, PA: ASTM, 1994.

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6

Ph, Quevauviller, e Royal Society of Chemistry, eds. Methodologies in soil and sediment fractionation studies: Single and sequential extraction procedures. Cambridge: Royal Society of Chemistry, 2002.

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7

Grant, Clarence L. Comparison criteria for environmental chemical analyses of split samples sent to different laboratories: Corps of Engineers archived data. [Hanover, N.H.]: US Army Corps of Engineers, Cold Regions Research & Engineering Laboratory, 1996.

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8

Takahashi, Yoshio. Sentanteki X-sen kyūshūhō o mochiita dojōchū no yōso no ikō kyodō ni kansuru kenkyū. [Hiroshima-shi]: Hiroshima Daigaku, 2007.

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9

Stock, Reinhard. Die Verbreitung von Waldschäden in Fichtenforsten des Westharzes: Eine geographische Analyse. Göttingen: E. Goltze, 1990.

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10

Byrnes, Mark E. Field sampling methods for remedial investigations. 2a ed. Boca Raton, Fla: CRC, 2009.

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11

F, Jenkins T., U.S. Army Environmental Center. e Cold Regions Research and Engineering Laboratory (U.S.), eds. On-site analysis for high concentrations of explosives in soil: Extraction kinetics and dilution procedures. [Hanover, N.H.]: U.S. Army Corps of Engineers, Cold Regions Research & Engineering Laboratory, 1996.

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12

Hewitt, Alan D. Collaborative study of soils spiked with volatile organic compounds. [Hanover, N.H.]: US Army Corps of Engineers, Cold Regions Research & Engineering Laboratory, 1995.

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13

Environment, Alberta Alberta. PHC CWS analytical methods workshop 2001: Participants' report. Edmonton: Alberta Environment, 2003.

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14

Environment, Alberta Alberta. PHC CWS analytical methods workshop II 2002: Participants' report. Edmonton: Alberta Environment, 2003.

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15

Environment, Alberta Alberta. Alberta Environment interpretation of the reference method for the Canada-wide standard for petroleum hydrocarbons in soil validation of performance-based alternative methods. Edmonton: Alberta Environment, 2003.

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16

S, Gundersen L. C., e Wanty Richard B, eds. Field studies of radon in rocks, soils, and water. Boca Raton, Fla: C.K. Smoley, 1993.

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17

Wilkinson, S. R. Biosphere modelling for the IRUS preliminary safety analysis report. Chalk River, Ont: Chalk River Laboratories, 1996.

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18

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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19

Inc, Envirocon. Monthly soil vapor extraction report. Missoula, Mont: Envirocon, Inc., 1992.

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20

Kapustka, Lawrence. Rebuttal of ARCO's reports on phytotoxicity (Redente) & vegetation (Keammerer). Helena, MT: Montana Dept. of Justice, Natural Resource Damage program, 1995.

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21

Kapustka, Lawrence. Rebuttal of ARCO's reports on phytotoxicity (Redente) & vegetation (Keammerer). Helena, MT: Montana Dept. of Justice, Natural Resource Damage program, 1995.

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22

Gustafson, John B. Selection of representative TPH fractions based on fate and transport considerations. Amherst, Mass: Amherst Scientific Publishers, 1997.

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23

Waterloo Centre for Groundwater Research., Canada. Hazardous Waste Management Branch. e Canadian Council of Ministers of the Environment., eds. Subsurface assessment handbook for contaminated sites. [Ottawa]: The Council, 1994.

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24

United Nations Environment Programme. Environmental assessment of Ogoniland. Nairobi, Kenya: United Nations Environment Programme, 2011.

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25

Division, DynCorp Environmental Programs, e United States. Environmental Protection Agency. Office of Water., eds. Report of EPA efforts to replace freon for the determination of oil and grease and total petroleum hydrocarbons: Phase II. [Washington, DC]: U.S. Environmental Protection Agency, Office of Water, 1995.

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26

W, Terry Robert. Contamination of surface soil in Colorado by plutonium, 1970-1989: Summary and comparison of plutonium concentrations in soil in the Rocky Flats Plant vicinity and eastern Colorado. [Colorado?: Dept. of Health?, 1991.

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27

Abboud, Salim A. Site-specific critical loads of acid deposition on soils in the Edmonton 83H East map sheet, Alberta. Edmonton: Alberta Environment, 2009.

