气水比对污泥水中以鸟粪石形式回收氮磷的影响

豆艳霞, 王怡, 黄瑞雪, 杜红霞, 王社平, 南亚萍. 气水比对污泥水中以鸟粪石形式回收氮磷的影响[J]. 环境工程学报, 2016, 10(3): 1053-1058. doi: 10.12030/j.cjee.20160307
引用本文: 豆艳霞, 王怡, 黄瑞雪, 杜红霞, 王社平, 南亚萍. 气水比对污泥水中以鸟粪石形式回收氮磷的影响[J]. 环境工程学报, 2016, 10(3): 1053-1058. doi: 10.12030/j.cjee.20160307
Dou Yanxia, Wang Yi, Huang Ruixue, Du Hongxia, Wang Sheping, Nan Yaping. Effect of gas-water ratio on struvite recovery in removal of phosphorus and nitrogen from reject water[J]. Chinese Journal of Environmental Engineering, 2016, 10(3): 1053-1058. doi: 10.12030/j.cjee.20160307
Citation: Dou Yanxia, Wang Yi, Huang Ruixue, Du Hongxia, Wang Sheping, Nan Yaping. Effect of gas-water ratio on struvite recovery in removal of phosphorus and nitrogen from reject water[J]. Chinese Journal of Environmental Engineering, 2016, 10(3): 1053-1058. doi: 10.12030/j.cjee.20160307

气水比对污泥水中以鸟粪石形式回收氮磷的影响

  • 基金项目:

    国家自然科学基金资助项目(51308440)

    陕西省教育厅产业化项目(2013JC20)

    陕西省教育厅重点实验室项目(13JS046)

  • 中图分类号: X703

Effect of gas-water ratio on struvite recovery in removal of phosphorus and nitrogen from reject water

