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Bio-sourced porous cellulose microfibrils from coffee pulp for wastewater treatment

机译:来自咖啡纸浆的生物灌溉多孔纤维素微纤维进行废水处理

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摘要

The present work describes the production of novel highly hydrated cellulose microfibrils (CMFs) with unique morphology from coffee pulp waste using specific chemical treatments. The as-produced CMFs were successfully characterized and then used as an adsorbent for removal of methylene blue (MB) from concentrated aqueous solutions. Surprisingly, it was found that the novel CMFs display high water-uptake ability, with a maximum swelling ratio of 265%, and that they form an entangled hydrated network gel in water. The morphological observation and nitrogen adsorption measurement demonstrated that the extracted CMFs exhibit an average fibril diameter of 11.5 mu m and mesoporous structure with an average pore size of 6.37 nm. These special features make the as-produced CMFs excellent candidates to be used as adsorbents for removal of MB from concentrated solutions. The performed adsorption studies determined that the adsorption equilibrium was reached within 90 min. The adsorption kinetics data were well fitted to the pseudo-second-order kinetic model, and the adsorption isotherms were well described by the Freundlich isotherm model. In addition, the maximum adsorption capacity was 182.5 mg/g, much higher than that determined for other previously reported cellulose-based adsorbents. Through this study, we have demonstrated a possible strategy to give an added value to the coffee pulp waste, a by-product of the coffee processing industry, which is rich in cellulose, inexpensive and renewable source. Indeed, the extracted CMFs are very attractive for developing a sustainable and economically viable bio-sourced material for future growth of cellulose use in advanced applications.
机译:本作者描述了使用特定化学处理的独特形态的新型高水合纤维素微纤维(CMF)的生产。成功表征了各种CMF,然后用作从浓浓水溶液中除去亚甲基蓝(MB)的吸附剂。令人惊讶的是,发现新型CMFS显示出高的吸水能力,最大溶胀比为265%,它们在水中形成缠绕的水合网络凝胶。形态学观察和氮吸附测量表明,提取的CMF表现出11.5μm和中孔结构的平均原纤维直径,平均孔径为6.37nm。这些特殊功能使AS制备的CMFS优异的候选者用作从浓缩溶液中去除MB的吸附剂。所进行的吸附研究确定在90分钟内达到吸附平衡。吸附动力学数据适合于伪二阶动力学模型,并通过Freundlich等温模型很好地描述了吸附等温。此外,最大吸附容量为182.5mg / g,远高于其他先前报告的基于纤维素的吸附剂。通过这项研究,我们已经证明了一种可能的策略,以向咖啡纸浆废物,咖啡加工行业的副产品提供额外的策略,其富含纤维素,廉价和可再生源。实际上,提取的CMF对于开发可持续和经济上可行的生物源材料非常有吸引力,以便在进行应用中的纤维素使用的未来生长。

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