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利用家蝇幼虫壳制备的吸附剂去除游离态和络合态重金属离子。

Removal of free and complexed heavy-metal ions by sorbents produced from fly (Musca domestica) larva shells.

作者信息

Gyliene Ona, Rekertas Romualdas, Salkauskas Mudis

机构信息

Department of Environmental Chemistry, Institute of Chemistry, Vilnius, Lithuania.

出版信息

Water Res. 2002 Sep;36(16):4128-36. doi: 10.1016/s0043-1354(02)00105-7.

Abstract

Fly larva shells (FLS) are formed as a side product in the biological treatment of organic wastes, and chitin and chitosan produced from the FLS have been used as sorbents for heavy-metal ions. Sorbents are characterised by FT-IR measurements and pH-potentiometric titration and by determination of their surface area, and the content of main elements (C, N, P, S) and ashes. Free metal ions are sorbed best (up to 0.5-0.8 mmol g(-1)) onto chitin and chitosan. The sorption ability for free metal ions of chitin decreases in the order Fe(III) > Cu(II) (Pb(II) > Zn(II). > Ni(II) > Mn(II) and that of chitosan decreases in the order Cu(II) > Mn(II) > Ni(II) > Zn(II) > Pb(II) > Fe(III). The complexed metal ions are sorbed by the FLS up to 0.2-0.4mmol g(-1). The sorption ability for metal ions and ligands depends on pH, concentration of complexed metal ions and the ligand species in the solution. Glycine has the retarding effect on the sorption of Ni(II) and Cu(II) ions, and EDTA enhances the Cu(II) ion sorption. Ni(II) and glycine sorption obeyed the Langmuir isotherm. The observed sorption data show the promising potentialities of the FLS for the heavy-metal removal from the solutions, containing strong complexing agents. Mechanisms for the removal of free and complexed metal ions by chitin, chitosan and the FLS have been discussed.

摘要

蝇幼虫壳(FLS)是有机废物生物处理过程中产生的副产品,由FLS制备的甲壳素和壳聚糖已被用作重金属离子的吸附剂。通过傅里叶变换红外光谱(FT-IR)测量、pH电位滴定法以及测定其表面积、主要元素(C、N、P、S)含量和灰分来表征吸附剂。游离金属离子在甲壳素和壳聚糖上的吸附效果最佳(高达0.5 - 0.8 mmol g⁻¹)。甲壳素对游离金属离子的吸附能力顺序为Fe(III) > Cu(II) > Pb(II) > Zn(II) > Ni(II) > Mn(II),壳聚糖对游离金属离子的吸附能力顺序为Cu(II) > Mn(II) > Ni(II) > Zn(II) > Pb(II) > Fe(III)。络合金属离子在FLS上的吸附量高达0.2 - 0.4 mmol g⁻¹。金属离子和配体的吸附能力取决于pH值、络合金属离子的浓度以及溶液中的配体种类。甘氨酸对Ni(II)和Cu(II)离子的吸附有阻碍作用,而乙二胺四乙酸(EDTA)增强了Cu(II)离子的吸附。Ni(II)和甘氨酸的吸附符合朗缪尔等温线。观察到的吸附数据表明FLS在从含有强络合剂的溶液中去除重金属方面具有潜在的应用前景。本文还讨论了甲壳素、壳聚糖和FLS去除游离和络合金属离子的机制。

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