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菌藻共生系统对模拟油田驱采废水中PAM和DIC去除的处理
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作者 王作超 唐春晓 +3 位作者 张慧超 李欣 上官默涵 安众一 《净水技术》 CAS 2023年第9期124-131,共8页
油田三元复合驱采废水中总溶解性无机碳(DIC)浓度高、总量大,现有以细菌为主的生物处理方法无法有效地处理DIC,尾水排放后会转化成CO_(2),违背了我国“碳减排”的总体目标。研究以旋转式菌藻共生生物膜系统处理模拟石油驱采废水,达到同... 油田三元复合驱采废水中总溶解性无机碳(DIC)浓度高、总量大,现有以细菌为主的生物处理方法无法有效地处理DIC,尾水排放后会转化成CO_(2),违背了我国“碳减排”的总体目标。研究以旋转式菌藻共生生物膜系统处理模拟石油驱采废水,达到同步削减DIC和聚丙烯酰胺(PAM)的目的。文章探究了不同PAM、总碳(TC)、总氮(TN)浓度条件下,体系对PAM、总有机碳(TOC)、无机碳(IC)、溶液黏度的减排效果。结果表明,菌藻共生系统在有效地降低出水中DIC浓度的同时,对PAM降解效果明显;DIC的去除率能达到70%~80%,PAM的降解率可以达到60%~70%。投加共代谢氮源可以提高PAM的降解效果,但DIC去除效果明显下降。扫描电镜图像显示,处理后的PAM结构出现了明显的破坏。针对菌藻生物膜的16S rDNA高通量测序结果表明,藻类、细菌、真菌均在PAM和DIC的去除方面发挥了重要作用。 展开更多
关键词 油田驱采出水 旋转藻生物膜反应器 菌藻共生系统 溶解性无机碳 聚丙烯酰胺
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MBBR工艺用于青岛李村河污水处理厂升级改造 被引量:29
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作者 孟涛 刘杰 +1 位作者 杨超 余鹏 《中国给水排水》 CAS CSCD 北大核心 2013年第2期59-61,共3页
青岛市李村河污水处理厂的升级改造工程规模为17×104m3/d,在综合分析污水厂现有工艺、占地、进出水指标及运行情况的基础上,升级改造的生物处理工艺采用投加悬浮填料工艺(MBBR工艺),实施改造后出水水质稳定达到《城镇污水处理厂污... 青岛市李村河污水处理厂的升级改造工程规模为17×104m3/d,在综合分析污水厂现有工艺、占地、进出水指标及运行情况的基础上,升级改造的生物处理工艺采用投加悬浮填料工艺(MBBR工艺),实施改造后出水水质稳定达到《城镇污水处理厂污染物排放标准》(GB 18918—2002)的一级A标准。 展开更多
关键词 污水处理厂 升级改造 MBBR
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Effects of tourmaline on nitrogen removal performance and biofilm structures in the sequencing batch biofilm reactor 被引量:10
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作者 Chong Tan Haoran Xu +7 位作者 Di Cui Jinlong Zuo Junsheng Li Yubin Ji Shan Qiu Lin Yao Ying Chen Yingjie Liu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2018年第5期127-135,共9页
The effects of tourmaline on nitrogen removal performance and biofilm structures were comparatively investigated in two identical laboratory-scale sequencing batch biofilm reactors(SBBRs)(denoted SBBR1 and SBBR2) ... The effects of tourmaline on nitrogen removal performance and biofilm structures were comparatively investigated in two identical laboratory-scale sequencing batch biofilm reactors(SBBRs)(denoted SBBR1 and SBBR2) at different nitrogen loading rates(NLRs) varying from(0.24 ± 0.01) to(1.26 ± 0.02) g N/(L·day). SBBR1 was operated in parallel with SBBR2, but SBBR1 was filled with polyurethane foam loaded tourmaline(TPU) carriers and another(SBBR2) filled with polyurethane foam(PU) carriers. Results obtained from this study showed that the excellent and stable performance of SBBR1 was obtained. Ammonia nitrogen removal and total nitrogen removal were higher in SBBR1 than that in SBBR2 with increase of NLR. At an NLR of(0.24 ± 0.01) g N/(L·day), the majority of the spherical and elliptical bacteria were surrounded by the extracellular polymeric substance(EPS) and bacillus or filamentous bacteria in two SBBRs biofilms. When NLR increased to(1.26 ± 0.02) g N/(L·day), the clusters were more obvious in the SBBR1 biofilm than that in the SBBR2 biofilm. Bacteria in SBBR1 were inclined to synthesis more EPS, and the formed EPS could protect the bacteria from free ammonia(FA) under extreme condition NLR(1.26 ± 0.02) g N/(L·day). The results of polymerase chain reaction-denaturing gradient gel electrophoresis analysis showed that the microbial community similarity in SBBR2 decreased more obviously than that in SBBR1 with the increase of NLR, which the microbial community in SBBR1 was relatively stable. 展开更多
关键词 TOURMALINE Nitrogen removal performance Biofilm structures Population dynamics Sequencing batch biofilmreactor (SBBR)
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