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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The variation on nitrogen removal mechanisms and the succession of ammonia oxidizing archaea and ammonia oxidizing bacteria with temperature in biofilm reactors treating saline wastewater
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The variation on nitrogen removal mechanisms and the succession of ammonia oxidizing archaea and ammonia oxidizing bacteria with temperature in biofilm reactors treating saline wastewater

机译:氮去除机制的变化及氨氧化古痤疮和氨氧化细菌的生物膜反应器温度处理盐水废水

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摘要

To reveal nitrogen removal mechanisms under environmental stresses, biofilm reactors were operated at different temperatures (10 degrees C-35 degrees C) treating saline wastewater (salinity 3%). The results showed nitrogen removal efficiency was 98.46% at 30 degrees C and 60.85% at 10 degrees C, respectively. Both ammonia oxidizing archaea (AOA) and ammonia oxidizing bacteria (AOB) participated in nitrification. 94.9% of the overall ammonia oxidation was attributed to AOA at 10 degrees C, but only 48.2% of that was undertaken by AOA at 35 degrees C. AOA had a greater contribution at low temperature, which demonstrated that nitrogen removal pathway varied with temperature. Aerobic denitrification was more stable than anoxic denitrification. High-throughput sequencing showed Crenarchaeota was the dominant AOA (97.02-34.47%), cooperating with various heterotrophic AOB. Real-time PCR indicated that AOA was three orders of magnitude more abundant than AOB. AOA was more resistant to low temperature and high-saline stresses. Ammonia oxidizers had distinct responses to temperature change and showed diverse relationships at different temperatures.
机译:为了揭示环境应力下的氮去除机制,生物膜反应器在不同温度(10℃-35℃)处理盐水废水(盐度3%)。结果表明,氮去除效率分别为30℃和10℃的30.85%。氨氧化古痤疮(AOA)和氨氧化细菌(AOB)参与硝化。总氨氧化的94.9%归因于10摄氏度的AOA,但是在35℃下的AOA仅由AOA进行的48.2%在低温下具有更大的贡献,这证明了氮去除途径随温度而变化。有氧反硝化比缺氧脱氮更稳定。高通量测序显示Crenarcheoota是主要的AOA(97.02-34.47%),与各种异养ale合作。实时PCR表示,AOA比AOB更丰富三个数量级。 AOA更耐高温和高盐水胁迫。氨氧化剂对温度变化具有明显的反应,并在不同温度下显示出不同的关系。

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