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Effect of semi-permeable cover system on the bacterial diversity during sewage sludge composting

机译:半渗透覆盖系统对污泥堆肥过程中细菌多样性的影响

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Sewage sludge composting is a profitable process economically viable and environmentally friendly. In despite of there are several kind of composting types, the use of combined system of semipermeable cover film and aeration air-floor is widely developed at industrial scale. However, the knowledge of the linkages between microbial communities structure, enzyme activities and physico-chemical factors under these conditions it has been poorly explored. Thus, the aim of this study was to investigate the bacterial dynamic and community structure using next generation sequencing coupled to analyses of microbial enzymatic activity and culturable dependent techniques in a full-scale real composting plant. Sewage sludge composting process was conducted using a semi-permeable Gore-tex cover, in combination with an air-insufflation system. The highest values of enzymatic activities such as dehydrogenase, protease and arylsulphatase were detected in the first 5 days of composting; suggesting that during this period of time a greater degrading activity of organic matter took place. Culturable bacteria identified were in agreement with the bacteria found by massive sequencing technologies. The greatest bacterial diversity was detected between days 15 and 30, withActinomycetalesandBacillalesbeing the predominant orders at the beginning and end of the process.Bacilluswas the most representative genus during all the process. A strong correlation between abiotic factors as total organic content and organic matter and enzymatic activities such as dehydrogenase, alkaline phosphatase, and ß-glucosidase activity was found. Bacterial diversity was strongly influenced by the stage of the process, community-structure change was concomitant with a temperature rise, rendering favorable conditions to stimulate microbial activity and facilitate the change in the microbial community linked to the degradation process. Moreover, results obtained confirmed that the use of semipermeable cover in the composting of sewage sludge allow a noticeable reduction in the process-time comparing to conventional open windrows.
机译:污泥堆肥是经济上可行且环境友好的有利过程。尽管存在多种堆肥类型,但是在工业规模上广泛开发了半透覆盖膜和曝气通风地板的组合系统的使用。然而,关于微生物群落结构,酶活性和理化因子之间联系的知识在这些条件下却很少被探索。因此,本研究的目的是使用下一代测序技术,结合对大规模实际堆肥工厂中微生物酶活性和可培养依赖技术的分析,来研究细菌的动态和群落结构。污水污泥的堆肥过程是使用半渗透的Gore-tex罩与空气注入系统结合进行的。在堆肥的前5天检测到了最高的酶活性值,例如脱氢酶,蛋白酶和芳基硫酸酯酶。这表明在这段时间内有机物发生了更大的降解活动。鉴定出的可培养细菌与大规模测序技术发现的细菌一致。在第15天到第30天之间发现了最大的细菌多样性,在过程的开始和结束时放线菌和芽孢杆菌是最主要的细菌。芽孢杆菌是整个过程中最具代表性的属。发现非生物因素(如总有机物含量和有机物)与酶活性(如脱氢酶,碱性磷酸酶和ß-葡糖苷酶活性)之间存在密切相关。细菌的多样性受到该过程阶段的强烈影响,群落结构的变化伴随着温度的升高,为刺激微生物活动并促进与降解过程相关的微生物群落的变化提供了有利条件。此外,获得的结果证实,与传统的露天堆肥相比,在污水污泥的堆肥中使用半渗透性覆盖物可显着减少处理时间。

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