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通过重金属连续形态分析对六种不同污泥进行的比较研究

Comparative study of six different sludges by sequential speciation of heavy metals.

作者信息

Fuentes Ana, Lloréns Mercedes, Sáez José, Isabel Aguilar M A, Ortuño Juan F, Meseguer Victor F

机构信息

Department of Chemical Engineering, University of Murcia, Campus Espinardo, 30071 Murcia, Spain.

出版信息

Bioresour Technol. 2008 Feb;99(3):517-25. doi: 10.1016/j.biortech.2007.01.025. Epub 2007 Mar 26.

Abstract

The presence of heavy metals in the sludges produced in wastewater treatment plants restricts their use for agricultural purposes. This study looks at different types of sludge (aerobic, anaerobic, unstabilised, sludge from a waste stabilisation pond, sludge from an extended aeration plant and heat treated sludge) and compares the distribution of heavy metals with the treatment that they have undergone. In addition, the total quantity of metals (Cd, Cr, Cu, Ca, K, Fe, Mg, Ni, Na, Pb and Zn) and some agronomic parameters necessary for characterising a sludge as suitable for use as amendment were determined. The BCR method for heavy metal speciation was followed. Principal component analysis (PCA) was applied in order to obtain more information about metal speciation in the sewage sludges. It was confirmed that the concentration of heavy metals did not exceed the limits set out by European legislation and that the stabilisation treatment undergone by the sludges strongly influenced the heavy metal distribution and the phases to which they were associated. The waste stabilisation pond sludge, which has undergone a higher degree of mineralisation than the others, shows a lower metal bioavailability index since practically all the heavy metals in it are associated to the oxidisable and residual fraction. On the other hand the unstabilised sludge, which, along with that exposed to extended aeration, contains the highest accumulations of heavy metals in the most easily assimilable fractions.

摘要

污水处理厂产生的污泥中重金属的存在限制了其在农业中的应用。本研究考察了不同类型的污泥(好氧污泥、厌氧污泥、未稳定化污泥、来自废物稳定塘的污泥、来自延时曝气厂的污泥和热处理污泥),并比较了重金属的分布及其所经历的处理过程。此外,还测定了金属(镉、铬、铜、钙、钾、铁、镁、镍、钠、铅和锌)的总量以及一些用于表征污泥是否适合用作改良剂的农艺参数。采用了BCR重金属形态分析方法。应用主成分分析(PCA)以获取更多关于污水污泥中金属形态的信息。结果证实,重金属浓度未超过欧洲法规规定的限值,并且污泥所经历的稳定化处理强烈影响了重金属的分布及其相关相态。与其他污泥相比,经历了更高程度矿化的废物稳定塘污泥显示出较低的金属生物利用度指数,因为其中几乎所有重金属都与可氧化和残留部分相关。另一方面,未稳定化污泥以及经过延时曝气的污泥,在最易同化的部分中重金属积累量最高。

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