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Adsorption of Zn~(2+) and Ni~(2+) in a binary aqueous solution by biosorbents derived from sawdust and water hyacinth (Eichhornia crassipes)

机译:锯末和水葫芦(凤眼凤梨)的生物吸附剂对二元水溶液中Zn〜(2+)和Ni〜(2+)的吸附

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The Zn~(2+) and Ni~(2+) adsorption capacities of six biosorbents derived from water hyacinth (Eichhornia crassipes) (WH) and sawdust (SD) were investigated, with activated carbon as the control. The biosorbents were raw biomass (WH, SD), charred WH (BWH) and SD and sulphonated bio-chars of WH and SD. The effect of the initial solution pH and Zn~(2+) and Ni~(2+) concentrations on adsorption capacity was studied, and adsorption isotherms for Zn~(2+) and Ni~(2+) evaluated. The initial solution pH significantly influenced adsorption (p<0.05) but the relationship was generally nonlinear. Zn~(2+) suppressed Ni~(2+) adsorption on all biosorbents. The adsorption capacities of the biosorbents were statistically (p ≤ 0.05) similar to or higher than that of activated carbon. The effects of pyrolysis and bio-char sulphonation on adsorption were inconsistent and dependent on biomass type; in most cases bio-char was a better biosorbent than the original biomass, while sulphonation resulted in less or comparable adsorption. Adsorption data obeyed at least one of three isotherms (linear, Langmuir and Freundlich) (r~2 = 0.90-0.995, p< 0.05). The study revealed that low-cost biosorbents may be used as alternatives to activated carbon in applications including selective separation of Zn~(2+) from multi-metal ion solutions containing Ni~(2+), and water and wastewater treatment.
机译:以风信子(Eichhornia crassipes)(WH)和木屑(SD)为原料,研究了六种生物吸附剂对Zn〜(2+)和Ni〜(2+)的吸附能力。生物吸附剂为原始生物质(WH,SD),焦化的WH(BWH)和SD以及WH和SD的磺化生物炭。研究了初始溶液的pH和Zn〜(2+)和Ni〜(2+)浓度对吸附容量的影响,并评价了Zn〜(2+)和Ni〜(2+)的吸附等温线。初始溶液的pH值显着影响吸附(p <0.05),但该关系通常是非线性的。 Zn〜(2+)抑制了Ni〜(2+)在所有生物吸附剂上的吸附。统计上,生物吸附剂的吸附能力与活性炭相似或更高(p≤0.05)。热解和生物炭磺化对吸附的影响不一致,并取决于生物质类型。在大多数情况下,生物炭比原始生物质具有更好的生物吸附性,而磺化则导致较少或相当的吸附。吸附数据服从三个等温线(线性,Langmuir和Freundlich)中的至少一个(r〜2 = 0.90-0.995,p <0.05)。研究表明,低成本生物吸附剂可以用作活性炭的替代品,包括从含有Ni〜(2+)的多金属离子溶液中选择性分离Zn〜(2+),水和废水处理等应用。

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