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Sludge Incineration Bottom Ash Enhances Anaerobic Digestion of Primary Sludge toward Highly Efficient Sludge Anaerobic Codigestion

机译:污泥焚烧底部灰分增强了对高效污泥的初级污泥的厌氧消化厌氧厌氧区

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In wastewater treatment plants (WWTPs), two main sludge streams, i.e., primary sludge (PS) and waste activated sludge (WAS), are generally mixed for anaerobic codigestion. However, the methane production is usually restricted by the poor and slow biodegradability of PS, and an effective approach for its efficient codigestion with WAS is still lacking due to its highly different sludge properties from those of WAS. Herein, we reported a novel strategy through using the sludge incineration bottom ash to enhance the anaerobic digestion of PS and its codigestion with WAS. Biochemical methane potential (BMP) test results showed that ash additive at 0.6-1.2 g/g-dry matter (DM) significantly enhanced PS anaerobic digestion, identified by an up to 18.2% increase in specific methane production. This was accompanied by a significantly improved dewaterability in the digestate. The transformations of metabolic intermediates revealed that the ash additive accelerated the hydrolysis and acidogenesis processes, which were also supported by the increased hydrolysis rate (k) of PS determined through kinetic modeling. Ash additive was then experimentally demonstrated to be effective in enhancing the anaerobic codigestion of PS and WAS, with the increased volatile solids (VS) destruction being approximately 19.8%, representing a reduction of digestate volume by 12.6%. The novel strategy proposed in this study provides a new paradigm of an integrated sludge-control by sludge to bring significant economic benefits to wastewater treatment and sludge disposal.
机译:在废水处理厂(WWTPS)中,两种主要污泥流,即初级污泥(PS)和废物活性污泥(AS)通常为厌氧Codigestion。然而,甲烷产量通常受到PS的差和缓慢的缓慢增强性,并且由于其高度不同的污泥性能,仍然缺乏其有效的CODIPIONION的有效方法。在此,我们通过使用污泥焚烧底部灰分来增强PS的厌氧消化和其CODIGESTION的新策略。生物化学甲烷电位(BMP)测试结果表明,0.6-1.2g / g干物(DM)的灰色添加剂显着增强了PS厌氧消化,鉴定了特异性甲烷生产的高达18.2%。这伴随着消化物中的显着改善的脱水性。代谢中间体的转化显示,灰添加剂加速了通过通过动力学建模确定的PS的水解速率(k)的增加的水解率(k)。然后通过实验证明灰添加剂,以增强PS的厌氧Codigestion,并且具有增加的挥发性固体(Vs)破坏,约为19.8%,其将消化量降低12.6%。本研究提出的新型策略为污泥提供了一种新的污泥控制范式,以带来污水处理和污泥处理的显着经济效益。

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