Contaminant Fate, Dynamics and Bioavailability: Biochemical and Molecular Mechanism at the Soil: Root interface

R. Naidu, K. Kim
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引用次数: 5

Abstract

Environmental contamination from improper disposal of hazardous industrial and municipal wastes has long been recognised as an issue of public concern, regulatory activity, and scientific investigation. Such disposals have resulted in the occurrence of in excess of 80,000 potentially contaminated sites in Australia (Natusch, 1997) and over 3 million such sites in the Asia region. In the United States (US), there are estimated to be about 400,000 waste disposal sites where soil and groundwater contamination is deemed to be of sufficient extent and magnitude that some type of remedial action is warranted to protect public health or to minimize adverse environmental and ecological impacts (Rao et al., 1996; USEPA, 2004, http://www.epa.gov/superfund/news/30years.htm). Remediation of contaminated sites to the extent practicable is expected to cost approximately $5 to 8 billion in Australia (Powell, 1992;
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污染物的命运、动力学和生物利用度:土壤的生化和分子机制:根界面
危险工业和城市废物处置不当造成的环境污染长期以来一直被认为是公众关注、监管活动和科学调查的一个问题。这种处置导致在澳大利亚出现了超过8万个可能受到污染的地点(Natusch, 1997年),在亚洲区域出现了超过300万个这样的地点。在美国,估计约有40万个废物处理场,土壤和地下水污染的程度和程度被认为足够严重,需要采取某种补救行动,以保护公众健康或尽量减少不利的环境和生态影响(Rao等人,1996年;美国环保局,2004,http://www.epa.gov/superfund/news/30years.htm)。在可行范围内修复受污染场地预计在澳大利亚将花费约50至80亿美元(Powell, 1992;
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