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微藻与初沉污泥共消化:对沼气产生和微污染物去除的影响。

Co-digestion of microalgae and primary sludge: Effect on biogas production and microcontaminants removal.

机构信息

GEMMA - Environmental Engineering and Microbiology Research Group, Department of Civil and Environmental Engineering, Universitat Politècnica de Catalunya·BarcelonaTech, c/ Jordi Girona 1-3, Building D1, E-08034 Barcelona, Spain.

Department of Environmental Chemistry, IDAEA-CSIC, c/Jordi Girona, 18-26, E-08034 Barcelona, Spain.

出版信息

Sci Total Environ. 2019 Apr 10;660:974-981. doi: 10.1016/j.scitotenv.2019.01.011. Epub 2019 Jan 3.

Abstract

Microalgal-based wastewater treatment plants are conceived as low cost and low energy consuming systems. The operation of these plants involves the management of primary sludge and microalgal biomass. The aim of this study is to analyse the anaerobic co-digestion of both by-products in terms of biogas production and contaminants of emerging concern removal. The co-digestion of microalgae and primary sludge (25/75% on a volatile solids basis) was investigated in continuous reactors and compared to microalgae mono-digestion at a hydraulic retention time of 20days. Results showed how the co-digestion enhanced the anaerobic digestion of microalgal biomass, since primary sludge is a more readily biodegradable substrate, which increased the methane production by 65% and reduced the risk of ammonia toxicity. Regarding the contaminants, musk fragrances (galaxolide and tonalide) and triclosan showed the highest abundance on primary sludge (0.5-25μg/g TS), whereas caffeine, methyl dihydrojasmonate and triphenyl phosphate were barely detected in both substrates (<0.1μg/g TS). The removal of these contaminants was compound-depending and ranged from no removal to up to 90%. On the whole, microalgae mono-digestion resulted in a higher removal of selected contaminants than the co-digestion with primary sludge.

摘要

基于微藻的废水处理厂被认为是低成本、低能耗的系统。这些工厂的运行涉及到初级污泥和微藻生物质的管理。本研究旨在分析这两种副产品的厌氧共消化,以评估沼气产量和新兴关注污染物的去除效果。在连续反应器中,以挥发性固体计,将微藻和初级污泥(25/75%)进行共消化,并与微藻单独消化(水力停留时间为 20 天)进行比较。结果表明,由于初级污泥是一种更容易生物降解的基质,因此共消化增强了微藻生物质的厌氧消化,从而使甲烷产量增加了 65%,并降低了氨毒性风险。关于污染物,麝香香精(加洛赛洛德和 tonalide)和三氯生在初级污泥中的丰度最高(0.5-25μg/g TS),而咖啡因、甲基二氢茉莉酮酸和三苯基膦在两种基质中几乎检测不到(<0.1μg/g TS)。这些污染物的去除情况取决于化合物本身,范围从完全不去除到高达 90%。总的来说,与与初级污泥共消化相比,微藻单独消化对所选污染物的去除效果更高。

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