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六种不同污水污泥堆肥中重金属的浓度及形态

Concentration and speciation of heavy metals in six different sewage sludge-composts.

作者信息

Cai Quan-Ying, Mo Ce-Hui, Wu Qi-Tang, Zeng Qiao-Yun, Katsoyiannis Athanasios

机构信息

College of Resources and Environment, South China Agricultural University, Guangzhou 510642, China.

出版信息

J Hazard Mater. 2007 Aug 25;147(3):1063-72. doi: 10.1016/j.jhazmat.2007.01.142. Epub 2007 Feb 6.

Abstract

This study presents the concentrations and speciation of heavy metals (HMs) in six different composts of sewage sludges deriving from two wastewater treatment plants in China. After 56 days of sludge composting with rice straw at a low C/N ratio (13:1), cadmium (Cd), copper (Cu), lead (Pb) and zinc (Zn) were enriched in sludge composts, exhibiting concentrations that varied from 0.75 to 2.0, 416 to 458, 66 to 168 and 1356 to 1750mgkg(-1) dry weight (d.w.), respectively. The concentrations increased by 12-60% for Cd, 8-17% for Cu, 15-43% for Pb and 14-44% for Zn compared to those in sewage sludges. The total concentrations of individual or total elements in the final composts exceeded the maximum permissible limits proposed for compost or fertilizer. In all the final composts, more than 70% of total Cu was associated with organic matter-bound fraction, while Zn was mainly concentrated in exchangeable and Fe-Mn oxide-bound fractions which implied the high mobility and bioavailability. Continuously aerated composting treatment exhibited better compost quality and lower potential toxicity of HMs, whereas inoculant with microorganism and enzyme spiked during composting had no obvious advantage on humification of organic matter and on reducing HM mobility and bioavailability.

摘要

本研究展示了来自中国两家污水处理厂的六种不同污泥堆肥中重金属(HMs)的浓度及形态。在低C/N比(13:1)下将污泥与稻草进行56天的堆肥处理后,镉(Cd)、铜(Cu)、铅(Pb)和锌(Zn)在污泥堆肥中得到富集,其浓度分别在0.75至2.0、416至458、66至168以及1356至1750mgkg(-1)干重(d.w.)之间变化。与污水污泥相比,Cd浓度增加了12 - 60%,Cu增加了8 - 17%,Pb增加了15 - 43%,Zn增加了14 - 44%。最终堆肥中各元素或总元素的总浓度超过了堆肥或肥料建议的最大允许限值。在所有最终堆肥中,超过70%的总Cu与有机物质结合态相关联,而Zn主要集中在可交换态和铁锰氧化物结合态,这意味着其具有较高的迁移率和生物有效性。持续曝气堆肥处理表现出更好的堆肥质量和较低的重金属潜在毒性,而在堆肥过程中添加微生物和酶接种剂在有机物腐殖化以及降低重金属迁移率和生物有效性方面没有明显优势。

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