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首页> 外文期刊>Environmental progress >Influence of Nitrogen Supply and Substrate Interactions on the Removal of Paint VOC Mixtures in a Hybrid Bioreactor
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Influence of Nitrogen Supply and Substrate Interactions on the Removal of Paint VOC Mixtures in a Hybrid Bioreactor

机译:供氮和底物相互作用对混合生物反应器中涂料VOC混合物去除的影响

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The study presented here was designed to investigate VOC degradation patterns as a function of nitrogen availability in a hybrid vapor-phase bioreactor column treating a surrogate paint VOC mixture. The mixture consisted of methyl propyl ketone, ethyl 3-ethoxy propionate, n-butyl acetate, toluene and p-xylene. In order to quantify nitrogen requirements, a series of experiments was conducted under various nitrogen-limited and nitrogen-rich conditions. Overall, increasing nitrogen availability improved the total VOC removal efficiencies from approximately 70% to 99%. At the lowest available nitrogen condition, most of the ethyl 3-ethoxy propionate and n-butyl acetate, as well as approximately 75% of the methyl propyl ketone were removed in the bioreactor, but toluene and p-xylene were not biodegraded. Increasing the nitrogen availability improved the biodegra-dation of methyl propyl ketone. Substantial degradation of toluene and p-xylene occurred in this study only after the molar ratio of the aromatic compounds to the other constituents in the waste gas stream increased above 2.0. Elimination capacity tests performed with the VOC mixture and each individual VOC indicated that the presence of other VOCs inhibited the biodegradation of toluene and p-xylene. These findings imply that substrate inhibitions limit the removal of aromatic hydrocarbons, particularly when the available nitrogen in the packing media is low.
机译:本文介绍的研究旨在研究混合气相生物反应器塔中处理替代涂料VOC混合物时VOC降解模式与氮有效性的关系。该混合物由甲基丙基酮,3-乙氧基丙酸乙酯,乙酸正丁酯,甲苯和对二甲苯组成。为了量化氮需求量,在各种氮受限和富氮条件下进行了一系列实验。总体而言,增加的氮利用率将总VOC去除效率从大约70%提高到了99%。在最低的可用氮条件下,大部分3-乙氧基丙酸乙酯和乙酸正丁酯,以及约75%的甲基丙基酮在生物反应器中被除去,但是甲苯和对二甲苯并未被生物降解。氮利用率的提高改善了甲基丙基酮的生物降解性。只有在废气流中芳族化合物与其他成分的摩尔比增加到2.0以上后,甲苯和对二甲苯才发生大量降解。对VOC混合物和每个单独的VOC进行的消除容量测试表明,其他VOC的存在抑制了甲苯和对二甲苯的生物降解。这些发现暗示底物抑制作用限制了芳烃的去除,特别是当填充介质中的可用氮较低时。

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