AbstractThe adsorption of C2–C6 short chain carboxylic acids was measured for swellable organically modified sil'/> Adsorption of short chain carboxylic acids from aqueous solution by swellable organically modified silica materials
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Adsorption of short chain carboxylic acids from aqueous solution by swellable organically modified silica materials

机译:通过溶胀有机改性二氧化硅材料从水溶液中吸附短链羧酸

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AbstractThe adsorption of C2–C6 short chain carboxylic acids was measured for swellable organically modified silicas (SOMS), hydrophobic polysilsesquioxane based materials prepared via the sol–gel process. Adsorption was measured for SOMS materials that were either hydrophobic or incorporated variable amounts of quaternary amine groups to serve as ion exchange sites. Batch equilibrium experiments were performed for carboxylic acids and alcohols to standard hydrophobic SOMS. Results show that SOMS has partition coefficients for short chain alcohols that are approximately 3× greater than liquid–liquid extraction into octanol, and 10× greater for the extraction of short chain carboxylic acids. Affinity for valeric acid was similar to commercially available Amberlite XAD-4 resins, however the organosilica derived sorbent had a 3× higher total adsorption capacity which was attributed to the ability of the pores to expand. Column experiments using SOMS were used to measure breakthrough curves for valeric acid across a wide range of concentrations. The isotherm for dynamic adsorption was linear indicating that capacity to adsorb valeric acid was controlled by equilibrium and not limited by set pore volume capacity. Addition of quaternary amine sites to SOMS improved adsorption affinity of valeric acid at low concentrations, but those modifications reduced the swelling of the matrix and lowered capacity at higher concentrations. Overall, SOMS was found to be poorly suited to extract organic acids at concentrations ]]>
机译:<![CDATA [<摘要ID =“ABS1”语言=“EN”OUTPORMEDIUM =“全部”> <标题>抽象 ara>测量C2-C6短链羧酸的吸附,用于溶胀性有机化二氧化硅(SOMS),疏水性多晶硅喹甲酸烷基材料通过溶胶 - 凝胶法制备。测量用于疏水性的或掺入可变量的季胺基团的SOMS材料的吸附,用作离子交换位点。对羧酸和醇进行批量平衡实验以标准疏水索华族。结果表明,SOMS具有比液液萃取到辛醇大约3倍的短链醇的分配系数,对于短链羧酸的提取,10倍。对valeric酸的亲和力类似于市售的氨苄酸盐XAD-4树脂,但是有机胺衍生的吸附剂具有3倍的总吸附能力,其归因于孔的能力膨胀。使用SOM的柱实验用于测量valeric酸的突破曲线,横跨各种浓度。用于动态吸附的等温线是线性,表明吸附valeric酸的能力通过平衡控制,并且不受设定孔体积容量的限制。向SOM添加季胺位点改善了valeric酸在低浓度下的吸附亲和力,但这些修饰在较高浓度下降低了基质的溶胀并降低了容量。总体而言,Soms被发现适合于浓度的浓度<β1mm的有机酸,但在较高浓度下吸附高容量(高达700μg/ g)。可以通过溶剂漂洗吸附的戊酸。 ]]>

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