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Sodium hyaluronate-functionalized urea-formaldehyde monolithic column for hydrophilic in-tube solid-phase microextraction of melamine

机译:透明质酸钠官能化尿素整体柱用于亲水性的内部固相微萃取三聚氰胺

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摘要

A novel sodium hyaluronate-functionalized urea-formaldehyde (UF) monolithic column has been developed by in-situ polycondensation of urea, formaldehyde and sodium hyaluronate (HA). HA plays both the roles of crosslinking and hydrophilic functionalization. The preparation factors including different molecular weights of HA and different amounts of HA were optimized, and then a uniform monolith with satisfactory permeability and hydrophilic binding capacity was obtained. Due to the excellent hydrophilicity of HA, HA-functionalized UF monolith showed higher hydrophilic extraction efficiency than UF monolith, and was applied for hydrophilic in-tube solid-phase microextraction (SPME) of melamine (MEL). Several factors for hydrophilic in-tube SPME, such as ACN percentage in the sampling solution, salt concentration and pH value of the sampling solution, elution volume, sampling and elution flow rate, were investigated with respect to the extraction efficiency of MEL. Under the optimized SPME conditions, the limit of detection (LOD) of MEL was found to be 0.2 ng/mL in the milk formula samples, the recoveries of MEL spiked in milk formula samples ranged from 87.3% to 96.7% with relative standard deviations (RSDs) less than 5.1%. Owing to the excellent hydrophilic extraction ability, the novel HA-functionalized UF monolith could provide a promising tool for the sensitive analysis of polar analytes in complicated samples. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过尿素,甲醛和透明质酸钠(HA)的原位缩聚,开发了一种新型透明质酸官能化尿素 - 甲醛(UF)单片柱。 HA发挥交联和亲水官能化的作用。优化包括不同分子量的HA和不同量的HA的制备因子,然后获得具有令人满意的渗透性和亲水性结合能力的均匀整料。由于HA的优异亲水性,HA官能化的UF整料表现出比UF整料更高的亲水性提取效率,并施加了三聚氰胺(MEL)的亲水内固相微萃取(SPME)。对采样溶液中的亲水性管腔SPME的几个因素,例如ACN百分比,采样溶液的盐浓度和pH值,相对于MEL的提取效率研究了采样溶液,洗脱体积,取样和洗脱流速。在优化的SPME条件下,在牛奶配方样品中发现MEL的检测极限(LOD)为0.2ng / ml,在乳粉中掺入的MEL的回收率范围为87.3%至96.7%,相对标准偏差( RSDS)小于5.1%。由于优异的亲水性提取能力,新型HA官能化的UF整料可以提供有希望的工具,用于复杂样品中极性分析物的敏感性分析。 (c)2017年Elsevier B.V.保留所有权利。

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