Graphical '/> The potential impact on the biodegradation of organic pollutants from composting technology for soil remediation
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The potential impact on the biodegradation of organic pollutants from composting technology for soil remediation

机译:堆肥技术修复土壤对有机污染物生物降解的潜在影响

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Graphical abstractDisplay OmittedHighlightsThe remediation efficiency of composting technology depends on its influence on bioavailability of organic pollutants.Composts have contradictory effect on the bioavailability of organic pollutants.Impact factors of composting technology on bioavailability of organic pollutants are discussed.AbstractLarge numbers of organic pollutants (OPs), such as polycyclic aromatic hydrocarbons, pesticides and petroleum, are discharged into soil, posing a huge threat to natural environment. Traditional chemical and physical remediation technologies are either incompetent or expensive, and may cause secondary pollution. The technology of soil composting or use of compost as soil amendment can utilize quantities of active microbes to degrade OPs with the help of available nutrients in the compost matrix. It is highly cost-effective for soil remediation. On the one hand, compost incorporated into contaminated soil is capable of increasing the organic matter content, which improves the soil environment and stimulates the metabolically activity of microbial community. On the other hand, the organic matter in composts would increase the adsorption of OPs and affect their bioavailability, leading to decreased fraction available for microorganism-mediated degradation. Some advanced instrumental analytical approaches developed in recent years may be adopted to expound this process. Therefore, the study on bioavailability of OPs in soil is extremely important for the application of composting technology. This work will discuss the changes of physical and chemical properties of contaminated soils and the bioavailability of OPs by the adsorption of composting matrix. The characteristics of OPs, types and compositions of compost amendments, soil/compost ratio and compost distribution influence the bioavailability of OPs. In addition, the impact of composting factors (composting temperature, co-substrates and exogenous microorganisms) on the removal and bioavailability of OPs is also studied.
机译: 图形摘要 省略显示 突出显示 堆肥技术的修复效率取决于其对有机污染物生物利用度的影响。 堆肥有矛盾的效果ct上有机污染物的生物利用度。 讨论了堆肥技术对有机污染物生物利用度的影响因素。 摘要 大量的有机污染物(OPs),例如多环芳香烃,农药和石油被排放到土壤中,对自然环境构成了巨大威胁。传统的化学和物理修复技术要么不称职,要么昂贵,并可能造成二次污染。土壤堆肥技术或使用堆肥作为土壤改良剂的技术可以利用堆肥基质中可用的养分,利用一定数量的活性微生物降解有机磷。它对于土壤修复具有很高的成本效益。一方面,掺入污染土壤中的堆肥能够增加有机质含量,从而改善土壤环境并刺激微生物群落的代谢活性。另一方面,堆肥中的有机物会增加OP的吸附并影响其生物利用度,从而导致可用于微生物介导降解的组分减少。近年来开发的一些先进的仪器分析方法可以用来阐述这一过程。因此,研究OPs在土壤中的生物利用度对堆肥技术的应用极为重要。这项工作将讨论通过堆肥基质的吸附来改变被污染土壤的理化性质和OPs的生物利用度。 OP的特性,堆肥改良剂的类型和组成,土壤/堆肥比和堆肥分布都会影响OP的生物利用度。此外,还研究了堆肥因子(堆肥温度,共底物和外源微生物)对OPs的去除和生物利用度的影响。

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