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Influence of organic matter transformations on the biovailability of heavy metals in a sludge based compost

机译:有机质转化对污泥基堆肥中重金属生物有效性的影响

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摘要

The agricultural use of anaerobically digested sewage sludge (ADSS) as stable, mature compost implies knowing its total content in heavy metals and their bioavailability. This depends not only on the initial characteristics of the composted substrates but also on the organic matter transformations during composting which may influence the chemical form of the metals and their bioavailability.The objective of this work was to examine the relationships between the changes in the organic matter content and humus fractions, and the bioavailability of heavy metals.A detailed sampling at 0, 14, 84, and 140 days of the composting process was performed to measure C contents in humic acids (HAs), fulvic acids, (FAs) and humin, the total content of Zn, Pb, Cu, Ni, and Cd, and also their distribution into mobile and mobilisable (MB), and low bioavailability (LB) forms.Significant changes of C contents in HA, FA, and Humin, and in the FA/HA, HA/Humin and Chumus/TOC ratios were observed during composting. The MB and LB fractions of each metal also varied significantly during composting. The MB fraction increased for Zn, Cu, Ni, and Cd, and the LB fraction increased for Pb. Stepwise linear regressions and quadratic curve estimation conducted on the MB and LB fractions of each metal as dependent on the measured organic variables suggested that Zn bioavailability was mainly associated to percentage of C in FAs. Bioavailability of Cu, Ni and Cd during composting was associated to humin and HAs. Pb concentration increased in the LB form, and its variations followed a quadratic function with the Chumus/TOC ratio. Our results suggest that the composting process renders the metals in more available forms. The main forms of metal binding in the sludge and their availability in the final compost may be better described when metal fractionation obtained in sequential extraction and humus fractionation during composting are considered together.
机译:厌氧消化污泥(ADSS)作为稳定成熟的堆肥在农业上的使用,意味着知道其在重金属中的总含量及其生物利用度。这不仅取决于堆肥基质的初始特性,还取决于堆肥过程中有机物的转化,这可能会影响金属的化学形式及其生物利用度。这项工作的目的是研究有机物变化之间的关系。物质含量,腐殖质分数以及重金属的生物利用度。在堆肥过程的第0、14、84和140天进行了详细采样,以测量腐殖酸(HAs),富里酸(FAs)和腐殖质,Zn,Pb,Cu,Ni和Cd的总含量,以及它们以可移动和可移动(MB)形式分布,以及低生物利用度(LB)形式.HA,FA和Humin中C含量的显着变化,在堆肥过程中,观察到FA / HA,HA / Humin和Chumus / TOC的比率。堆肥过程中,每种金属的MB和LB分数也有很大差异。 Zn,Cu,Ni和Cd的MB分数增加,而Pb的LB分数增加。取决于测得的有机变量,对每种金属的MB和LB分数进行逐步线性回归和二次曲线估计,表明Zn的生物利用度主要与FA中C的百分比有关。堆肥过程中Cu,Ni和Cd的生物利用度与腐殖质和HAs有关。铅的浓度以LB形式增加,并且其变化遵循Chumus / TOC比的二次函数。我们的结果表明,堆肥过程使金属以更多可用形式存在。当一起考虑在顺序提取中获得的金属分馏和堆肥过程中的腐殖质分馏时,可以更好地描述污泥中金属结合的主要形式及其在最终堆肥中的可用性。

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