详细信息

氨基树脂微球的表面改性及对水中Co^(2+)的吸附性能研究    

SURFACE MODIFICATION OF AMINO-RESIN PARTICLES AND ITS ADSORPTION PERFORMANCE OF Co^(2+) FROM SIMULATED WASTEWATER

文献类型:期刊文献

中文题名:氨基树脂微球的表面改性及对水中Co^(2+)的吸附性能研究

英文题名:SURFACE MODIFICATION OF AMINO-RESIN PARTICLES AND ITS ADSORPTION PERFORMANCE OF Co^(2+) FROM SIMULATED WASTEWATER

作者:赵会玲[1,2];付林伟[1];赵会艳[2];史学伟[1];赵双良[1];刘洪来[1]

机构:[1]华东理工大学化学工程国家重点实验室,上海200237;[2]中国石油化工股份有限公司洛阳分公司机械动力处,洛阳471012

年份:2016

卷号:32

期号:2

起止页码:97

中文期刊名:离子交换与吸附

外文期刊名:Ion Exchange and Adsorption

收录:CSTPCD;;Scopus;北大核心:【北大核心2014】;CSCD:【CSCD2015_2016】;

基金:973青年科学家项目(2014CB748500);上海市青年科技启明星计划A类(14QA1401300);上海市教委创新项目

语种:中文

中文关键词:含Co2+废水;螯合树脂;吸附;表面改性;二硫代氨基甲酸盐

外文关键词:Wastewater containing cobalt ions; Chelating resin; Adsorption; Surface modification; Dithiocarbamate.

摘要:高效、低耗去除溶液中微量重金属离子一直是工业废水处理中的挑战之一。高性能金属离子螯合剂的开发并结合旋流强化分离技术为微量Co^(2+)废水的处理提供了一个可行方案。根据旋流分离技术应用对螯合剂性能的要求,本文针对Co^(2+)发展了一种螯合剂制备方法。通过对氨基树脂D380进行表面改性,将二硫化碳引入树脂球表面生成二硫代氨基甲酸盐官能团(DTC),并把改性前后的氨基树脂应用于模拟废水中Co^(2+)的吸附性能研究。元素分析和红外图谱结果表明,DTC官能团成功引入氨基树脂D380上。与未改性的氨基树脂相比,改性后的氨基树脂(DTC-D380)对Co^(2+)的去除效果更好,其饱和吸附容量在p H值为5.3的模拟废水中达到32mg/g。当吸附温度为30℃,投料比为5g/L时,吸附30min后,模拟废水中Co^(2+)浓度可从80mg/L降为0.43mg/L,此时螯合剂尚未饱和,但是Co^(2+)的去除率已几乎达到100%。改性氨基树脂DTC-D380的制备为微量Co^(2+)的去除提供了一种优良的螯合剂,为结合旋流分离技术连续处理Co^(2+)废水提供了一种选择。
Efficient and low-cost removal of trace amounts of heavy metal ions from aqueous solution has been a challenging problem in wastewater treatment process, toward which developing high-performance chelating agents combined with intensified mechanical separation technology provided a promising solution. In view of the basic demands on chelating agents for successful applications of the intensified mechanical separation technology, a kind of chelating resins for removal of cobalt ion was prepared by surface modification of D380 amino-resins with carbon disulfide. The final product with dithiocarbamate (DTC-D380) was characterized with Elemental analysis and Infrared spectrum analysis. The D380 and DTC-D380 resins were then tested for removal of cobalt ions from simulated wastewater, and the results showed that the DTC-D380 resins had better performance. Specifically, the concentration of cobalt ions could be decreased from 80mg/L to 0.43mg/L in 30min at 30℃with a dosage of 5g/L. DTC-D380, as an excellent chelating agent of cobalt ions, and the intensified mechanical separation technology provided a combined method for continuous treatment ofwastewater containing cobalt ions.

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