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垃圾填埋场处置的城市垃圾中腐殖质内铜、铁、锌等元素的存在情况以及某些铜和铁配合物的性质。

The occurrence of copper, iron, zinc and other elements and the nature of some copper and iron complexes in humic substances from municipal refuse disposed of in a landfill.

作者信息

Filip Z, Cheshire M V, Goodman B A, McPhail D B

出版信息

Sci Total Environ. 1985 Jul;44(1):1-16. doi: 10.1016/0048-9697(85)90047-6.

Abstract

Municipal refuse was allowed to decompose in a simulated landfill for 20 months. Three different models were studied in which the refuse, in 40 m3 lots, was either compacted or mixed 2:1 with sewage sludge, the latter being studied in both uncompacted and compacted states. At 2, 6, 12 and 20 months, humic substances were extracted from samples with 0.1 M Na2P4O7 and 0.1 M NaOH, and humic acids isolated by precipitation after acidification with HCl. The humic substances were examined by electron paramagnetic resonance (EPR) to determine the free radical content and the nature of some of the metal complexes present. The principal form of copper was present in either a square planar or a tetragonally-distorted octahedral environment, probably coordinated to two nitrogen and two oxygen atoms. Fe3+ was present in at least three different environments. In one, it was probably in a complex with rhombic symmetry; another showed Fe3+ in an axially-symmetric environment, most likely as a ferric porphyrin. No distinctions could be made between the concentrations or forms of metals present in the refuse humic substances as a result of adding sewage sludge, but the additions increased the yield of humic substances, particularly in the uncompacted landfill. Humic substances in the refuse retain metal elements in complexed forms which will restrict their release from the landfill.

摘要

城市垃圾在模拟垃圾填埋场中分解20个月。研究了三种不同模型,其中40立方米的垃圾批次,要么被压实,要么与污水污泥按2:1混合,后者在未压实和压实状态下均进行了研究。在第2、6、12和20个月时,用0.1M的Na2P4O7和0.1M的NaOH从样品中提取腐殖质,并用HCl酸化后通过沉淀分离出腐殖酸。通过电子顺磁共振(EPR)对腐殖质进行检测,以确定自由基含量和某些存在的金属配合物的性质。铜的主要形式存在于平面正方形或四方畸变八面体环境中,可能与两个氮原子和两个氧原子配位。Fe3+存在于至少三种不同的环境中。在一种环境中,它可能处于具有菱形对称性的配合物中;另一种环境显示Fe3+处于轴对称环境中,最有可能是作为铁卟啉。添加污水污泥后,垃圾腐殖质中金属的浓度或形式没有明显差异,但添加物增加了腐殖质的产量,特别是在未压实的垃圾填埋场中。垃圾中的腐殖质以络合形式保留金属元素,这将限制它们从垃圾填埋场中释放。

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