生物炭
生物膜
生物降解
环烷酸
吸附
化学
软木
环境化学
微生物种群生物学
制浆造纸工业
废物管理
细菌
有机化学
吸附
热解
生物
腐蚀
遗传学
工程类
作者
Mathew L. Frankel,Tazul I. Bhuiyan,Andrei Veksha,Marc Demeter,David B. Layzell,Robert Helleur,Josephine M. Hill,Raymond J. Turner
标识
DOI:10.1016/j.biortech.2016.05.084
摘要
This study evaluated the efficacy of using a combined biofilm-biochar approach to remove organic (naphthenic acids (NAs)) and inorganic (metals) contaminants from process water (OSPW) generated by Canada's oil sands mining operations. A microbial community sourced from an OSPW sample was cultured as biofilms on several carbonaceous materials. Two biochar samples, from softwood bark (SB) and Aspen wood (N3), facilitated the most microbial growth (measured by protein assays) and were used for NA removal studies performed with and without biofilms, and in the presence and absence of contaminating metals. Similar NA removal was seen in 6-day sterile N3 and SB assays (>30%), while biodegradation by SB-associated biofilms increased NA removal to 87% in the presence of metals. Metal sorption was also observed, with up to four times more immobilization of Fe, Al, and As on biofilm-associated biochar. These results suggest this combined approach may be a promising treatment for OSPW.
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