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首页> 外文期刊>Waste Management >Optimization of the integral valorization process for orange peel waste using a design of experiments approach: Production of high-quality pectin and activated carbon
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Optimization of the integral valorization process for orange peel waste using a design of experiments approach: Production of high-quality pectin and activated carbon

机译:通过设计实验方法来优化橘皮废料的整体增值过程:生产高质量的果胶和活性炭

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The aim of this study was to optimize the integral valorization of orange peel waste by obtaining activated carbon after a process of pectin recovery in recycling of orange peel by transformation to value-added products of pectin extraction and activated carbon preparation. The study was supported by statistical analysis, and the significant factors and optimal conditions were obtained from the statistical analysis. Using a representative sample of orange peel waste, a yield of 29.37% pectin was recovered at the optimal operating conditions (phosphoric acid as the extraction agent, 95 degrees C as the impregnation temperature and a 2-hour extraction time). Activated carbon (AC) was prepared from the remaining solid residue. The conditions that improve the resulting material quality were H3PO4 [0.6 M] used as the activating agent, an impregnation temperature of 95 degrees C, a carbonization temperature of 400 degrees C and 1 h of carbonization time. The obtained AC showed a sorption capacity of 2342.91 mg g(-1), a value higher than that reported for commercial activated carbon. Using a model dye chemical, the sorption kinetics and thermodynamics of AC were found to follow a pseudo-second-order rate and the Freundlich models, respectively. Using the process conditions obtained in this study, it was possible to optimize the yield and also obtain good-quality products from valorization of orange peel. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是通过将果胶回收过程转化为果胶提取和活性炭增值产品,在果胶回收过程中获得果胶,从而获得活性炭,从而优化橘皮废物的整体增值。该研究得到统计分析的支持,并从统计分析中获得了重要因素和最佳条件。使用橙皮废料的代表性样品,在最佳操作条件下(磷酸为萃取剂,浸渍温度为95摄氏度,萃取时间为2小时),果胶的收率为29.37%。由剩余的固体残余物制备活性炭(AC)。改善所得材料质量的条件是:使用H3PO4 [0.6 M]作为活化剂,浸渍温度为95摄氏度,碳化温度为400摄氏度,碳化时间为1小时。所获得的AC显示出2342.91 mg g(-1)的吸附容量,该值高于报道的商业活性炭。使用模型染料化学物质,发现AC的吸附动力学和热力学分别遵循伪二级速率和Freundlich模型。使用本研究中获得的工艺条件,可以优化收率,并通过橙皮的增值获得高质量的产品。 (C)2018 Elsevier Ltd.保留所有权利。

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