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Preparation of temperature-sensitive Xanthan/NIPA hydrogel using citric acid as crosslinking agent for bisphenol A adsorption

机译:用柠檬酸制备温度敏感的黄原/ NIPA水凝胶作为双酚A吸附的交联剂

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摘要

Hydrogels are emerging materials in pollutant treatment due to their high absorbability and environmental friendliness. Herein, a novel temperature-sensitive hydrogel based on xanthan gum (XG) and N-isopropylacrylamide (NIPA) was successfully synthesized in a water system using low-cost citric acid as crosslinking agent The lower critical solution temperature of the honeycomb macroporous XG/NIPA hydrogels was 40 degrees C. Meanwhile, the hydrogels had good water-absorption capacity and the swelling degree reached up to 70.1. Using XG/NIPA hydrogels to absorb bisphenol A (BPA), the maximum adsorption capacity was as high as 458 mg/g. The process was a multilayer adsorption and the rate-controlling step is chemisorption. Thus, the temperature-sensitive XG/NIPA hydrogel had great potential in absorbing BPA from aqueous solutions.
机译:由于其高吸收性和环境友好,水凝胶是污染物治疗的新兴材料。 在此,使用低成本柠檬酸作为交联剂在水系统中成功地合成了基于黄原胶(XG)和N-异丙基丙烯酰胺(NIPA)的新型温敏水凝胶作为交联剂,蜂窝大孔XG / NIPA的临界溶液温度较低的临界溶液温度 同时,水凝胶为40℃,水凝胶具有良好的吸水能力,溶胀度达到高达70.1。 使用XG / NIPA水凝胶吸收双酚A(BPA),最大吸附能力高达458mg / g。 该方法是多层吸附,速率控制步骤是化学吸附。 因此,温度敏感的XG / NIPA水凝胶具有极大的潜力在水溶液中吸收BPA。

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