微气泡臭氧氧化处理酸性大红3R废水的影响因素

为了研究微气泡臭氧氧化技术处理废水的影响因素,采用微气泡臭氧氧化技术处理酸性大红3R废水,考察臭氧投加量、酸性大红3R废水初始浓度和投加活性炭对微气泡臭氧氧化过程中脱色率、TOC去除率、pH值以及臭氧利用率的影响。结果表明,提高臭氧投加量或降低酸性大红3R废水的初始浓度,酸性大红3R废水的脱色速率和TOC去除速率均有所上升,但臭氧利用率下降。煤质活性炭对微气泡臭氧氧化具有较强的催化活性,能够显著提高酸性大红3R废水的脱色速率和TOC去除速率。臭氧投加量为48.3 mg/min、酸性大红3R废水的初始质量浓度为100mg/L时,处理效果较好。此条件下,处理30min时脱色率达到100%,处理12...

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Published in河北科技大学学报 Vol. 38; no. 4; pp. 403 - 410
Main Author 押玉荣 陈晓轩 杜亚威 王晓磊 张静 吴江渤 刘春
Format Journal Article
LanguageChinese
Published 河北省污染防治生物技术重点实验室,河北石家庄 050018 2017
嘉诚环保工程有限公司,河北石家庄,050031%河北科技大学环境科学与工程学院,河北石家庄,050018%河北科技大学环境科学与工程学院,河北石家庄 050018
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ISSN1008-1542
DOI10.7535/hbkd.2017yx04013

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Summary:为了研究微气泡臭氧氧化技术处理废水的影响因素,采用微气泡臭氧氧化技术处理酸性大红3R废水,考察臭氧投加量、酸性大红3R废水初始浓度和投加活性炭对微气泡臭氧氧化过程中脱色率、TOC去除率、pH值以及臭氧利用率的影响。结果表明,提高臭氧投加量或降低酸性大红3R废水的初始浓度,酸性大红3R废水的脱色速率和TOC去除速率均有所上升,但臭氧利用率下降。煤质活性炭对微气泡臭氧氧化具有较强的催化活性,能够显著提高酸性大红3R废水的脱色速率和TOC去除速率。臭氧投加量为48.3 mg/min、酸性大红3R废水的初始质量浓度为100mg/L时,处理效果较好。此条件下,处理30min时脱色率达到100%,处理120min时TOC去除率达到78.0%,TOC去除表观反应速率常数为0.015min^-1,臭氧利用率始终高于99%。而投加5g/L煤质活性炭后,处理15 min后脱色率达到100%,处理120 min时TOC去除率可达到91.2%,TOC去除表观反应速率常数提高至0.037min^-1。处理过程中出现中间产物小分子有机酸的积累并继续氧化降解,使得废水的pH值呈现先下降后升高的趋势。可见,对微气泡臭氧氧化影响因素进行优化,可提高污染物去除速率及臭氧利用率,显著改善处理性能。
Bibliography:YA Yurong1,CHEN Xiaoxuan2 ,DU Yawei2 ,WANG Xiaolei1 ,ZHANG Jing2 ,WU Jiangbo1 ,LIU Chun2,3(1. Jiacheng Environmental Protection Engineering Company Limited, Shijiazhuang, Hebei 050031? China; 2. School of Envi-ronmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang, Hebei 050018, China; 3. Pol-lution Prevention Biotechnology Laboratory of Hebei Province, Shijiazhuang, Hebei 050018, China)
water pollution control engineering; ozonation; microbubble; acid red 3R wastewater; influencing factor
The microbubble ozonation was used to treat acid red 3R wastewater in order to investigate the influencing factors on its performance.The effects of ozone dose,initial acid red 3Rconcentration and activated carbon on the performance of microbubble ozonation treatment of acid red 3R wastewater are investigated.The decolorization rate,TOC removal rate,pH vari-ation and ozone utilization efficiency in the microbubble ozonation treatment are compared under different treatment conditions.The re
ISSN:1008-1542
DOI:10.7535/hbkd.2017yx04013