FeCl3改性柚子皮对水中Cr6+的吸附

王琼, 付宏渊, 何忠明, 蒋朝晖, 王平. FeCl3改性柚子皮对水中Cr6+的吸附[J]. 环境工程学报, 2016, 10(12): 6928-6934. doi: 10.12030/j.cjee.201508037
引用本文: 王琼, 付宏渊, 何忠明, 蒋朝晖, 王平. FeCl3改性柚子皮对水中Cr6+的吸附[J]. 环境工程学报, 2016, 10(12): 6928-6934. doi: 10.12030/j.cjee.201508037
WANG Qiong, FU Hongyuan, HE Zhongming, JIANG Zhaohui, WANG Ping. Adsorption effect of FeCl3-modified pomelo peel powder on wastewater containing Cr(Ⅵ)[J]. Chinese Journal of Environmental Engineering, 2016, 10(12): 6928-6934. doi: 10.12030/j.cjee.201508037
Citation: WANG Qiong, FU Hongyuan, HE Zhongming, JIANG Zhaohui, WANG Ping. Adsorption effect of FeCl3-modified pomelo peel powder on wastewater containing Cr(Ⅵ)[J]. Chinese Journal of Environmental Engineering, 2016, 10(12): 6928-6934. doi: 10.12030/j.cjee.201508037

FeCl3改性柚子皮对水中Cr6+的吸附

  • 基金项目:

    国家科技支撑计划课题(2014BAC09B01-02)

    国家自然科学基金资助项目(21307008)

  • 中图分类号: X703

Adsorption effect of FeCl3-modified pomelo peel powder on wastewater containing Cr(Ⅵ)

