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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Assessment of the influence of counter ions on biosorption of copper cations in brewer's spent grain - Waste product generated during beer brewing process
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Assessment of the influence of counter ions on biosorption of copper cations in brewer's spent grain - Waste product generated during beer brewing process

机译:啤酒酿造过程中酿酒厂废弃产物铜阳离子生物吸收对抗离子对铜阳离子的影响

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The influence that conditioning leached ground barley grain (known as "brewer's spent grain" (BSG)) has on the effectiveness of copper cation sorption was analysed. Saturation with counter ions of functional groups present on the grain surface was carried out in hydrochloric acid, sodium hydroxide, sodium and calcium chloride solutions. For comparison, BSG was also conditioned in demineralised water. Spent barley grain is a by-product of the brewing industry which can be used as a biosorbent in the removal of heavy metals from waste water. Emphasis is placed on the effect of competitive sorption of copper and hydrogen cations and the negative influence of a solution alkalinisation on sorption efficiency. It was demonstrated that the changes of Cu2+ and H+ concentration partition coefficients in the solution and BSG during the sorption process are not monotonic. It was also demonstrated that, compared to raw BSG, conditioning BSG in a hydrochloric acid solution improves sorption efficiency by approximately 40%, which is an important conclusion as regards application. Saturation of functional groups with Na+ and Ca2+ counter ions, which have weak affinity with functional groups, does not improve Cu2+ sorption efficiency; however, it considerably increases the efficiency of hydrogen cations sorption which, in consequence, increases the solution pH. Due to similar chemical characteristics of functional groups, the analyses can be applied in order to optimise sorption processes in other biosorbents. It has been confirmed that ion exchange is the main mechanism of heavy metal sorption in natural sorbents.
机译:调节浸出的地面大麦籽粒(称为“Brewer的花谷物”(BSG))的影响分析了铜阳离子吸附的有效性。用晶粒表面上存在的官能团的抗衡离子的饱和在盐酸,氢氧化钠,钠和氯化钙溶液中进行。为了比较,BSG还在脱矿质水中进行调节。花了大麦谷物是酿造行业的副产品,可用作从废水中除去重金属的生物吸附剂。重点是铜和氢阳离子竞争吸附的影响以及溶液碱化对吸附效率的负面影响。结果证明,在吸附过程中溶液和BSG中的Cu2 +和H +浓度分配系数的变化不是单调的。还证明,与原料BSG相比,盐酸溶液中的调节BSG将吸附效率提高了约40%,这是一种重要的结论。用Na +和Ca2 +抗衡离子的官能团的饱和度,其具有弱与官能团的亲和力,不提高Cu2 +吸附效率;然而,它显着提高了氢阳离子吸附的效率,因此,随后的溶液pH增加。由于官能团的类似化学特性,可以应用分析以优化其他生物吸收剂中的吸附过程。已经证实,离子交换是天然吸附剂中重金属吸附的主要机制。

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