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生物反应器中 Fe-P 复合物的转化及污泥中磷的回收:XANES 光谱研究。

Transformation of Fe-P Complexes in Bioreactors and P Recovery from Sludge: Investigation by XANES Spectroscopy.

机构信息

Shenzhen Engineering Research Laboratory for Sludge and Food Waste Treatment and Resource Recovery, Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, China.

Department of Civil and Environmental Engineering, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.

出版信息

Environ Sci Technol. 2020 Apr 7;54(7):4641-4650. doi: 10.1021/acs.est.9b07138. Epub 2020 Mar 24.

Abstract

The transformation of Fe-P complexes in bioreactors can be important for phosphorus (P) recovery from sludge. In this research, X-ray absorption near-edge structure analysis was conducted to quantify the transformation of Fe and P species in the sludge of different aging periods and in the subsequent acidogenic cofermentation for P recovery. P was readily removed from wastewater by Fe-facilitated coprecipitation and adsorption and could be extracted and recovered from sludge via acidogenic cofermentation and microbial iron reduction with food waste. The fresh Fe-based sludge mainly contained fresh ferrihydrite and amorphous FePO with sufficient accessible surface area, which was favorable for Fe-P mobilization and dissolution via microbial reaction. Ferric iron dosed into wastewater underwent rapid hydrolysis, clustering, aggregation, and slow crystallization to form hydrous iron oxides (HFO) with various complicated structures. With the aging of sludge in bioreactors, the HFO densified into phases with much reduced surface area and reactivity (e.g., goethite), which greatly increased the difficulty of P release and recovery. Thus, aging of P-containing sludge should be minimized in wastewater treatment systems for the purpose of P recovery.

摘要

在生物反应器中,Fe-P 配合物的转化对于从污泥中回收磷(P)非常重要。在这项研究中,采用 X 射线吸收近边结构分析定量研究了不同陈化期污泥中 Fe 和 P 物种的转化,以及随后的产酸共发酵回收 P。Fe 促进共沉淀和吸附可将 P 从废水中有效去除,并可通过产酸共发酵和利用食物垃圾进行微生物铁还原从污泥中提取和回收 P。新鲜的基于 Fe 的污泥主要含有新鲜的水铁矿和无定形的 FePO,具有足够的可及表面积,有利于微生物反应引起的 Fe-P 迁移和溶解。废水中投加的三价铁经历了快速水解、团聚、聚集和缓慢结晶,形成具有各种复杂结构的水合氧化铁(HFO)。随着污泥在生物反应器中的陈化,HFO 致密化为表面积和反应性大大降低的相(例如针铁矿),这极大地增加了 P 释放和回收的难度。因此,为了回收 P,在污水处理系统中应尽量减少含 P 污泥的陈化。

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