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Biogeochemistry of landfill leachate plumes [Review]

机译:垃圾渗滤液羽流的生物地球化学[综述]

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The literature has been critically reviewed in order to assess the attenuation processes governing contaminants in leachate affected aquifers. Attenuation here refers to dilution, sorption, ion exchange, precipitation, redox reactions and degradation processes. With respect to contaminants, focus is on dissolved organic matter, xenobiotic organic compounds, inorganic macrocomponents as anions and cations, and heavy metals. Laboratory as well as field investigations are included. This review is an up-date of an earlier comprehensive review. The review shows that most leachate contamination plumes are relatively narrow and do not in terms of width exceed the width of the landfill. The concept of redox zones being present in the plume has been confirmed by the reported composition of the leachate contaminated groundwater at several landfills and constitutes an important framework for understanding the behavior of the contaminants in the plume as the leachate migrates away from the landfill. Diverse microbial communities have been identified in leachate plumes and are believed to be responsible for the redox processes. Dissolved organic C in the leachate, although it appears to be only slowly degradable when the volatile organic acids are gone, apparently acts as substrate for the microbial. redox processes. Several xenobiotic organic compounds have been found to be degradable in leachate contaminated groundwater, but degradation rates under anaerobic redox conditions have only been determined in a few cases. Apparently, observations in actual plumes indicate more extensive degradation than has been documented in the laboratory. The behavior of cations in leachate plumes is strongly influenced by exchange with the sediment, although the sediment often is very coarse and sandy. Ammonium seems to be subject to anaerobic oxidation, but the mechanisms are not yet understood. Heavy metals do not seem to constitute a significant pollution problem at landfills, partly because the heavy metal concentrations in the leachate often are low, and partly because of strong attenuation by sorption and precipitation. Although complexation of heavy metals with dissolved organic matter is significant, the heavy metals are in most cases still strongly attenuated in leachate-polluted aquifers. The information available on attenuation processes has increased dramatically during the last 15 a, but the number of well-documented full scale leachate plumes are still few and primarily from sandy aquifers. Thus, the diversity of attenuation processes in leachate plumes is probably not yet fully understood. Apparently, the attenuation processes in leachate plumes may for many contaminants provide significant natural remediation, limiting the effects of the leachate on the groundwater to an area usually not exceeding 1000 m from the landfill. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 263]
机译:为了评估控制渗滤液受影响含水层中污染物的衰减过程,文献进行了严格审查。此处的衰减是指稀释,吸附,离子交换,沉淀,氧化还原反应和降解过程。关于污染物,重点是溶解的有机物,异种有机化合物,阴离子和阳离子等无机大分子成分以及重金属。包括实验室以及现场调查。该评论是较早的全面评论的最新内容。审查显示,大多数渗滤液污染烟羽相对较窄,宽度不超过垃圾填埋场的宽度。烟羽中存在氧化还原区域的概念已被报道的几个垃圾填埋场中渗滤液污染的地下水的成分所证实,并构成了理解渗滤液中污染物从垃圾填埋场迁移时行为的重要框架。在渗滤液羽流中发现了各种微生物群落,并被认为是造成氧化还原过程的原因。渗滤液中溶解的有机碳,尽管当挥发性有机酸消失后似乎只能缓慢降解,但显然是微生物的底物。氧化还原过程。已经发现几种异生物有机化合物在渗滤液污染的地下水中可降解,但仅在少数情况下确定了厌氧氧化还原条件下的降解速率。显然,在实际羽流中观察到的降解程度比实验室中记录的还要严重。阳离子在渗滤液羽流中的行为受与沉积物交换的强烈影响,尽管沉积物通常非常粗糙和沙质。铵似乎经历了厌氧氧化,但是其机理尚不清楚。重金属似乎不会在垃圾填埋场构成严重的污染问题,部分是因为渗滤液中的重金属浓度通常很低,部分是由于吸附和沉淀引起的强烈衰减。尽管重金属与溶解的有机物的络合作用非常明显,但在大多数情况下,重金属在浸出液污染的含水层中仍会强烈衰减。在过去的15 a中,有关衰减过程的可用信息已大大增加,但是有据可查的全尺寸渗滤液羽流数量仍然很少,主要来自含砂含水层。因此,渗滤液羽流中衰减过程的多样性可能尚未完全被理解。显然,渗滤液羽流中的衰减过程可能会为许多污染物提供明显的自然修复,从而将渗滤液对地下水的影响限制在距垃圾填埋场通常不超过1000 m的区域。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:263]

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