Research and Development Institute in Shenzhen & School of Natural and Applied Sciences, Northwestern Polytechnical University, China; State Key Laboratory of Geohazard Prevention and Geoenvironment Protection, Chengdu University of Technology, Chengdu, China.
Research and Development Institute in Shenzhen & School of Natural and Applied Sciences, Northwestern Polytechnical University, China.
Chemosphere. 2019 Jul;226:825-833. doi: 10.1016/j.chemosphere.2019.03.139. Epub 2019 Mar 25.
A sulfur cycle-driven bioprocess was developed for co-treatment wet flue gas desulfurization wastes with municipal sewage, as a result of sludge minimization. In this process, organics removal (one of the main objectives in sewage treatment) is closely associated with biological sulfate/sulfite reduction (BSR). In the previous studies, both the pros and corns of sulfite (SO) in microbial activities were demonstrated. In this study, we are motivated to unveil the detailed role of SO in organic compound removal in the sulfur conversion-associated process. In addition, the effect of internal recirculation (IR) of UASB reactor was also explored. The results demonstrated that sulfite does inhibit the organic removal rate via depressing the acetate oxidation to inorganic carbon. And the inhibition is reversible when influent sulfite concentration decreased from 400 to 132 mg S/L, corresponding to the relative sulfate/sulfite-reducing genera increased from 18.66 to 38.62%. And the fermenting-related bacteria significantly decreased when an internal recirculation was employed for the UASB reactor. The results of this study could shed light on the understanding of the roles of sulfite and IR in organic compound removal performance and microbial community structures in BSR, which could be in turn beneficial to optimize the organic removal capacity of the sulfur bionconversion-concerning sewage treatment technology.
开发了一种基于硫循环的生物工艺,用于协同处理湿式烟气脱硫废物和城市污水,以实现污泥最小化。在这个过程中,有机物去除(污水处理的主要目标之一)与生物硫酸盐/亚硫酸盐还原(BSR)密切相关。在之前的研究中,已经证明了亚硫酸盐(SO)在微生物活动中的优缺点。在这项研究中,我们旨在揭示 SO 在与硫转化相关的过程中去除有机化合物中的详细作用。此外,还探索了 UASB 反应器内部循环(IR)的效果。结果表明,亚硫酸盐通过抑制乙酸盐氧化为无机碳来抑制有机物去除率。当进水亚硫酸盐浓度从 400 降至 132mgS/L 时,抑制作用是可逆的,相应的相对硫酸盐/亚硫酸盐还原菌从 18.66%增加到 38.62%。而当采用内部循环时,发酵相关细菌显著减少。本研究结果可以帮助我们理解亚硫酸盐和 IR 在 BSR 中去除有机化合物性能和微生物群落结构中的作用,这反过来又有助于优化与硫生物转化相关的污水处理技术的有机物去除能力。