一种新型复合除砷材料的制备及其性能

徐伟, 李长海, 贾冬梅, 刘学文. 一种新型复合除砷材料的制备及其性能[J]. 环境工程学报, 2013, 7(5): 1611-1615.
引用本文: 徐伟, 李长海, 贾冬梅, 刘学文. 一种新型复合除砷材料的制备及其性能[J]. 环境工程学报, 2013, 7(5): 1611-1615.
Xu Wei, Li Changhai, Jia Dongmei, Liu Xuewen. Preparation and performance of a new composite material for removal of arsenic[J]. Chinese Journal of Environmental Engineering, 2013, 7(5): 1611-1615.
Citation: Xu Wei, Li Changhai, Jia Dongmei, Liu Xuewen. Preparation and performance of a new composite material for removal of arsenic[J]. Chinese Journal of Environmental Engineering, 2013, 7(5): 1611-1615.

一种新型复合除砷材料的制备及其性能

  • 基金项目:

    国家自然科学基金资助项目(21276027)

    山东省自然科学基金资助项目(ZR2010BL028)

    滨州市科学技术发展计划项目(200919,200924)

  • 中图分类号: X703.1

Preparation and performance of a new composite material for removal of arsenic

  • Fund Project:
  • 摘要: 将锆的水合氧化物固载于大孔螯合树脂D401上制备出一种新型除砷材料,并研究了不同实验条件下复合吸附剂D401-Zr对水溶液中As(V)的吸附性能。研究结果表明,在pH42-、Cl-共存时,D401-Zr对砷的去除率大于90%,而与PO43-、F-竞争离子共存时,其去除率明显下降。
  • [1] 庄明龙,柴立元,闵小波,等.含砷废水处理研究进展.工业水处理,2004,24(7):13-17 Zhuang Minglong, Chai Liyuan, Min Xiaobo, et al.Progress of the research on the treatment of As-containing wastewater.Industrial Water Treatment, 2004, 24(7): 13-17 (in Chinese)
    [2] 李浙英,梁剑茹,柏双友,等.生物成因与化学成因施氏矿物的合成、表征及其对As(Ⅲ)的吸附.环境科学学报,2011,31(3):460-467 Li Zheying, Liang Jianru, Bo Shuangyou,et al. Characterization and As(Ⅲ) adsorption properties of schwertmannite synthesized by chemical or biological procedures.Acta Scientiae Circumstantiae, 2011, 31(3):460-467 (in Chinese)
    [3] Rahman M.M., Sengupta M.K., Ahamed S.The magntude of arsenic contamination in ground water and its health effects to the inhabitants of the Jalangi-one of the 85 arsenic affected blocks in West Bengal, India.Science of the Total Environment, 2005, 338 (3): 189-200
    [4] Choong T.S.Y., Chuah T.G., Robiah Y., et al.Arsenic toxicity health hazards and removal techniques from water: An overview.Desalination, 2007, 217(1-3): 139-166
    [5] Bissen M., Frimmel F.H.Arsenic a review. Part II:Oxidation of arsenic and its removal in water treatment.Acta Hydrochimicaet Hydrobiologica, 2003, 31(2): 97-107
    [6] Dixit S., Hering J.G.Comparison of arsenic(V) and arsenic(Ⅲ) sorption onto iron oxide minerals: implications for arsenic mobility.Environ. Sci. Technol., 2003, 37(18): 4182-4189
    [7] 陈维芳,程明涛,张道方,等.有机酸-铁改性活性去除饮用水中的砷.中国环境科学,2011,31(6):910-915 Chen Weifang, Cheng Mingtao, Zhang Daofang, et al.Granular activated carbon tailored by organic acid-Fe for arsenic removal.China Environmental Science, 2011, 31(6): 910-915 (in Chinese)
    [8] 张玉琴.活性氧化铝去除地下水中微量砷的实验.环境监控与预警,2010,2(3):50-52 Zhang Yuqin.Study on removement of trace arsenic in groundwater by activated alumina.Environmental Monitoring and Forewarning, 2010, 2(3): 50-52 (in Chinese)
    [9] Lin T.F., Wu J.K.Adsorption of arsenite and arsenate within activated alumina grains:Equilibrium and kinetics.Water Research, 2001, 35(8): 2049-2057
    [10] Jia Y., Xu L., Fang Z., et al.Observation of surface precipitation of arsenate on ferrihydrite. Environmental Science and Technology, 2006, 40(10): 3248-3253
