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A novel integrated bio-reactor of moving bed and constructed wetland (MBCW) for domestic wastewater treatment and its microbial community diversity

机译:移动床的新型综合生物反应器,湿地(MBCW)为国内废水处理及其微生物群落多样性

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摘要

An MBBR and CW combo bio-reactor (MBCW) was designed as a novel hybrid process for simultaneous organic, nitrogen and phosphate removal through the long-term operation. The effect of the internal recycling rate (IRR), hydraulic retention time (HRT) and chemical oxygen demand/total nitrogen (C/N) ratio were all discussed, and the recommended values were 5:1, 12 h and 6, respectively. A higher C/N ratio was a key factor for achieving a higher TN removal. The mixed biocarrier system was realized by inoculating porous polymer carriers (PPC) and cylindrical polyethylene carriers (CPC) and achieving a higher organic biodegradation and nitrification rate compared to a single carrier system. Microorganism activities and plants' uptake or utilization both contributed to the nutrient removal in a constructed wetland. High-throughput sequencing results revealed an abundant microbial diversity and a distinct microbial distribution in the whole system where Flavobacterium (14.2%), Acinetobacter (12.87%) and Rhodobacter (10.83%) dominated on PPC, Terrimonas (8.88%), Reyranella (6.61%) and Rubinisphaera (5.63%) dominated on CPC, Comamonas (4.18%), Gemmobacter (4.02%) and Hydrogenophaga (3.97%) dominated on CWs, as well as Citrobacter (53.13%) on suspended floc.
机译:MBBR和CW组合生物反应器(MBCW)设计为通过长期运行同时有机,氮和磷酸盐去除的新型杂化过程。内部回收率(IRR),液压保留时间(HRT)和化学需氧/总氮(C / N)比的影响均讨论,建议值为5:1,12小时和> 6,分别。较高的C / N比是实现更高TN去除的关键因素。通过接种多孔聚合物载体(PPC)和圆柱形聚乙烯载体(CPC)来实现混合生物载波系统并与单个载体系统相比,实现更高的有机生物降解和硝化速率。微生物活动和植物的摄取或利用既有助于建造的湿地中的营养去除。高通量测序结果显示出丰富的微生物多样性和整个系统中的不同微生物分布,其中黄杆菌(14.2%),传染病(12.87%)和乳菌(10.83%)在PPC,Terrimonas(8.88%),瑞奈兰菌(6.61 %)和Rubinisphaera(5.63%)在CPC,Comamonas(4.18%),大发血杆菌(4.02%)和氢气(3.97%)上占据在CWS上,以及悬浮絮凝物的柠檬杆菌(53.13%)。

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