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Biophysiological and factorial analyses in the treatment of rural domestic wastewater using multi-soil-layering systems

机译:多土壤分层系统处理农村生活污水的生物生理和因子分析

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摘要

Multi-soil-layering (MSL) system was developed as an attractive alternative to traditional land-based treatment techniques. Within MSL system, the environmental cleanup capability of soil is maximized, while the soil microbial communities may also change during operation. This study aimed to reveal the nature of biophysiological changes in MSL systems during operation. The species diversity in soil mixture blocks was analyzed using Illumina HiSeq sequencing of the 16S rRNA gene. The interactive effects of operating factors on species richness, community diversity and bacteria abundance correlated with COD, N and P removal were revealed through factorial analysis. The results indicated the main factors, aeration, bottom submersion and microbial amendment, had different significant effects on microbial responses. The surface area and porosity of zeolites in permeable layers decreased due to the absorption of extracellular polymeric substances. The findings were applied for the design and building of a full-size MSL system in field and satisfied removal efficiency was achieved. The results of this study can help better understand the mechanisms of pollutant reduction within MSL systems from microbial insights. It will have important implications for developing appropriate strategies for operating MSL systems with high efficiency and less risks.
机译:开发了多土壤分层(MSL)系统,以替代传统的陆基处理技术。在MSL系统内,土壤的环境净化能力得到了最大化,而土壤微生物群落在操作过程中也可能发生变化。这项研究旨在揭示手术期间MSL系统生物生理变化的本质。使用16S rRNA基因的Illumina HiSeq测序分析了土壤混合物块中的物种多样性。通过因子分析揭示了操作因素对物种丰富度,群落多样性和细菌丰度与COD,N和P去除相关的交互作用。结果表明,通气,底部浸没和微生物改良等主要因素对微生物反应的影响不同。渗透层中的沸石的表面积和孔隙率由于细胞外聚合物的吸收而降低。这些发现被用于野外全尺寸MSL系统的设计和建造,并获得了令人满意的去除效率。这项研究的结果可以帮助从微生物方面更好地了解MSL系统内污染物减少的机理。这将为开发高效且风险较小的MSL系统制定适当的策略具有重要意义。

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