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Silk Fibroin/Orange Peel Foam: An Efficient Biocomposite for Water Remediation

机译:丝素蛋白/橙皮泡沫:一个有效的Biocomposite水补救

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摘要

A novel approach for the valorization of orange peel waste for the removal of aqueous organic pollutants is presented herein. The orange peel is combined with silk fibroin in order to obtain alcogels, which are successfully converted into highly porous biocomposite foams upon supercritical CO2 drying. The biocomposite shows a Brunauer-Emmett-Teller specific surface area of 174.45 m2 g-1 and can absorb three times its weight in water. The resulting adsorbents can adsorb methylene blue from water witha maximum adsorption capacity of 113.8 ± 12.5 mg g-1, with the orange peel activity well preserved in the polymeric matrix. The spectroscopic studies performed show that the methylene blue molecules are adsorbed in the form of monomers on the surface ofthe biocomposite foams, forming a monolayer as suggested by the Langmuir isotherm model. Although the agrowaste powders are already conirmed to be promising biosorbents for the removal of pollutants from water, the difficulties caused by their recoveryafter the water treatment may limit their manageability and applicability. With this study, such limitations can be overcome thanks to the incorporation of the powder in a solid porous system, without significantly compromising the dye adsorption capacity of the incorporated orange peel.
机译:橙色的稳定物价的新方法皮去除水的有机废物提出了污染物。加上蚕丝蛋白为了获得吗醇凝胶,成功地转化成高度多孔biocomposite泡沫超临界二氧化碳干燥。Brunauer-Emmett-Teller比表面积174.45 m2 g1和可以吸收它的三倍重量在水里。从水中吸附亚甲基蓝最大买下吸附容量为113.8±12.5毫克g - 1,级橙皮活动保存完好聚合物基体。执行显示,亚甲蓝分子吸附在单体的形式吗表面biocomposite泡沫,形成一个单层朗缪尔等温线所显示模型。conirmed biosorbents承诺的从水中污染物的去除他们recoveryafter造成困难水处理可能会限制他们的可管理性和适用性。可以克服由于合并的在固体粉末多孔系统,没有显著影响染料吸附把橙皮能力。

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