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Assessment of Membrane Bioreactor in Treating Spent Sulfidic Caustic Wastewater: Effects of Organic Biomass Concentration and Solid Retention Time

机译:膜生物反应器处理废硫化碱废水的评估:有机生物质浓度和固体保留时间的影响

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This paper presents a study on the performance of an Aerobic Submerged u-shaped membrane bioreactor (ASMBR) in treating sulfidic spent caustic (SSC) in terms of mixed liquor suspended solid (MLSS) concentration and solid retention time (SRT). SSC wastewater is categorized as high strength wastewater and consists of high inorganic and organic matter. U-shape membrane bioreactors have a higher tendency to foul compared to other types of MBR. MLSS concentration and SRT are the major parameters when operating membrane bioreactor. In this study, COD removal recorded reduction of more than 95% for average MLSS concentration runs and 90% for SRTs runs. Meanwhile, sulfide was removed 99%, and formed up to 79% of sulfate. The biofouling for MLSS concentration and SRTs were observed through TMP rate change and TMP average performance, TMP trend and SMP and EPS trends. Biocake layer and biolayer deposited on membrane surface was found influenced by biomass, the inert particulate biomass products accumulating in the reactor. Chemical Engineering Research Bulletin 19(2017) 102-110.
机译:本文就混合液悬浮固体(MLSS)浓度和固体保留时间(SRT)提出了好氧浸没式U形膜生物反应器(ASMBR)处理硫化废碱(SSC)的性能的研究。 SSC废水被归类为高强度废水,由高无机和有机物质组成。与其他类型的MBR相比,U型膜生物反应器具有更高的结垢趋势。操作膜生物反应器时,MLSS浓度和SRT是主要参数。在这项研究中,平均MLSS浓度运行的COD去除量减少了95%以上,而SRT运行的减少了90%。同时,去除了99%的硫化物,并形成了高达79%的硫酸盐。通过TMP速率变化和TMP平均性能,TMP趋势以及SMP和EPS趋势观察到了MLSS浓度和SRT的生物污染。发现沉积在膜表面上的生物饼层和生物层受到生物质的影响,惰性颗粒生物质产物积聚在反应器中。化学工程研究通报19(2017)102-110。

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