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Cr(III) removal from synthetic and industrial wastewaters by using co-gasification chars of rice waste streams

机译:通过使用水稻废物流的共同气化折叠从合成和工业废水中取出CR(iii)

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摘要

Blends of rice waste streams were submitted to co-gasification assays. The resulting chars (G1C and G2C) were characterized and used in Cr(III) removal assays from a synthetic solution. A Commercial Activated Carbon (CAC) was used for comparison purposes. The chars were non-porous materials mainly composed by ashes (68.3-92.6% w/w). The influences of adsorbent loading (solid/liquid ratio - S/L) and initial pH in Cr(III) removal were tested. G2C at a S/L of 5 mg L-1 and an initial pH of 4.50 presented an uptake capacity significantly higher than CAC (7.29 and 2.59 mg g(-1), respectively). G2C was used in Cr(III) removal assays from an industrial wastewater with Cr(III) concentrations of 50, 100 and 200 mg L-1. Cr(III) removal by precipitation (uptake capacity ranging from 11.1 to 14.9mg g(-1)) was more effective in G2C, while adsorption (uptake capacity of 16.1 mg g(-1)) was the main removal mechanism in CAC.
机译:将水稻废料流的混合物提交给共气化测定。 所得的COMS(G1C和G2C)的特征和用于来自合成溶液的Cr(III)去除测定。 商业活性炭(CAC)用于比较目的。 该字符是主要由灰烬(68.3-92.6%w / w)组成的无多孔材料。 测试吸附剂负载(固体/液体比率-S / L)和初始pH在Cr(III)中的影响的影响。 在5mg L-1的S / L的G2C和4.50的初始pH值呈现出显着高于CAC的摄取容量(7.29和2.59mg(-1))。 G2C用于来自工业废水的Cr(III)去除测定,Cr(III)浓度为50,100和200mg L-1。 通过沉淀去除(从11.1至14.9mg(-1)的摄取容量,在G2C中更有效,而吸附(16.1mg g(-1)的摄取容量)是CAC中的主要去除机制。

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