  • Fund Project:
  • 摘要: 以生物质废弃物柚子皮为主要原料,通过在柚子皮粉中加入FeCl3进行改性,将该改性产物用于吸附去除废水中的Cr6+。该改性柚子皮的制备条件为柚子皮粉:FeCl3质量比为100:1,常温下加水混合均匀,在(85±2)℃条件下烘24 h后粉碎。当水中Cr6+离子浓度为5 mg·L-1,pH值为6.3,吸附剂投加量为3 g·L-1,吸附反应温度为10℃的条件下,吸附反应1 h后达到平衡,吸附效率为97%以上。该吸附反应符合Langmuir等温方程,反应主要机理包括物理吸附、化学吸附、络合作用、絮凝作用、共沉淀作用等。研究表明,该改性吸附材料可自动调节废水pH值,成本低廉,操作简单,效果好,无二次污染,适合处理低浓度含铬废水,有利于生物质废弃物的资源化利用。
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    [2] GEORGIEVA V. G., TAVLIEVA M. P., GENIEVA S. D., et al. Adsorption kinetics of Cr(VI) ions from aqueous solutions onto black rice husk ash. Journal of Molecular Liquids, 2015, 208:219-226
    [3] 王芳芳, 孙英杰, 封琳, 等. 含铬废水的处理技术及机理简述. 环境工程, 2013, 31(3):21-24 WANG Fangfang, SUN Yiingjie, FENG Lin, et al. Analysis of the treatment technology and mechanism of chromium-containing wastewater. Environmental Engineering, 2013, 31(3):21-24(in Chinese)
    [4] BHATNAGAR A., SILLANPÄÄ M., WITEK-KROWIAK A. Agricultural waste peels as versatile biomass for water purification:A review. Chemical Engineering Journal, 2015, 270:244-271
    [5] NGUYEN T. A. H., NGO H. H., GUO W. S., et al. Applicability of agricultural waste and by-products for adsorptive removal of heavy metals from wastewater. Bioresource Technology, 2013, 148:574-585
    [6] HEGAZI H. A. Removal of heavy metals from wastewater using agricultural and industrial wastes as adsorbents. HBRC Journal, 2013, 9(3):276-282
    [7] SIMATE G. S., NDLOVU S. The removal of heavy metals in a packed bed column using immobilized cassava peel waste biomass. Journal of Industrial and Engineering Chemistry, 2015, 21:635-643
    [8] LESMANA S. O., FEBRIANA N., SOETAREDJO F. E., et al. Studies on potential applications of biomass for the separation of heavy metals from water and wastewater. Biochemical Engineering Journal, 2009, 44(1):19-41
    [9] TRAN V. S., NGO H. H., GUO Wenshan, et al. Typical low cost biosorbents for adsorptive removal of specific organic pollutants from water. Bioresource Technology, 2015, 182:353-363
    [10] ANASTOPOULOS I., KYZAS G. Z. Agricultural peels for dye adsorption:A review of recent literature. Journal of Molecular Liquids, 2014, 200:381-389
    [11] SUD D., MAHAJAN G., KAUR M. P. Agricultural waste material as potential adsorbent for sequestering heavy metal ions from aqueous solutions:A review. Bioresource Technology, 2008, 99(14):6017-6027
    [12] RAO R., REHMAN F. Adsorption of heavy metal ions on Pomegranate (Punica granatum) peel:Removal and recovery of Cr(VI) ions from a multi-metal ion system. Adsorption Science & Technology, 2010, 28(3):195-211
    [13] MEMON J. R., MEMON S. Q., BHANGER M. I., et al. Banana peel:A green and economical sorbent for the selective removal of Cr(VI) from industrial wastewater. Colloids and Surfaces B:Biointerfaces, 2009, 70(2):232-237
    [14] LÓPEZ-TÉLLEZ G., BARRERA-DÍAZ C. E., BALDERAS-HERNÁNDEZ P., et al. Removal of hexavalent chromium in aquatic solutions by iron nanoparticles embedded in orange peel pith. Chemical Engineering Journal, 2011, 173(2):480-485
    [15] PAN Qingshan, LIU Wei, MAO Meigui, et al. Study on the adsorption effect of ZnCl2-modified pomelo peel powder on wastewater containing Pb(Ⅱ). Advanced Materials Research, 2013, 726-731:2320-2323
    [16] BEGUM M. N., NOORLIYANA A., BARI M. F., et al. Kinetic and thermodynamic studies on adsorption of copper ions onto pomelo peel (Citrus grandis). Advanced Materials Research, 2013, 795:674-678
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出版历程
  • 收稿日期:  2015-12-06
  • 刊出日期:  2016-12-08
王琼, 付宏渊, 何忠明, 蒋朝晖, 王平. FeCl3改性柚子皮对水中Cr6+的吸附[J]. 环境工程学报, 2016, 10(12): 6928-6934. doi: 10.12030/j.cjee.201508037
引用本文: 王琼, 付宏渊, 何忠明, 蒋朝晖, 王平. FeCl3改性柚子皮对水中Cr6+的吸附[J]. 环境工程学报, 2016, 10(12): 6928-6934. doi: 10.12030/j.cjee.201508037
WANG Qiong, FU Hongyuan, HE Zhongming, JIANG Zhaohui, WANG Ping. Adsorption effect of FeCl3-modified pomelo peel powder on wastewater containing Cr(Ⅵ)[J]. Chinese Journal of Environmental Engineering, 2016, 10(12): 6928-6934. doi: 10.12030/j.cjee.201508037
Citation: WANG Qiong, FU Hongyuan, HE Zhongming, JIANG Zhaohui, WANG Ping. Adsorption effect of FeCl3-modified pomelo peel powder on wastewater containing Cr(Ⅵ)[J]. Chinese Journal of Environmental Engineering, 2016, 10(12): 6928-6934. doi: 10.12030/j.cjee.201508037

FeCl3改性柚子皮对水中Cr6+的吸附

  • 1.  中南林业科技大学环境科学与工程学院, 长沙 410004
  • 2.  长沙理工大学化学与生物工程学院, 长沙 410114
  • 3.  长沙理工大学交通运输工程学院, 长沙 410114
基金项目:

国家科技支撑计划课题(2014BAC09B01-02)

国家自然科学基金资助项目(21307008)

摘要: 以生物质废弃物柚子皮为主要原料,通过在柚子皮粉中加入FeCl3进行改性,将该改性产物用于吸附去除废水中的Cr6+。该改性柚子皮的制备条件为柚子皮粉:FeCl3质量比为100:1,常温下加水混合均匀,在(85±2)℃条件下烘24 h后粉碎。当水中Cr6+离子浓度为5 mg·L-1,pH值为6.3,吸附剂投加量为3 g·L-1,吸附反应温度为10℃的条件下,吸附反应1 h后达到平衡,吸附效率为97%以上。该吸附反应符合Langmuir等温方程,反应主要机理包括物理吸附、化学吸附、络合作用、絮凝作用、共沉淀作用等。研究表明,该改性吸附材料可自动调节废水pH值,成本低廉,操作简单,效果好,无二次污染,适合处理低浓度含铬废水,有利于生物质废弃物的资源化利用。

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