超声波协同H2O2处理养殖场污水

杨铁金, 相玉秀, 相玉琳. 超声波协同H2O2处理养殖场污水[J]. 环境工程学报, 2014, 8(6): 2381-2385.
引用本文: 杨铁金, 相玉秀, 相玉琳. 超声波协同H2O2处理养殖场污水[J]. 环境工程学报, 2014, 8(6): 2381-2385.
Yang Tiejin, Xiang Yuxiu, Xiang Yulin. Synergetic treatment of culture sewage by ultrasonic and H2O2[J]. Chinese Journal of Environmental Engineering, 2014, 8(6): 2381-2385.
Citation: Yang Tiejin, Xiang Yuxiu, Xiang Yulin. Synergetic treatment of culture sewage by ultrasonic and H2O2[J]. Chinese Journal of Environmental Engineering, 2014, 8(6): 2381-2385.

超声波协同H2O2处理养殖场污水

  • 基金项目:

    陕西省教育厅自然科学专项(2013JK0880)

    榆林市科技局重大科技专项(2011kjzx08)

    陕西省科技厅基础研究计划重点项目(2012JZ2003)

    榆林学院高层次人才科研基金资助项目(12GK04)

  • 中图分类号: X703

Synergetic treatment of culture sewage by ultrasonic and H2O2

  • Fund Project:
  • 摘要: 为了有效地改善养猪场污水的质量,以H2O2为药剂,对污水进行了水浴加热和超声波辅助的对比实验,考察了超声波发生器输出端电流强度、处理时间、H2O2用量对污水的COD、氨气及颜色的影响,并进行正交实验优化。结果表明,超声波协同H2O2处理养殖污水是一种切实可行的方法,超声波协同H2O2处理污水的最佳工艺条件:电流0.7 A、处理时间2 min、H2O2用量3%,在此条件下降低COD量可达95%以上,氨氮的含量可降至14~15 mg/L,氨臭味大大得到了改善,并将原污水由黑色变为浅黄色。
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  • [1] Min Booki, Kim Jungrae, Eun Sange Oh, et al. Electricity generation from swine wastewater using microbial fuel cells. Water Research, 2005, 39(6): 4961-4968
    [2] 刘春阳,刘柳.超声波技术在废水处理中的应用研究.污染防治技术, 2009,22(6):62-66 Liu C.Y., Liu L. The application of ultrasonic technique in wastewater treatment. Pollution Prevention and Control Technology, 2009, 22 (6): 62-66(in Chinese)
    [3] 张显龙,胡娜.屠宰废水处理工艺设计与运行研究.辽宁化工, 2012,32(4):83-84 Zhang X.L., Hu N. Slaughtering wastewater treatment process design and operation research. Journal of Liaoning Chemical Industry, 2012, 32(4):83-84(in Chinese)
    [4] 韩建勋,郭梦婷,张紫薇,等.猪粪中土霉素环境风险及好氧降解.浙江工商大学学报, 2012,26(5):19-23 Han J.X., Guo M.T., Zhang Z.W., et al. Pigoxy tetracycline in environmental risk and aerobic degradation. Journal of Zhejiang Gongshang University, 2012, 26(5):19-23(in Chinese)
    [5] 苑宝玲,王红杰.水处理新技术原理与应用.北京:化学工业出版社, 2006
    [6] 邵志芳,朱震中,陈莹.聚乙烯醇-亚铁氰化钾修饰电极测定油/水型乳液中氢过氧化物含量.分析科学学报, 2012,28(2):249-252 Shao Z.F., Zhu Z.Z., Chen Y. Polyvinyl alcohol-potassium hydroferrocyanic modified electrode determination of hydrogen peroxide content in oil/water emulsion. Journal of Analytical Science, 2012, 28(2): 249-252(in Chinese)
    [7] 陈国云,夏涛.关于对污水综合排放标准修订的建议. 污染防治技术.2012,25(1):55-56 Chen G.Y., Xia T. About the integrated wastewater discharge standard revision suggestions. Pollution Prevention and Control Technology, 2012, 25(1):55-56(in Chinese)
    [8] 田宗祥.减少规模化养猪场粪污对环境 的影响及调控措施.国外畜牧学(猪与禽), 2009,29(3):79-82 Tian Z.X. Reduce the influence of scale pig farm waste on the environment and control measures. Journal of Animal Science Abroad (Pigs and Poultry), 2009, 29(3): 79-82(in Chinese)
    [9] 杨敏,李军,马骋,等.屠宰废水处理工艺的优化与设计.沈阳农业大学学报, 2011,42(3):361-364 Yang M., Li J., Ma C., et al. Slaughtering wastewater treatment process optimization anddesign. Journal of Shenyang Agricultural University, 2011, 42(3):361-364(in Chinese)
