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结合态磷化氢在厌氧微生物产酸过程中的释放行为
引用本文:朱益新,丁丽丽,任洪强,王晓蓉.结合态磷化氢在厌氧微生物产酸过程中的释放行为[J].环境科学,2005,26(4):139-142.
作者姓名:朱益新  丁丽丽  任洪强  王晓蓉
作者单位:南京大学环境学院污染控制与资源化研究国家重点实验室 南京210093;南京大学环境学院污染控制与资源化研究国家重点实验室 南京210093;南京大学环境学院污染控制与资源化研究国家重点实验室 南京210093;南京大学环境学院污染控制与资源化研究国家重点实验室 南京210093
基金项目:国家自然科学基金资助项目(50278041);江苏省社会发展重点招标项目(BS2002049)
摘    要:通过动态实验分别研究了在产甲烷和酸化阶段厌氧污泥中结合态磷化氢的变化,并采用静态厌氧实验进一步阐明在酸化阶段有机酸的积累对磷化氢的影响及消失速率.结果表明,产甲烷阶段,厌氧颗粒污泥磷化氢浓度随高度升高呈下降趋势;酸化阶段,当pH达到4~5时会导致厌氧反应器颗粒污泥中结合态磷化氢消失.静态模拟实验研究表明,随着酸化程度的增加,厌氧污泥中结合态磷化氢消失速率加快.厌氧污泥在葡萄糖浓度2000mg·L-1培养2d后,结合态磷化氢浓度从最初的1.76ng·kg-1降低到0.09ng·kg-1,磷化氢消失速率最高达到0.84ng·(kg·d)-1;而葡萄糖浓度400mg·L-1培养2d后,结合态磷化氢消失速率仅为0.27ng·(kg·d)-1;随着进一步培养,当磷化氢浓度降低到一定程度后,消失速率也相应下降.

关 键 词:厌氧  结合态磷化氢  酸化  产酸菌  颗粒污泥
文章编号:0250-3301(2005)04-0139-04
收稿时间:7/9/2004 12:00:00 AM
修稿时间:2004/11/26 0:00:00

Fate of Matrix-Bound Phosphine During Acidification with Anaerobic Bacteria
ZHU Yi-xin,DING Li-li,REN Hong-qiang and WANG Xiao-rong.Fate of Matrix-Bound Phosphine During Acidification with Anaerobic Bacteria[J].Chinese Journal of Environmental Science,2005,26(4):139-142.
Authors:ZHU Yi-xin  DING Li-li  REN Hong-qiang and WANG Xiao-rong
Institution:State Key Laboratory of Pollution Control and Resource Reuse, School of Environment, Nanjing University, Nanjing 210093, China. ekxr@nju.edu.cn
Abstract:Matrix-bound phosphine of anaerobic granular sludge was studied during methanogenic and acidogenic stage of anaerobic reactors. Results showed that at methanogenic stage, the concentration of matrix-bound phosphine of anaerobic sludge decreased as the height of reactor increased. But during acidogenic stage, matrix-bound phosphine disappeared when pH of the solution declined to 4-5. Further anaerobic static experiments showed that increased acidification and lower pH value promoted the decrease of matrix-bound phosphine. After cultivation with 2 000 mg x L(-1) glucose synthetic wastewater for two days, the matrix-bound phosphine fell from 1.76 ng x kg(-1) to 0.09 ng x kg(-1); At the same time, the highest disappearing rate of phosphine was reached 0.84 ng x (kg x d)(-1). While the glucose synthetic wastewater was 400 mg x L(-1), the disappearing rate of phosphine was only 0.27 ng x (kg x d)(-1). With further cultivation under acidogenic stage, the phosphine decreasing rate slowed down.
Keywords:anaerobic  matrix-bound phosphine  acidification  acidogenic bacteria  granular
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