Environmental Engineering Reference
In-Depth Information
Teaf CM (1995) Human health and environmental risks associated with contaminated military
sites. In: Herndon RC et al (eds) Clean-up of former Soviet Military installations. Springer,
Berlin
TlustošP,SzákováJ,Korínek K, Pavlíková D, Hanc A, Balík J (2006) The effect of liming on
cadmium, lead, and zinc uptake reduction by spring wheat grown in contaminated soil. Plant
Soil Environ 52(1):16-24
United Nations (1987) Report of the world commission on environment and development,
A/RES/42/187, 96th plenary meeting, 11 December 1987
United Nations (1992) Report of the United Nations conference on environment and development,
Rio de Janeiro, 3-14 June 1992, Annex I: Rio declaration on environment and development.
A/CONF.151/26 (vol I)
US EPA (2002) Guidance for comparing background and chemical concentrations in soil for
CERCLA sites. Office of emergency and remedial response U.S. environmental protection
agency Washington, DC 20460. EPA 540-R-01-003 OSWER 9285.7-41 September 2002
US EPA (2007) Treatment technologies for site cleanup, 12th edn. US EPA Report 542R07012,
September 2007
US EPA (2008) Title 40: protection of environment, part 51—requirements for preparation, adop-
tion, and submittal of implementation plans. Subpart F—procedural requirements. § 51.100
Definitions. GPO Access: Electronic Code of Federal Regulations (e-CFR), U.S. Government
Printing Office. Retrieved on 17 Mar 2008
US EPA (2009) US environmental protection agency website. http://www.epa.gov/brownfields/
glossary.htm . Retrieved 30 Mar 2009
US National Research Council (1983) Risk assessment in the federal Government: managing the
process. National Academy, Washington, DC
Vassilev A, Schwitzguebel JP, Thewys Th, Van der Lelie D, Van Gronsveld J (2004) The use of
plants for remediation of metal-contaminated soils. Sci World 4:9-24
Von Lindern I, Spalinger S, Petroysan V, von Braun M (2003a) Assessing remedial effectiveness
through the blood lead:soil/dust lead relationship at the Bunker Hill Superfund Site in the Silver
Valley of Idaho. Sci Total Environ 303(1-2):139-170
Von Lindern IH, Spalinger SM, Bero BN, Petrosyan V, von Braun MC (2003b) The influence of
soil remediation on lead in house dust. Sci Total Environ 303(1-2):59-78
Warren GP, Alloway BJ, Lepp NW, Singh B, Bochereau FJM, Penny C (2003) Field trials to assess
the uptake of arsenic by vegetables from contaminated soils and soil remediation with iron
oxides. Sci Total Environ 311:19-33
Weed DL (2005) Weight of evidence: a review of concept and methods. Risk Anal 25(6):
1545-1557
Wessolek G (2006) Soil and art - the aesthetic of dirt, abstract for the 18th World congress
of soil science (July 9-15, 2006), Philadelphia, PA. http://acs.confex.com/crops/wc2006/
techprogram/P13610.HTM . Retrieved 3 Mar 2009
WHO (2001) Integrated risk assessment, report prepared for the WHO/UNEP/ILO interna-
tional programme on chemical safety. WHO/IPCS/IRA/01/12. http://www.who.int/healthinfo/
boddaly/en/ . Retrieved 1 Aug 2008
WHO (2009) World health organisation website. http://www.who.int/healthinfo/boddaly/en/ .
Retrieved 30 Mar 2009
Williams ML, Locke VN (1999) Supervisor mentoring: does a female manager make a difference?
Paper presented at the institute for behavioral and applied management (IBAM) conference.
Annapolis, MD, November 4-6, 1999
Wong CSC, Xiang DL (2004) Pb contamination and isotopic composition of urban soils in Hong
Kong. Sci Total Environ 319(1-3):185-195
Wong SC, Li XD, Zhang G, Qi SH, Min YS (2002) Heavy metals in agricultural soils of the Pearl
River delta, South China. Environ Pollut 119(1):33-44
Yang QW, Shu WS, Qiu JW, Wang HB, Lan CY (2004) Lead in paddy soils and rice plants
and its potential health risk around Lechang Lead/Zinc Mine, Guangdong, China. Environ Int
30(7):883-889
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