首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >The Evaluation of Simultaneous COD and Sulfate Removal at High COD/SO_4~(2−) Ratio and Haloalkaline Condition
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The Evaluation of Simultaneous COD and Sulfate Removal at High COD/SO_4~(2−) Ratio and Haloalkaline Condition

机译:高COD / SO_4〜(2-)比下同时鳕鱼和硫酸盐去除的评价和卤代甲碱条件

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摘要

The effects of different electron donors on sulfate reduction at highCOD/SO_4~(2−) and haloalkaline conditions were investigated. For this purpose, the anaerobic submerged membrane reactor, fed with acetate and ethanol as an electron donor, was operated at a salinity of 10 gNaCl/L and a high pH(about 9.5) for 210 days. The bioreactorwas inoculated with amixed haloalkaliphilic culture and was enriched with saline soda from Lake Van, Turkey. The bioreactor’s performance was mainly evaluated with the removal of chemical oxygen demand (COD) and sulfate and changes in microbial community. A significant increase for both COD and sulfate removal was simultaneously achieved in the ethanol-fed bioreactor. The highest removal efficiency of COD and sulfate was about 70% and 80%, respectively, once the ratio of COD/SO_4~(2−) was 6. The effect of hydraulic retention time on treatment performance of the bioreactor was inconsiderable as a result of the low flux during the whole operation time. There was no biogas production throughout the experiment due to the haloalkaline condition in reactor medium. From DGGE analysis, it was postulated that ethanol usage can cause bacterial abundance and diversity in bioreactor medium with no detection of sulfate-reducing bacteria.
机译:研究了不同电子供体对高硅/ SO_4〜(2-)和卤砜条件下硫酸盐降低的影响。为此目的,用乙酸盐和乙醇作为电子给体供给的厌氧浸没膜反应器在10gnacl / L的盐度和高pH(约9.5)的盐水中210天。生物反应器接种着敏感的卤代汗珠培养,并从火鸡湖富含盐水苏打水。生物反应器的性能主要通过去除化学需氧量(COD)和硫酸盐和微生物群落的变化来评估。在乙醇喂养的生物反应器中同时达到鳕鱼和硫酸盐去除的显着增加。鳕鱼和硫酸酯的最高去除效率分别为约70%和80%,一旦COD / SO_4〜(2-)的比例为6。液压保留时间对生物反应器的治疗性能的影响是不可介绍的在整个操作时间内的低通量。由于反应器介质中的卤代甲烷烃状况,在整个实验中没有沼气产生。从DGGE分析中,假设乙醇使用可能导致生物反应器培养基中的细菌丰度和多样性,没有检测硫酸盐还原细菌。

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