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通过古菌 Brevibacterium antiquum 的碱性发酵和鸟粪石生物矿化从废活性污泥中回收磷的生物恢复。

Biological recovery of phosphorus from waste activated sludge via alkaline fermentation and struvite biomineralization by Brevibacterium antiquum.

机构信息

Environmental Engineering Department, Institute of Pure and Applied Sciences, Marmara University, Kuyubaşı, Istanbul, Turkey.

Institute of Plant Sciences and Oeschger Centre for Climate Change Research, University of Bern, Bern, Switzerland.

出版信息

Biodegradation. 2022 Apr;33(2):195-206. doi: 10.1007/s10532-022-09975-0. Epub 2022 Feb 10.

Abstract

Struvite biomineralization is a promising method for phosphorus recovery from wastewater treatment plant streams, and the growth of responsible microorganisms in mixed cultures is one of the most critical points for applying this process in pilot and full-scale. This study aimed to investigate the growth and bio-struvite production of Brevibacterium antiquum in mixed sludge culture. Alkaline fermentation was applied at different pH conditions to enhance the phosphorus content of sludge for an efficient recovery, and pH 8 was determined as the most feasible considering the phosphorus release and sludge characteristics. Growth optimization studies showed that NaCl's presence decreases the growth rate of Brevibacterium antiquum and bio-struvite production. At the same time, pH in the range of 6.8-8.2 did not alter the growth significantly. In addition, studies showed the ability of Brevibacterium antiquum in unsterilized fermented sludge centrate to grow and recover the phosphorus as struvite. Thus, our results indicated the potential of struvite biomineralization in full-scale wastewater treatment plants.

摘要

鸟粪石生物矿化是一种从污水处理厂废水中回收磷的很有前途的方法,而在混合培养物中负责微生物的生长是将该工艺应用于中试和全规模的最关键因素之一。本研究旨在研究在混合污泥培养物中古老棒杆菌的生长和生物鸟粪石的生产情况。应用碱性发酵在不同的 pH 条件下提高污泥中的磷含量,以实现高效回收,考虑到磷的释放和污泥的特性,确定 pH8 是最可行的。生长优化研究表明,NaCl 的存在会降低古老棒杆菌的生长速度和生物鸟粪石的产量。同时,pH 值在 6.8-8.2 范围内对生长没有显著影响。此外,研究表明,古老棒杆菌在未经消毒的发酵污泥浓缩物中能够生长并将磷回收为鸟粪石。因此,我们的研究结果表明,在全规模污水处理厂中进行鸟粪石生物矿化具有潜力。

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