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城市固体废物中重金属转化的估算。

Estimation of heavy metal transformations in municipal solid waste.

作者信息

Flyhammar P

机构信息

Department of Water Resources Engineering, Lund University, Sweden.

出版信息

Sci Total Environ. 1997 May 30;198(2):123-33. doi: 10.1016/s0048-9697(97)05439-9.

Abstract

The behaviour of heavy metals bound to municipal solid waste (MSW) and exposed to 2 decades of anaerobic waste stabilization processes have been estimated. Heavy metal solid forms in a waste degradation residue have been compared with a reconstructed waste similar to that initially disposed of in 1973. The initial waste was composed of a mixture of shredded MSW (95% dry wt.) and anaerobic sewage sludge (5% dry wt.). A sequential chemical extraction method has been used to fractionate the heavy metals into five categories of available and reactive solid forms. The results imply that these forms can be ascribed to approximately 30% of the total content of the heavy metals in the degraded waste and the portion of heavy metals bound to oxidizable solid forms seems to be higher in the degraded than the fresh MSW. The bulk of the remaining heavy metals are assumed to be less available and bound into resistant lattice structures, such as metal and polymer items. A comparison between fractionation patterns of the waste in this study and of a few sediments collected from different environments imply similarities between the fresh MSW and an oxic sediment from one site and the sewage sludge and anoxic sediments from another site. Fractionation patterns of the degraded waste are found to be quite similar to those of the anoxic sediments, except for Pb, Ni and Cd which are more similar to fresh MSW.

摘要

研究估算了与城市固体废弃物(MSW)结合并经历20年厌氧废物稳定化过程的重金属的行为。将废物降解残渣中的重金属固体形态与1973年最初处置的类似重建废物进行了比较。初始废物由切碎的城市固体废弃物(95%干重)和厌氧污水污泥(5%干重)的混合物组成。采用连续化学提取法将重金属分为五类可利用和反应性固体形态。结果表明,这些形态约占降解废物中重金属总含量的30%,且与可氧化固体形态结合的重金属部分在降解废物中似乎比新鲜城市固体废弃物中更高。其余大部分重金属被认为可用性较低,并结合到抗性晶格结构中,如金属和聚合物物品。本研究中废物的分级模式与从不同环境收集的一些沉积物的分级模式之间的比较表明,新鲜城市固体废弃物与一个地点的有氧沉积物、污水污泥与另一个地点的缺氧沉积物之间存在相似性。发现降解废物的分级模式与缺氧沉积物的分级模式非常相似,除了铅、镍和镉,它们与新鲜城市固体废弃物更相似。

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