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PCE 突然添加和生物反应器耦合对同时接受电子模式下操作的流化床生物反应器性能的影响。

Effect of sudden addition of PCE and bioreactor coupling to ZVI filters on performance of fluidized bed bioreactors operated in simultaneous electron acceptor modes.

机构信息

Environmental Biotechnology and Renewable Energies R&D Group, Department of Biotechnology and Bioengineering, CINVESTAV del I.P.N, P.O. Box 14-740, Ciudad de Mexico, Mexico.

Escuela Superior de Ingeniería Química y Extractivas del I.P.N, Ciudad de Mexico, Mexico.

出版信息

Environ Sci Pollut Res Int. 2017 Nov;24(33):25534-25549. doi: 10.1007/s11356-016-7275-z. Epub 2016 Aug 8.

Abstract

The present work evaluated the effects of (i) feeding a water contaminated with 80 mg/L PCE to bioreactors seeded with inoculum not acclimated to PCE, (ii) coupling ZVI side filters to bioreactors, and (iii) working in different biological regimes, i.e., simultaneous methanogenic aeration and simultaneous methanogenic-denitrifying regimes, on fluidized bed bioreactor performance. Simultaneous electron acceptors refer to the simultaneous presence of two compounds operating as final electron acceptors in the biological respiratory chain (e.g., use of either O or NO in combination with a methanogenic environment) in a bioreactor or environmental niche. Four lab-scale, mesophilic, fluidized bed bioreactors (bioreactors) were implemented. Two bioreactors were operated as simultaneous methanogenic-denitrifying (MD) units, whereas the other two were operated in partially aerated methanogenic (PAM) mode. In the first period, all bioreactors received a wastewater with 1 g chemical oxygen demand of methanol per liter (COD-methanol/L). In a second period, all the bioreactors received the wastewater plus 80 mg perchloroethylene (PCE)/L; at the start of period 2, one MD and one PAM were coupled to side sand-zero valent iron filters (ZVI). All bioreactors were inoculated with a microbial consortium not acclimated to PCE. In this work, the performance of the full period 1 and the first 60 days of period 2 is reported and discussed. The COD removal efficiency and the nitrate removal efficiency of the bioreactors essentially did not change between period 1 and period 2, i.e., upon PCE addition. On the contrary, specific methanogenic activity in PAM bioreactors (both with and without coupled ZVI filter) significantly decreased. This was consistent with a sharp fall of methane productivity in those bioreactors in period 2. During period 2, PCE removals in the range 86 to 97 % were generally observed; the highest removal corresponded to PAM bioreactors along with the highest dehalogenation efficiency (94 %). Principal component analysis as well as cluster analysis confirmed the trends mentioned above, i.e., the better performance of PAM over MD, and the unexpected no effect of the ZVI side filters on PCE removal and dehalogenation efficiencies. To the best of our knowledge, this is the first report on the combined treatment ZVI-biological of a water polluted with PCE, where the biological operation relied on simultaneous electron acceptors.

摘要

本工作评估了以下三种情况对流化床生物反应器性能的影响

(i) 用含有 80mg/L PCE 的水喂养未驯化 PCE 的接种物接种的生物反应器;(ii) 将 ZVI 侧过滤器与生物反应器耦合;(iii) 在不同的生物条件下工作,即同时进行产甲烷曝气和同时进行产甲烷-反硝化。同时电子受体是指在生物呼吸链中同时存在两种作为最终电子受体的化合物(例如,在生物反应器或环境小生境中同时使用 O 或 NO 与产甲烷环境相结合)。实施了四个实验室规模的中温、流化床生物反应器(生物反应器)。两个生物反应器作为同时产甲烷-反硝化(MD)单元运行,而另外两个在部分充气产甲烷(PAM)模式下运行。在第一个阶段,所有生物反应器都接收了每升 1 克甲醇化学需氧量(COD-甲醇/L)的废水。在第二个阶段,所有生物反应器都接收了含有 80mg/L 全氯乙烯(PCE)的废水;在第二阶段开始时,一个 MD 和一个 PAM 与侧砂零价铁过滤器(ZVI)耦合。所有生物反应器均接种了未驯化 PCE 的微生物混合物。在这项工作中,报告和讨论了整个第一阶段和第二阶段前 60 天的性能。COD 去除效率和生物反应器中的硝酸盐去除效率在第一阶段和第二阶段之间基本没有变化,即在添加 PCE 后。相反,PAM 生物反应器中的特定产甲烷活性(带有和不带有耦合 ZVI 过滤器的)显著降低。这与第二阶段这些生物反应器中甲烷生产率的急剧下降一致。在第二阶段期间,通常观察到 86%至 97%范围内的 PCE 去除率;最高去除率对应于 PAM 生物反应器,同时脱卤效率最高(94%)。主成分分析和聚类分析证实了上述趋势,即 PAM 比 MD 具有更好的性能,以及 ZVI 侧过滤器对 PCE 去除率和脱卤效率没有预期的影响。据我们所知,这是首次报道同时使用生物和零价铁处理受 PCE 污染的水的联合处理,其中生物操作依赖于同时电子受体。

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