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堆肥过程中有机物和污染物演变的模拟:COP-Compost 模型。

Simulation of Organic Matter and Pollutant Evolution during Composting: The COP-Compost Model.

出版信息

J Environ Qual. 2013 Mar-Apr;42(2):361-72. doi: 10.2134/jeq2012.0141.

Abstract

Organic pollutants (OPs) are potentially present in composts and the assessment of their content and bioaccessibility in these composts is of paramount importance. In this work, we proposed a model to simulate the behavior of OPs and the dynamic of organic C during composting. This model, named COP-Compost, includes two modules. An existing organic C module is based on the biochemical composition of the initial waste mixture and simulates the organic matter transformation during composting. An additional OP module simulates OP mineralization and the evolution of its bioaccessibility. Coupling hypotheses were proposed to describe the interactions between organic C and OP modules. The organic C module, evaluated using experimental data obtained from 4-L composting pilots, was independently tested. The COP-Compost model was evaluated during composting experiments containing four OPs representative of the major pollutants detected in compost and targeted by current and future regulations. These OPs included a polycyclic aromatic hydrocarbon (fluoranthene), two surfactants (4--nonylphenol and a linear alkylbenzene sulfonate), and an herbicide (glyphosate). Residues of C-labeled OP with different bioaccessibility were characterized by sequential extraction and quantified as soluble, sorbed, and nonextractable fractions. The model was calibrated and coupling the organic C and OP modules improved the simulation of the OP behavior and bioaccessibility during composting.

摘要

有机污染物 (OPs) 可能存在于堆肥中,评估其在这些堆肥中的含量和生物可利用性至关重要。在这项工作中,我们提出了一个模型来模拟 OPs 的行为和有机 C 在堆肥过程中的动态。这个名为 COP-Compost 的模型包括两个模块。现有的有机 C 模块基于初始废物混合物的生化组成,模拟堆肥过程中的有机物转化。一个额外的 OP 模块模拟 OP 的矿化和其生物可利用性的演变。提出了耦合假设来描述有机 C 和 OP 模块之间的相互作用。使用从 4-L 堆肥试验中获得的实验数据评估了有机 C 模块,并对其进行了独立测试。COP-Compost 模型在包含四种代表堆肥中检测到的主要污染物和当前及未来法规针对的污染物的堆肥试验中进行了评估。这些 OPs 包括一种多环芳烃(荧蒽)、两种表面活性剂(4--壬基酚和直链烷基苯磺酸盐)和一种除草剂(草甘膦)。用不同生物可利用性的 C 标记 OP 的残留物通过顺序提取进行了表征,并作为可溶、吸附和不可提取的分数进行了量化。该模型经过校准,通过耦合有机 C 和 OP 模块,改善了堆肥过程中 OP 行为和生物可利用性的模拟。

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