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Enhanced production of short-chain fatty acids from waste activated sludge by addition of magnetite under suitable alkaline condition

机译:在合适的碱性条件下通过加入磁铁矿加强来自废活性污泥的短链脂肪酸的生产

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摘要

Alkaline fermentation technology is an effective method for resource recovery, e.g., short-chain fatty acids (SCFAs), but the acidification process needs to be further enhanced. To improve the release and acidification of organic matters in waste activated sludge (WAS) fermentation simultaneously, a novel method was proposed with magnetite addition under alkaline condition in this study. Compared with the control, SCFAs and acetic acids yields increased by 21.2% +/- 3.1% and 31.0% +/- 1.2% in the 0.6 g/gVSS magnetite-based system, respectively. Besides, the activities of a-glucosidase, protease and acetate kinase (AK) were enhanced with magnetite addition, and the abundance of acidogenic microbes was improved obviously. Furthermore, magnetite reduced the release of PO43- -P significantly via the precipitation reaction. Of all, a novel side-stream WAS hydrolysis and acidification process based on magnetite addition under suitable alkaline condition is proposed, realizing the efficient recovery of carbon and phosphorus resources along with wastewater and WAS treatment.
机译:碱性发酵技术是一种有效的资源回收方法,例如短链脂肪酸(SCFA),但需要进一步提高酸化过程。为了改善废物活性污泥(IS)同时发酵有机物的释放和酸化,提出了一种新的方法,在本研究中碱性条件下的磁铁矿添加。与对照,SCFA和醋酸产量分别在0.6g / gvss磁铁矿的系统中增加了21.2%+/-的31.2%+/- 1.2%。此外,通过磁铁矿加入增强α-葡萄糖苷酶,蛋白酶和醋酸激酶激酶(AK)的活性,并且显着提高了酸性微生物的丰度。此外,磁铁矿通过沉淀反应显着降低了PO43--P的释放。在所有情况下,提出了一种新的侧流是基于合适的碱性条件下基于磁铁矿加法的水解和酸化过程,实现了碳和磷资源以及废水的有效恢复并进行治疗。

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