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利用质量鸟粪石沉淀去除厌氧消化脱水浓缩液中的难降解营养物和微量污染物。

Using mass struvite precipitation to remove recalcitrant nutrients and micropollutants from anaerobic digestion dewatering centrate.

机构信息

UBC Bioreactor Technology Group, School of Engineering, The University of British Columbia, Okanagan Campus, 1137 Alumni Avenue, Kelowna, BC V1V 1V7, Canada.

出版信息

Water Res. 2018 Apr 1;132:292-300. doi: 10.1016/j.watres.2018.01.004. Epub 2018 Jan 5.

Abstract

The primary objective of this research was to remove recalcitrant nutrients from anaerobically digested sludge dewatering centrate. A struvite precipitation methodology is proposed where salt crystals are encouraged to ballast colloidal particles through heterogeneous nucleation and subsequent crystal growth. The secondary objective was to assess presence of micropollutants in precipitates. Four biologically unique dewatering centrates were used to test the precipitation methodology on the variety of anaerobic digester configurations that can be expected from municipal wastewater treatment plant. The effect of digestion sludge retention time (2 day, 20 day) and digestion temperature (35 °C, 55 °C) on the removal of dissolved unreactive phosphorus (P) and nitrogen (N) was monitored. Averaged across all four centrates, the precipitation methodology resulted in dissolved unreactive P and N removal of 82.4% and 66.6%, respectively. Antimicrobial contaminants (triclosan, triclocarban) were observed in the precipitates at minute concentrations (<18 ng/g-dry solids). Therefore, mass struvite precipitation can provide a means of recalcitrant nutrient treatment and reactive nutrient recovery without the micropollutant burden of biosolids land application.

摘要

本研究的主要目的是去除厌氧消化污泥脱水浓缩液中的难处理营养物质。提出了一种鸟粪石沉淀方法,其中通过异质成核和随后的晶体生长来促使盐晶体使胶体颗粒沉降。次要目标是评估沉淀物中是否存在微量污染物。使用四种具有独特生物学特性的脱水浓缩液来测试沉淀方法,以模拟可能来自城市污水处理厂的各种厌氧消化器配置。监测了消化污泥停留时间(2 天,20 天)和消化温度(35°C,55°C)对溶解非反应性磷(P)和氮(N)去除的影响。在所有四种浓缩液的平均值中,沉淀方法分别导致溶解非反应性 P 和 N 的去除率为 82.4%和 66.6%。在沉淀物中观察到抗菌污染物(三氯生、三氯卡班),浓度很低(<18 ng/g-干固体)。因此,质量鸟粪石沉淀可以提供一种处理难处理营养物质和回收反应性营养物质的方法,而不会带来生物固体土地应用的微量污染物负担。

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