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Pollution reduction at wastewater treatment facilities through thermophilic sludge digestion

机译:通过高温污泥消化减少废水处理设施的污染

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Wastewater treatment facilities produce large amounts of sludge, which is a pollutant to the environment if not properly managed. Among the three most common methods (landfills, land application, incineration) of sludge disposal, thermophilic digestion to produce Class-A biosolids for land application is recognized as the most cost-effective, environmentally sustainable option. Full-scale experience revealed that thermophilically digested biosolids consumed a higher dosage of chemicals for conditioning and dewatering than conventionally (mesophilically) digested biosolids. This paper presents findings of a recent study to investigate how major operational parameters affect dewatering properties of thermophilically digested biosolids, and to search for the inter-relationship between digestion, characteristics of digested biosolids, and dewatering properties of thermophilic biosolids. Experimental work was carried out using bench-scale aerobic digesters. This study found that feed sludge composition has a significant effect on dewaterability. A higher content of secondary sludge resulted in poorer dewaterability in undigested and digested sludge. Dewatering properties are sensitive to a temperature effect. Such an effect is physical-chemical in nature. Excessive high shear results in significant deterioration in dewaterability. Thermophilic digestion resulted in a substantial increase in ammonia and phosphate concentrations, but these two factors seem to not have much impact on dewaterability. Instead, cellular biopolymers have a significant role in affecting dewatering properties of thermophilically digested biosolids. [References: 10]
机译:废水处理设施会产生大量污泥,如果管理不当,则会对环境造成污染。在三种最常见的污泥处置方法(垃圾填埋场,土地利用,焚化)中,热解法生产用于土地利用的A类生物固体被认为是最具成本效益,环境可持续的选择。全面的经验表明,与常规(中温)消化的生物固体相比,高温消化的生物固体消耗更多的化学物质用于调节和脱水。本文介绍了一项最新研究的发现,以研究主要操作参数如何影响嗜热消化的生物固体的脱水性能,并探索消化,消化的生物固体的特性和嗜热生物固体的脱水性能之间的相互关系。实验工作是使用台式有氧消化器进行的。这项研究发现,进料污泥的组成对脱水能力有重要影响。二级污泥含量较高,导致未消化和消化的污泥的脱水性较差。脱水特性对温度影响敏感。这种作用本质上是物理化学的。过度的高剪切导致脱水性的显着降低。高温消化导致氨和磷酸盐浓度大大增加,但是这两个因素似乎对脱水性没有太大影响。相反,细胞生物聚合物在影响嗜热消化的生物固体的脱水性能中具有重要作用。 [参考:10]

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