    [11] Suzuki T.M., Bomani J.O., Matsunaga H., et al.Preparation of porous resin loaded with crystalline hydrous zirconium oxide and its application to the removal of arsenic.Reactive and Functional Polymers, 2000, 43(1-2): 165-172
    [12] 王先良,王小利,徐顺清.大孔螯合树脂可用于处理中药重金属污染.中成药,2005,27(12):1376-1379 Wang Xianliang, Wang Xiaoli, Xu Shunqing.Application of macroporous chelating resins in treatment of heavy metals pollution in traditional Chinese medicine.Chinese Traditional Patent Medicine, 2005, 27(12):1376-1379 (in Chinese)
    [13] 何海成,王玉琴,丁虎,等.氢化物发生原子荧光法测定沼液中砷的含量.可再生能源,2011,29(3):57-60 He Haicheng, Wang Yuqin, Ding Hu, et al.Study on determination of arsenic in biogas slurry by using hydride generation-atomic fluorescence spectrometry.Renewable Energy Resources, 2011,29(3): 57-60 (in Chinese)
    [14] Wang S., Mulligan C.N.Natural attenuation processes for remediation of arsenic contaminated soils and groundwater.Journal of Hazardous Materials, 2006, 138(3): 459-470
    [15] Ho Y.S., Augustine E.O.Biosorption thermodynamics of cadmium on coconut copra meal as biosorbent. Biochemical Engineering Journal, 2006, 30(2): 117-123
    [16] Feng Xuedong, Ma Yanfei.Study on adsorption characteristics of Cr(Ⅲ) on magnesium hydroxide.China Mining Magazine, 2009, 18(2): 101-104
    [17] El-Latif M.M.A., Ibrahim A.M., El-Kady M.FAdsorption Equilibrium, kinetics and thermodynamics of methylene blue from aqueous solutions using biopolymer oak sawdust composite.Journal of American Science, 2010, 6(6): 270-283
    [18] Sampranpiboon P., Charnkeitkong P.Equilibrium isotherm, thermodynamic and kinetic studies of lead adsorption onto pineapple and paper waste sludges.International Journal of Energy and Environment, 2010, 4(3): 89-93
    [19] Kim J., Benjamin M.M.Modeling a novel ion exchange process for arsenic and nitrate removal.Water Res., 2004, 38(8): 2053-2062
    [20] Biswas B.K., Inoue J.I., Inoue K., et al.Adsorptive removal of As(V) and As(Ⅲ) from water by a Zr(IV)-loaded orange waste gel.Journal of Hazardous Materials, 2008, 154(1-3): 1066-1074
  • 加载中
计量
  • 文章访问数:  1940
  • HTML全文浏览数:  914
  • PDF下载数:  963
  • 施引文献:  0
出版历程
  • 收稿日期:  2012-05-11
  • 刊出日期:  2013-05-22
徐伟, 李长海, 贾冬梅, 刘学文. 一种新型复合除砷材料的制备及其性能[J]. 环境工程学报, 2013, 7(5): 1611-1615.
引用本文: 徐伟, 李长海, 贾冬梅, 刘学文. 一种新型复合除砷材料的制备及其性能[J]. 环境工程学报, 2013, 7(5): 1611-1615.
Xu Wei, Li Changhai, Jia Dongmei, Liu Xuewen. Preparation and performance of a new composite material for removal of arsenic[J]. Chinese Journal of Environmental Engineering, 2013, 7(5): 1611-1615.
Citation: Xu Wei, Li Changhai, Jia Dongmei, Liu Xuewen. Preparation and performance of a new composite material for removal of arsenic[J]. Chinese Journal of Environmental Engineering, 2013, 7(5): 1611-1615.

一种新型复合除砷材料的制备及其性能

  • 1.  长春工业大学化学工程学院,长春 130012
  • 2.  滨州学院化工技术研究中心,滨州 256603
  • 3.  滨州市液态污染物综合利用技术重点实验室,滨州 256603
基金项目:

国家自然科学基金资助项目(21276027)

山东省自然科学基金资助项目(ZR2010BL028)

滨州市科学技术发展计划项目(200919,200924)

摘要: 将锆的水合氧化物固载于大孔螯合树脂D401上制备出一种新型除砷材料,并研究了不同实验条件下复合吸附剂D401-Zr对水溶液中As(V)的吸附性能。研究结果表明,在pH42-、Cl-共存时,D401-Zr对砷的去除率大于90%,而与PO43-、F-竞争离子共存时,其去除率明显下降。

English Abstract

参考文献 (20)

返回顶部

目录

/

返回文章
返回