  • Fund Project:
  • 摘要: 污泥水富含氮磷,其回流经常造成污水处理厂出水水质的不稳定。以模拟污泥水为对象,采用套筒式流化床结晶装置,通过曝气吹脱CO2提高pH值并添加镁盐的方式以促进污泥水中鸟粪石的结晶,研究气水比对模拟污泥水中氮磷的去除效果以及对晶体产物的产量、分布、形态、粒径和成分的影响。结果表明,随着气水比的增加,污泥水的出水碱度降低、pH值升高、PO43--P和氨氮的去除率均增加,当气水比为15:1、30:1、60:1时,PO43--P的平均去除率分别为73%、82%和87%,氨氮的去除率均在17%~23%之间。同时,气水比影响晶体产物的产量、粒径和分布,但对晶体形态和组成的影响较小。同一气水比条件下,反应器底部和内壁晶体的形态存在明显差异,其中底部晶体大多纤细碎小,内壁晶体则均呈硕大的楔形,但X衍射谱图分析表明,以上二者的主成分均为鸟粪石。
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  • [1] Wild D., Kisliakova A., Siegrist H., et al. Prediction of recycle phosphorus loads from anaerobic digestion. Water Research, 1997, 13(9):2300-2308
    [2] 陈瑶, 颜学宏, 钮心洁, 等. 鸟粪石沉淀法从污水厂同时回收氮磷. 工程建设, 2008, 40(5):52-54 Chen Yao, Yan Xuehong, Niu Xinjie, et al. Struvite deposit method and recovery of N/P simultaneously in waster water treatment plant. Engineering Construction, 2008, 40(5):52-54(in Chinese)
    [3] Parsons S. A., Doyle J. D. Struvite scale formation and control. Water Science and Technology, 2004, 49(2):177-182
    [4] Doyle D. J., Parsons S. A. Struvite formation, control and recovery. Water Research, 2002, 36(16):3925-3940
    [5] Marti N., Ferrer J., Seco A., et al. Optimisation of sludge line management to enhance phosphorus recovery in WWTP. Water Research, 2008, 42(18):4609-4618
    [6] Martí N., Pastor L., Bouzas A., et al. Phosphorus recovery by struvite crystallization in WWTPs:Influence of the sludge treatment line operation. Water Research, 2010, 44(7):2371-2379
    [7] 郝晓地, 甘一萍. 排水研究新热点:从污水处理过程中回收磷. 给水排水, 2003, 29(1):20-24 Hao Xiaodi, Gan Yiping. Phosphorus recovery in wastewater treatment. Water & Wastewater Engineering, 2003, 29(1):20-24(in Chinese)
    [8] Cabeza Perez R., Steingrobe B., Romer W., et al. Plant availability of P fertilizers recycled from sewage sludge and meat and bone meal in field and pot experiments//Paper presented at the IWE International Conference on Nutrient Recovery from Wastewater Streams. Vancouver, Canada, 2009
    [9] Shu L., Schneider P., Jegatheesan V., et al. An economic evaluation of phosphorus recovery as struvite from digester supernatant. Bioresource Technology, 2006, 97(17):2211-2216
    [10] Ueno Y., Fujii M. Three years experience of operating and selling recovered struvite from full-scale plant. Environmental Technology, 2001, 22(11):1373-1381
    [11] Nelson N. O., Mikkelsen R. L., Hesterberg D. L., et al. Struvite precipitation in anaerobic swine lagoon liquid:Effect of pH and Mg:P ratio and determination of rate constant. Bioresource Technology, 2003, 89(3):229-236
    [12] Zeng Le, Li Xiaomei. Nutrient removal from anaerobically digested cattle manure by struvite precipitation. Journal of Environmental Engineering and Science, 2006, 5(4):285-294
    [13] Song Yonghui, Qiu Guanglei, Yuan Peng, et al. Nutrients removal and recovery from anaerobically digested swine wastewater by struvite crystallization without chemical additions. Journal of Hazardous Materials, 2011, 190(1-3):140-149
    [14] 汪慧贞, 王绍贵. 以磷酸钙盐形式从污水厂回收磷的研究. 中国给水排水, 2006, 22(9):93-96 Wang Huizhen, Wang Shaogui. Study on phosphorus recovery by calcium phosphate precipitation from wastewater treatment plant. China Water & Wastewater, 2006, 22(9):93-96(in Chinese)
    [15] Suzuki K., Tanaka Y., Kuroda K., et al. Removal and recovery of phosphorous from swine wastewater by demonstration crystallization reactor and struvite accumulation device. Bioresource Technology, 2007, 98(8):1573-1578
    [16] 汪惠阳, 李超群, 林金清. CO2脱除法提高废水pH值的研究现状. 化学工程与装备, 2010, 8(1):135-139 Wang Huiyang, Li Chaoqun, Lin Jinqing. Research status of improving the pH value of the wastewater by stripping CO2. Chemical Engineering & Equipment, 2010, 8(1):135-139(in Chinese)
    [17] 闫越. MAP沉淀回收装置的运行条件优化研究. 郑州:郑州大学硕士学位论文, 2011 Yan Yue. Operating conditions optimization of MAP precipitation recovery device. Zhengzhou:Master Dissertation of Zhengzhou University, 2011(in Chinese)
    [18] 李金页, 郑平. 鸟粪石沉淀法在废水除磷脱氮中的应用. 中国沼气, 2004, 22(1):7-10 Li Jinye, Zheng Ping. Applications of struvite precipitation in removal of phosphorus and nitrogen from wastewater. China Biogas, 2004, 22(1):7-10(in Chinese)
    [19] Stratful I., Scrimshaw M. D., Lester J. N. Conditions influencing the precipitation of magnesium ammonium phosphate. Water Research, 2001, 35(17):4191-4199
    [20] 李亮, 王德汉, 邹璇, 等. 曝气在沉淀法回收沼气发酵液氮磷中的作用. 农业工程学报, 2010, 26(1):313-318 Li Liang, Wang Dehan, Zou Xuan, et al. Effect of aeration on crystallization technology for nitrogen and phosphorus recovery from biogas fermentative liquid. Transactions of the Chinese Society of Agricultural Engineering, 2010, 26(1):313-318(in Chinese)
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出版历程
  • 收稿日期:  2015-01-04
  • 刊出日期:  2016-03-18
豆艳霞, 王怡, 黄瑞雪, 杜红霞, 王社平, 南亚萍. 气水比对污泥水中以鸟粪石形式回收氮磷的影响[J]. 环境工程学报, 2016, 10(3): 1053-1058. doi: 10.12030/j.cjee.20160307
引用本文: 豆艳霞, 王怡, 黄瑞雪, 杜红霞, 王社平, 南亚萍. 气水比对污泥水中以鸟粪石形式回收氮磷的影响[J]. 环境工程学报, 2016, 10(3): 1053-1058. doi: 10.12030/j.cjee.20160307
Dou Yanxia, Wang Yi, Huang Ruixue, Du Hongxia, Wang Sheping, Nan Yaping. Effect of gas-water ratio on struvite recovery in removal of phosphorus and nitrogen from reject water[J]. Chinese Journal of Environmental Engineering, 2016, 10(3): 1053-1058. doi: 10.12030/j.cjee.20160307
Citation: Dou Yanxia, Wang Yi, Huang Ruixue, Du Hongxia, Wang Sheping, Nan Yaping. Effect of gas-water ratio on struvite recovery in removal of phosphorus and nitrogen from reject water[J]. Chinese Journal of Environmental Engineering, 2016, 10(3): 1053-1058. doi: 10.12030/j.cjee.20160307

气水比对污泥水中以鸟粪石形式回收氮磷的影响

  • 1. 西安建筑科技大学环境与市政工程学院, 西安 710055
  • 2. 西安市政设计研究院有限公司, 西安 710068
基金项目:

国家自然科学基金资助项目(51308440)

陕西省教育厅产业化项目(2013JC20)

陕西省教育厅重点实验室项目(13JS046)

摘要: 污泥水富含氮磷,其回流经常造成污水处理厂出水水质的不稳定。以模拟污泥水为对象,采用套筒式流化床结晶装置,通过曝气吹脱CO2提高pH值并添加镁盐的方式以促进污泥水中鸟粪石的结晶,研究气水比对模拟污泥水中氮磷的去除效果以及对晶体产物的产量、分布、形态、粒径和成分的影响。结果表明,随着气水比的增加,污泥水的出水碱度降低、pH值升高、PO43--P和氨氮的去除率均增加,当气水比为15:1、30:1、60:1时,PO43--P的平均去除率分别为73%、82%和87%,氨氮的去除率均在17%~23%之间。同时,气水比影响晶体产物的产量、粒径和分布,但对晶体形态和组成的影响较小。同一气水比条件下,反应器底部和内壁晶体的形态存在明显差异,其中底部晶体大多纤细碎小,内壁晶体则均呈硕大的楔形,但X衍射谱图分析表明,以上二者的主成分均为鸟粪石。

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