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毒性物质苯酚对除磷系统污泥活性及性能的影响

EFFECT OF PHENOL ON ACTIVITY AND PERFORMANCE OF ACTIVE SLUDGE IN PHOSPHORUS REMOVAL SYSTEMS

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【作者】 王雅平杨宁波马桂香王素娥

【Author】 WANG Ya-ping;YANG Ning-bo;MA Gui-xiang;WANG Su-e;Ordos Vocational College;Xingan Meng Bo Yuan Chemical Co.,Ltd;

【机构】 鄂尔多斯职业学院兴安盟博源化学有限公司

【摘要】 为了探究毒性物质苯酚对生物除磷系统污泥性质及性能的影响,建立序批式厌氧/好氧(A/O)序批式反应器,通过控制进水苯酚含量分析了苯酚对生物除磷系统活性污泥及除磷性能的影响。结果表明:低浓度苯酚对活性污泥及生物除磷性能影响不明显,而高浓度苯酚(50 mg/L)条件下COD去除率为77. 8%~79. 2%,出水ρ(PO43--P)为1. 27 mg/L,PO43--P去除率仅为79. 3%。此外,高浓度苯酚能够减少污泥中总悬浮固体(MLSS)和提高污泥体积指数(SVI),从而导致污泥膨胀。苯酚存在可抑制聚磷菌厌氧释磷和好氧吸磷,当苯酚含量为50 mg/L时,厌氧最大释磷量仅为41. 9 mg/L,远低于空白组。此外,苯酚在活性污泥系统中能被部分降解,并且好氧降解高于厌氧降解。苯酚存在能够抑制生物除磷相关关键酶的活性。

【Abstract】 In order to explore the effect of phenol,a toxic substance,on the properties and performance of the sludge in the biological phosphorus removal system,sequencing batch anaerobic/aerobic( A/O) reactors were established to determine the effect of phenol on activated sludge and phosphorus removal by controlling the influent phenol content. The results showed that low concentration of phenol had no significant effect on the performance of activated sludge and biological phosphorus removal,while high concentration of phenol( 50 mg/L) resulted in COD removal efficiency of 77. 8% ~ 79. 2%. The concentration of PO43--P in effluent was 1. 27 mg/L,and the removal efficiency of PO43--P was only 79. 3%. In addition,high concentration of phenol could reduce total suspended solids( MLSS) and increase sludge volume index( SVI),resulting in sludge bulking. The presence of phenol inhibited anaerobic phosphorus release and aerobic phosphorus uptake of phosphorus accumulating organisms. When the phenol content was 50 mg/L,the maximum amount of anaerobic phosphorus release was only 41. 9 mg/L,much lower than that in the blank group. In addition,phenol could be partially degraded in the activated sludge system,and aerobic degradation was higher than anaerobic degradation. Phenol could inhibit the activity of key enzymes related to biological phosphorus removal.

【基金】 内蒙古自然科学基金(2017011019);鄂尔多斯市职业教育研究所(EZJY1709)
  • 【文献出处】 环境工程 ,Environmental Engineering , 编辑部邮箱 ,2019年03期
  • 【分类号】X703
  • 【被引频次】2
  • 【下载频次】116
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