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28

Agency, International Atomic Energy, e Food and Agriculture Organization of the United Nations., eds. Stable isotopes in plant nutrition, soil fertility and environmental studies: Proceedings of an international symposium on the use of stable isotopes in plant nutrition, soil fertility and environmental studies. Vienna: International Atomic Energy Agency, 1991.

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29

Leggett, Jeremy K. The carbon war: Global warming and the end of the oil era. New York: Routledge, 2001.

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30

Asrari, Elham. Heavy Metal Contamination of Water and Soil: Analysis, Assessment, and Remediation Strategies. Apple Academic Press, Incorporated, 2014.

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31

Asrari, Elham. Heavy Metal Contamination of Water and Soil. Taylor & Francis Group, 2021.

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32

Conservation et analyse des échantillons d'eau et de sol: Guide des méthodes. [Québec]: Gouvernement du Québec, Ministère de l'Environnement et de la faune, 1996.

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33

Crompton, T. R. Determination of Metals in Natural Waters, Sediments, and Soils. Elsevier, 2015.

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34

Crompton, T. R. Determination of Metals in Natural Waters, Sediments, and Soils. Elsevier Science & Technology Books, 2015.

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35

Problématique des sols et des eaux souterraines contaminés par des produits pétroliers: Sélection des paramètres analytiques. [Québec]: Le M, 1996.

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36

James, Harrison. 6 Marine Environmental Threats from Shipping. Oxford University Press, 2017. http://dx.doi.org/10.1093/law/9780198707325.003.0006.

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The prevention of pollution from ships as a topic is largely addressed at the global level through the International Maritime Organization (IMO). Chapter 6 analyses the main treaties in this field, including the International Convention on the Prevention of Pollution from Ships (MARPOL Convention), the International Convention on the Safety of Life at Sea (SOLAS Convention), the International Convention on Ballast Water Management, and the International Convention on Anti-Fouling Substances. The analysis addresses both the types of rules employed in the IMO treaties and the processes through which the rules are amended and updated over time. The standards prescribed by these treaties are not only relevant to their Parties but also have a wider influence through the operation of rules of reference contained in United Nations Convention on the Law of the Sea (UNCLOS). The chapter also takes into account the emergence of broader concerns relating to the impact of shipping on marine biodiversity, such as noise pollution and ship strikes and the challenges in the implementation and enforcement of international shipping standards.
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37

Kakarla, Prasad K. C. Depth of Fenton-like reactions in soils for the oxidation of a sorbed hydrophobic contaminant. 1994.

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38

Application of agricultural analysis in environmental studies. Philadelphia, PA: ASTM, 1993.

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39

Quevauviller, P. Methodologies for Soil and Sediment Fractionation Studies. Royal Society of Chemistry, 2002.

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40

(Editor), Raymond C. Loehr, William C. Anderson (Editor) e Bradley P. Smith (Editor), eds. Environmental Availability of Chlorinated Organics, Explosives, and Heavy Metals in Soils. American Academy of Environmental Engineers, 1999.

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41

Byrnes, Mark Edward. Field Sampling Methods for Remedial Investigations. Taylor & Francis Group, 2008.

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42

Byrnes, Mark Edward. Field Sampling Methods for Remedial Investigations. Taylor & Francis Group, 2022.

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43

Byrnes, Mark Edward. Field Sampling Methods for Remedial Investigations. Taylor & Francis Group, 2008.

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44

Byrnes, Mark Edward. Field Sampling Methods for Remedial Investigations. Taylor & Francis Group, 2022.

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45

Byrnes, Mark Edward. Field Sampling Methods for Remedial Investigations. 2a ed. CRC, 2008.

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46

Byrnes, Mark E. Field Sampling Methods for Remedial Investigations. Taylor & Francis Group, 2019.

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47

Byrnes, Mark E. Field Sampling Methods for Remedial Investigations. Taylor & Francis Group, 2022.

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48

Byrnes, Mark Edward. Field Sampling Methods for Remedial Investigations. Taylor & Francis Group, 2022.

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49

Wanty, Richard B., e Linda C. S. Gundersen. Field Studies of Radon in Rocks, Soils, and Water. Taylor & Francis Group, 2020.

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50

Field studies of radon in rocks, soils, and water. Reston, VA: U.S. Geological Survey, 1991.

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