首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >An oxic/anoxic-integrated and Fe/C micro-electrolysis-mediated vertical constructed wetland for decentralized low-carbon greywater treatment
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An oxic/anoxic-integrated and Fe/C micro-electrolysis-mediated vertical constructed wetland for decentralized low-carbon greywater treatment

机译:一种氧/缺氧整合和Fe / C微电解介导的垂直构建的湿地用于分散低碳灰水处理

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摘要

The treatment of decentralized low-carbon greywater in rural area, particularly in cold weather, remains a challenge. Oxic/anoxic process and Fe/C micro-electrolysis were incorporated into vertical constructed wetland to develop ME-(O/A)CW for practical decentralized low-carbon greywater treatment. ME-(O/A)CW provided NH4+-N, TN, TP and COD removal of 94.3%, 86.2%, 98.0% and 92.7%, respectively, at hydraulic loading rate of 0.9 m(3)/(m(2).d) under low ambient temperature of-11.5 to 8.0 degrees C. Effective nitrification, phosphorus-accumulating and organic-degradation were proceeded in the aerobic layers and efficient H-2-/Fe2+-mediated autotrophic denitrification and Fe3+-based phosphorus immobilization were developed in the anaerobic layers through in-situ H2-/Fe2+-supply by Fe/C micro-electrolysis. AOB (e.g. Nitrosomonadales), NOB/PAOs (e.g. Nitrospira), autotrophic denitrificans (e.g. Thiobacillus, Hydrogenophaga and Sulfurimonas), heterotrophic denitrificans (e.g. Denitratisoma) and Fe(II)-oxidizing bacteria (e.g. Ferritrophicum) dominated ME-(O/A)CW and confirmed the reaction mechanisms. The developed ME-(O/A)CW presented significant potential in the practical application for decentralized low-carbon greywater treatment under low ambient temperature.
机译:农村地区分散低碳灰水处理,特别是在寒冷的天气中的治疗仍然是一个挑战。肟/缺氧过程和Fe / C微电解掺入垂直构建的湿地中,以发育Me-(O / A)CW,用于实际分散低碳灰水处理。 Me-(O / a)Cw提供NH4 + -N,TN,TP和COD,分别为94.3%,86.2%,98.0%和92.7%,在0.9 m(3)/(m(2) .D)在低环境温度下-11.5至8.0℃。在有氧水层中进行有效硝化,磷积累和有机降解,有效的H-2- / Fe2 +介导的自养碳酸和Fe3 +基于磷固定化通过使用Fe / C微电解通过原位H2- / FE2 + -Supply在厌氧层中开发。 AOB(例如亚硝基甲醛),nob / paos(例如nitrospira),自养脱氧人(例如硫嘧唑虫,氢气,硫纤维蛋白),异养的脱抗人(例如DeNitratisoma)和Fe(II) - 氧化细菌(例如酸镍)占主导地位 - (O / A. )CW并证实了反应机制。发达的ME-(O / A)CW在低环境温度下的分散低碳灰水处理的实际应用中提出了显着的潜力。

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