    [10] 张莹,张玉先.压力曝气生物滤池处理生活污水的实验研究.中国给水排水, 2008,24(7):16-20 Zhang Y., Zhang Y.X. Pilot-scale study on pressure biological aerated filter for domestic sewage treatment. China Water & Wastewater, 2008, 24(7): 16-20(in Chinese)
    [11] 姜聚惠,陈华军,娄向东,等.UV/草酸铁/H2O2法处理染料废水. 水处理技术, 2006,32(5):42-44 Jiang J.H., Chen H., Lou X.D., et al. UV/oxalate iron/H2O2 method treatment of dye wastewater. Technology of Water Treatment, 2006, 32(5):42-44(in Chinese)
    [12] 饶少敏.分光光度法测定废水中的 COD.分析测试技术与仪器, 2005, 11(2):111-113 Rao S.M. Spectrophotometric method for determination of COD in wastewater. Analysis and Testing Technology and Instruments, 2005, 11 (2): 111-113(in Chinese)
    [13] 郑怀礼,张占梅.双频超声辐射合作研究的过氧化氢降解偶氮染料废水.环境工程学报, 2010,4(11):2401-2406 Zheng H.L., Zhang Z. M. Dual-frequency ultrasound radiation collaborative research of H2O2 degradation of azo dye wastewater. Chinese Journal of Environmental Engineering, 2010, 4(11): 2401-2406(in Chinese)
    [14] 范拴喜,江元汝.超声波-H2O2协同作用处理孔雀绿废水.化工环保, 2007,27(5):404-408 Fan S.X., Jiang Y.R. Ultrasonic-H2O2 synergy malachite green wastewater treatment. Environmental Protection of Chemical Industry, 2007,27(5):404-408(in Chinese)
    [15] 朱昌平,黄波,倪才华,等.功率超声的声学参数对废水处理效果的影响.水资源保护, 2008,24(3):57-61 Zhu C.P., Huang B., Ni C.H., et al. Power of ultrasonic acoustic parameters on the effect of wastewater treatment. Water Resources Protection, 2008, 24(3): 57-61 (in Chinese)
    [16] Kruger O., Schulze T. L., Peters D. Sonochemical treatment of natural ground water at different high frequencies: Preliminary results. Ultrasonics Stereochemistry, 1999, 6(2): 123-128
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出版历程
  • 收稿日期:  2013-07-10
  • 刊出日期:  2014-05-29
杨铁金, 相玉秀, 相玉琳. 超声波协同H2O2处理养殖场污水[J]. 环境工程学报, 2014, 8(6): 2381-2385.
引用本文: 杨铁金, 相玉秀, 相玉琳. 超声波协同H2O2处理养殖场污水[J]. 环境工程学报, 2014, 8(6): 2381-2385.
Yang Tiejin, Xiang Yuxiu, Xiang Yulin. Synergetic treatment of culture sewage by ultrasonic and H2O2[J]. Chinese Journal of Environmental Engineering, 2014, 8(6): 2381-2385.
Citation: Yang Tiejin, Xiang Yuxiu, Xiang Yulin. Synergetic treatment of culture sewage by ultrasonic and H2O2[J]. Chinese Journal of Environmental Engineering, 2014, 8(6): 2381-2385.

超声波协同H2O2处理养殖场污水

  • 1. 齐齐哈尔大学化学与化学工程学院, 齐齐哈尔 161006
  • 2. 榆林学院陕西省煤炭清洁转化重点实验室, 榆林 719000
基金项目:

陕西省教育厅自然科学专项(2013JK0880)

榆林市科技局重大科技专项(2011kjzx08)

陕西省科技厅基础研究计划重点项目(2012JZ2003)

榆林学院高层次人才科研基金资助项目(12GK04)

摘要: 为了有效地改善养猪场污水的质量,以H2O2为药剂,对污水进行了水浴加热和超声波辅助的对比实验,考察了超声波发生器输出端电流强度、处理时间、H2O2用量对污水的COD、氨气及颜色的影响,并进行正交实验优化。结果表明,超声波协同H2O2处理养殖污水是一种切实可行的方法,超声波协同H2O2处理污水的最佳工艺条件:电流0.7 A、处理时间2 min、H2O2用量3%,在此条件下降低COD量可达95%以上,氨氮的含量可降至14~15 mg/L,氨臭味大大得到了改善,并将原污水由黑色变为浅黄色。

English Abstract

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