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Performance of Soluble microbial products in hybrid membrane bioreactor with suspended carriers

机译:悬浮载体混合膜生物反应器中可溶性微生物产物的性能

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Soluble microbial products (SMP) would accumulate in membrane bioreactor (MBR) and result in membrane fouling due to the membrane rejection. A new hybrid membrane bioreactor with porous suspended carriers (HMBR) explored by author was effective in controlling membrane fouling. The behaviors of SMP in HMBR were investigated in such aspects as concentration variation with operation time, molecular weight distributions (MWDs), hydrophobicity, specific cake resistance of supernatant. UV254 absorbance indicated that SMP in HMBR increased with operation time. The MWDs experiments revealed that the distribution of SMP showed a double peaks curve, the two peaks appeared in high-molecular weigh (>100 kDa) and low- molecular weigh (< 2kDa), and the latter was far higher than the former. However, the former had an increasing tendency with operation time. The hydrophobicity of SMP in HMBR and MBR gradually increased with time, and the former had a higher increasing rate. The dead-end filtration tests were used to indicate the SMP effect on membrane fouling and the specific cake resistance of supernatant in HMBR and MBR were determined. The results showed that the specific cake resistance of supernatant had a large increasing tendency.
机译:可溶性微生物产物(SMP)会积聚在膜生物反应器(MBR)中,并由于膜的排斥而导致膜结垢。作者探索了一种新型的带有多孔悬浮载体的杂化膜生物反应器(HMBR),可以有效地控制膜污染。从浓度随操作时间变化,分子量分布(MWD),疏水性,上清液的比饼抗性等方面研究了HMBR中SMP的行为。 UV254吸光度表明HMBR中的SMP随着操作时间的增加而增加。 MWDs实验表明,SMP的分布呈双峰曲线,两个峰出现在高分子分子量(> 100 kDa)和低分子量(<2kDa)中,后者远高于前者。但是,前者随着手术时间的增加而增加。 HMBR和MBR中SMP的疏水性随时间逐渐增加,前者的增加率较高。死端过滤测试用于表明SMP对膜结垢的影响,并确定了HMBR和MBR中上清液的比饼抗性。结果表明,上清液的比饼抗性具有较大的增加趋势。

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