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Zeolite and bentonite as nickel sequestrants in carbonation lime coming from the sugar industry

机译:沸石和膨润土作为碳酸化石灰的镍螯合剂来自糖业

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摘要

A laboratory trial was performed to test the sequestration capacity of two minerals (bentonite and zeolite) at three initial concentrations (2.5, 5 and 10%) in order to counter water-soluble nickel (Ni) exceeding the Italian legal limit (10 μg L~(-1)) in carbonation lime disposed of in a field and sampled for an 85-day lab study. The results show a noticeable reduction in water-soluble and bioavailable Ni in lime after the addition of sequestrants, especially at the dose of 5% bentonite or zeolite, thereby indicating a "ceiling effect" of the sequestrant, i.e., an increasing dose could reduce the adsorption capacity and be less effective. The alkaline pH and the presence of organic matter could be the main factors affecting the good performance of sequestrant addition, causing an increase in the negative charge of the organic and mineral colloids and the formation of unavailable Ni precipitates. The 85-day experiment seems to be sufficient to reach an adsorption equilibrium for water-soluble nickel, while for the bioavailable form a longer period appears to be necessary.
机译:进行实验室试验以在三个初始浓度(2.5,5和10%)下测试两种矿物(膨润土和沸石)的螯合能力,以抵抗超过意大利法律限制的水溶性镍(Ni)(10μgL 〜(-1))在碳酸化石灰中,在一个领域处理并对85天的实验室研究进行采样。结果表明,在加入螯合剂之后,尤其是在5%膨润土或沸石的剂量后,石灰中的水溶性和生物可利用的Ni中明显减少,从而表示螯合剂的“天花板效应”,即增加剂量可以减少吸附容量并减少效率。碱性pH和有机质的存在可能是影响螯合剂添加良好性能的主要因素,导致有机和矿物胶体的负电荷增加,并且形成不可用的Ni沉淀物。 85天的实验似乎足以达到水溶性镍的吸附平衡,而对于生物可利用的形式,较长的时间似乎是必要的。

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