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Characteristics and mechanisms of nickel adsorption on biochars produced from wheat straw pellets and rice husk

机译:小麦秸秆颗粒和稻壳产生的生物炭对镍的吸附特性及机理

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摘要

The adsorption characteristics and mechanisms of Ni2+ on four-standard biochars produced from wheat straw pellets (WSP550, WSP700) and rice husk (RH550, RH700) at 550 and 700 °C, respectively, were investigated. The kinetic results show that the adsorption of Ni2+ on the biochars reached an equilibrium within 5 min. The increase of the solid to liquid ratio resulted in an increase of Ni2+ removal percentage but a decrease of the adsorbed amount of Ni2+ per weight unit of biochar. The Ni2+ removal percentage increased with the increasing of initial solution pH values at the range of 2–4, was relatively constant at the pH range of 4–8, and significantly increased to ≥98% at pH 9 and stayed constantly at the pH range of 9–10. The calculated maximum adsorption capacities of Ni2+ for the biochars follow the order of WSP700 > WSP550 > RH700 > RH550. Both cation exchange capacity and pH of biochar can be a good indicator of the maximum adsorption capacity for Ni2+ showing a positively linear and exponential relationship, respectively. This study also suggests that a carefully controlled standardised production procedure can make it reliable to compare the adsorption capacities between different biochars and investigate the mechanisms involved.Electronic supplementary materialThe online version of this article (doi:10.1007/s11356-017-8847-2) contains supplementary material, which is available to authorized users.
机译:研究了分别在550和700°C下由麦草颗粒(WSP550,WSP700)和稻壳(RH550,RH700)产生的四种标准生物炭上Ni 2 + 的吸附特性和机理。 。动力学结果表明Ni 2 + 在生物炭上的吸附在5min内达到平衡。固液比的增加导致Ni 2 + 去除率的增加,但每生物量炭中Ni 2 + 的吸附量减少。 Ni 2 + 的去除率随着初始溶液pH值在2–4范围内的增加而增加,在4–8范围内相对恒定,在4–8的范围内显着增加至≥98% pH值为9,并始终保持在9-10的pH范围内。 Ni 2 + 对生物炭的最大吸附容量的计算顺序为WSP700> WSP550> RH700> RH550。阳离子交换容量和生物炭的pH值可以很好地指示Ni 2 + 的最大吸附容量,分别显示正线性关系和指数关系。这项研究还表明,通过精心控制的标准化生产程序可以可靠地比较不同生物炭之间的吸附量并研究涉及的机理。电子补充材料本文的在线版本(doi:10.1007 / s11356-017-8847-2)包含补充材料,授权用户可以使用。

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