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首页> 外文期刊>International journal of chemical engineering >Valorization of Agroindustrial Wastes as Biosorbent for the Removal of Textile Dyes from Aqueous Solutions
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Valorization of Agroindustrial Wastes as Biosorbent for the Removal of Textile Dyes from Aqueous Solutions

机译:从水溶液中除去纺织染料的生物吸附剂的算法

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The goal is to determinate the technical feasibility of using agroindustrial wastes for adsorption of dyes. The pHpzcof Brewer’s spent grains and Orange peel is 5.3 and 3.5, respectively. The equilibrium isotherms of Basic Blue 41, Reactiive Black 5, and Acid Black 1 were carried out without pHs control which ranging between 4 and 5.5. The equilibrium concentrations for both adsorbents were fitted by the Freundlich and Langmuir models. The maximum adsorption capacity measured for Basic Blue 41, Reactive Black 5, and Acid Black 1 was 32.4, 22.3, and 19.8 mg g−1for Brewer’s spent grains; and 157, 62.6, and 45.5 for orange peel, respectively. The kinetic of process was fitted by the model of pseudo-second order. The constant rate for orange peel decreased to extend the initial concentration of dye increased, obtaining 4.08 * 10−3−0.6 * 10−3(Basic Blue 41), 2.98 * 10−3−0.36 * 10−3(Acid Black 1), and 3.40 * 10−3−0.46 * 10−3 g mg−1 min−1(Reactive Black 5). The best removal efficiency was obtained in orange peel with values started from 63% to 20%. Consequently, according the results obtained there are two positive effects, the reuse of agricultural wastes and its use as low-cost adsorbent of the dyes.
机译:目标是确定使用农业工业废物的技术可行性,以吸附染料。 PHPZCOF Brewer的山谷和橙皮分别为5.3和3.5。碱性蓝色41,反应黑5和酸黑1的平衡等温线无需pHS控制,其在4和5.5之间。通过Freundlich和Langmuir模型安装了两种吸附剂的平衡浓度。为基本蓝色41,反应性黑5和酸黑1测量的最大吸附容量为32.4,22.3和19.8mg G-1For的酿酒瓶;橙皮分别为157,62.6和45.5。过程的动力学由伪二次阶的模型装配。橙皮果皮的恒定速率降低以延长染料的初始浓度增加,获得4.08 * 10-3-0.6 * 10-3(基本蓝41),2.98 * 10-3-0.36 * 10-3(酸黑1) ,3.40 * 10-3-0.46 * 10-3 g mg-1 min-1(反应黑5)。在橙皮中获得最佳去除效率,其值从63%开始达20%。因此,根据得到的结果,存在两种积极影响,农业废物的再利用及其作为染料的低成本吸附剂的用途。

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