王娜妮,寿旦,张嘉捷,李刚,张培敏,朱岩.样品前处理-离子色谱法应用于食品分析的 研究进展[J].食品安全质量检测学报,2014,5(5):1287-1296
样品前处理-离子色谱法应用于食品分析的 研究进展
Recent applications of sample pretreatment techniques in food analysis by ion chromatography
投稿时间:2014-04-07  修订日期:2014-04-30
DOI:
中文关键词:  离子色谱  样品前处理  食品分析
英文关键词:ion chromatography  sample pretreatment  food analysis
基金项目:国家重大科学仪器设备开发专项(2012YQ090229)、浙江省自然科学基金项目(LY12B05004, Y12B050014)、浙江省公益性技术应用研究计划项目(2013C37073)、国家海洋局海洋-大气化学与全球变化重点实验室开放基金(GCMAC1208)
作者单位
王娜妮 浙江省中医药研究院; 浙江大学化学系 
寿旦 浙江省中医药研究院 
张嘉捷 浙江大学化学系 
李刚 绍兴市环保科技服务中心 
张培敏 浙江大学化学系 
朱岩 浙江大学化学系 
AuthorInstitution
WANG Na-Ni Zhejiang Academy of Traditional Chinese Medicine; Department of Chemistry, Zhejiang University 
SHOU Dan Zhejiang Academy of Traditional Chinese Medicine,Hangzhou 
ZHANG Jia-Jie Department of Chemistry, Zhejiang University 
LI Gang ShaoXing Environmental Protection Bureau 
ZHANG Pei-Min Department of Chemistry, Zhejiang University 
ZHU Yan Department of Chemistry, Zhejiang University 
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中文摘要:
      离子色谱是无机和有机离子分析中的重要手段, 已经广泛应用于食品分析领域。但是样品的前处理往往占去大部分的分析时间, 而且是决定分析结果成败的关键因素。探索快速、高效、简便、自动化的样品前处理新方法已成为目前离子色谱研究中的前沿课题。本文综述了离子色谱样品前处理技术应用于食品分析的研究进展。通过分析样品的提取、净化、浓缩与富集痕量物质3个方面, 总结了样品前处理-离子色谱法在食品分析中的应用现状。其中, 样品的提取主要阐述了加速溶剂萃取和微波辅助萃取的研究; 样品的净化主要包括在线超滤法、在线渗析法等膜技术和采用了反相材料、离子交换树脂、螯合树脂和其他新型材料的固相萃取技术; 浓缩方法主要综述了微波浓缩和柱切换法的进展。
英文摘要:
      Ion chromatography was an important tool for the determination of organic and inorganic ions. It was widely used for analyzing food samples. However, the conventional sample pretreatments were always time-consuming, costly and complex. To date, many techniques were developed to eliminate the matrix and enrich the trace analytes in food samples. The applications of novel sample pretreatment techniques in ion chromatography were reviewed in this paper. The sample extraction, clean-up procedures and enrichments in food samples were described respectively. The extraction methods included the accelerated solvent extraction and microwave-assisted extraction; the clean-up methods included membrane techniques (on-line ultrafiltration and on-line dialysis) and solid phase extractions (reverse phase materials, ion exchange resins, chelate resins and carbon materials); the enrichment methods included microwave preconcentration and column switching technique.
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