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基于形态特征的归因-证据-影响分析评价混合堆肥中污泥的贡献。

Evaluating sewage sludge contribution during co-composting using cause-evidence-impact analysis based on morphological characterization.

机构信息

Smart and Healthy Infrastructure Laboratory, Department of Civil Engineering, Bannari Amman Institute of Technology, Tamil Nadu, Sathyamangalam, 638401, India.

Department of Civil Engineering, Dr. Mahalingam College of Engineering and Technology, Tamil Nadu, Pollachi, 642003, India.

出版信息

Environ Sci Pollut Res Int. 2022 Jul;29(34):51161-51182. doi: 10.1007/s11356-022-19246-3. Epub 2022 Mar 4.

Abstract

The pertinent challenges associated with effective treatment of fecal sludge in medium scales necessitate alternative means for land application. The methods of compost preparation from sewage sludge and their modes of application to the agricultural fields have profound impacts on the soil ecology and environment. Besides the chemical conditioning effects on soil organic matter, they also impart physical attributes to the soil texture and structure. Though it is expected that compost addition improves water holding capacity and nutrient sequestration, there is lack of clarity in correlating the field outcomes with conditions of excess nutrient storage/leaching despite the agronomic benefits. In this study, we present a systematic cause-evidence-impact relationship on the feedstock composition, processing, and applications of co-composted sewage sludge. Various analytical tools were compared to elucidate the unique characteristics of co-composted sewage sludge to get a realistic understanding of the complex soil-compost interactions. Results from the spectroscopic characterization reveal the implications of selection of bulking agents and sludge pre-treatment in determining the final quality of the compost. Based on the results, we postulate a unique attribution of parent material influence to the formation of well-defined porous structures which influences the nutrient leaching/sequestrating behavior of the soil. Thus, the compounded impacts of composted organic matter on the soil and crop can be proactively determined in terms of elemental composition, functional groups, and stability indices. The present approach provides good scope for customizing the preparations and applications of aerobic microbial composts in order to derive the preferred field outputs.

摘要

在中等规模下有效处理粪便污泥所涉及的相关挑战需要寻找替代方法进行土地应用。从污水污泥制备堆肥的方法及其在农业领域的应用方式对土壤生态和环境有深远的影响。除了对土壤有机质的化学调节作用外,它们还赋予土壤质地和结构物理特性。尽管添加堆肥有望提高持水能力和养分固持,但尽管具有农业效益,但将田间结果与过量养分储存/淋溶的条件相关联仍缺乏明确性。在这项研究中,我们提出了一个关于共堆肥污水污泥的原料组成、处理和应用的系统因果关系-影响关系。各种分析工具进行了比较,以阐明共堆肥污水污泥的独特特性,从而更真实地了解复杂的土壤-堆肥相互作用。光谱特征化的结果揭示了选择膨胀剂和污泥预处理在确定堆肥最终质量方面的重要性。基于这些结果,我们假设母体材料的影响对形成定义明确的多孔结构有独特的归因,这会影响土壤中养分的淋溶/固持行为。因此,可以根据元素组成、官能团和稳定性指数,主动确定堆肥有机物质对土壤和作物的综合影响。这种方法为定制好氧微生物堆肥的制备和应用提供了很好的空间,以获得所需的田间效果。

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