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首页> 外文期刊>Industrial & Engineering Chemistry Research >Optimum pH for Cr6+Co-removal with mixed Cu2+, Zn2+, and Ni2+ precipitation
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Optimum pH for Cr6+Co-removal with mixed Cu2+, Zn2+, and Ni2+ precipitation

机译:最佳pH值Cr6 + Co-removal Cu2 +混合,Zn2 +, Ni2 +沉淀

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摘要

It is advisable to co-remove Cr(VI) with available Cu(II), Zn(II), and Ni(II) since they coexist in most plating wastewater. Previous studies showed that coprecipitation and adsorption are the main mechanisms contributable to Cr(VI) co-removal with Cu(II) precipitation, and both are highly pH dependent. This study presents the effect of pH on Cr(VI) co-removal with mixed metal precipitation in batch tests and also in a continuous compact system. Batch tests indicate that a maximum of 46.8 mg L-1 Cr(VI) was co-removed with the precipitation of Cu(II), Zn(II), and Ni(II), each 150 mg L-1, at pH of 7.0-7.3. However, co-removal of Cr(VI) decreased significantly with further pH increasing. Therefore in the continuous system, a two-stage nucleated precipitation technology was designed with the first stage being operated at around pH 7.2 to obtain maximum Cr(VI) co-removal and the second stage at around pH 9.2 to achieve further Cr(VI) co-removal with Zn(II) and Ni(II) precipitation.
机译:建议co-remove铬(VI)可用铜(II)、锌(II)和镍(II)因为他们共存大多数的电镀废水。共同沉淀和吸附是主要的机制contributable铬(VI) co-removal与铜(II)沉淀,都是高pH值相关的。金属铬(VI) co-removal喜忧参半降水在批量测试也连续紧凑的系统。最大46.8毫克的l - 1铬(VI)co-removed降水的铜(II)、锌(II)和镍(II)、l - 1每150毫克的pH值7.0 - -7.3。pH值显著进一步增加。因此在连续系统中,一个两级有核沉淀技术设计第一阶段是在pH值7.2获得最大的铬(VI) co-removal和第二阶段在pH值9.2进一步实现铬(VI) co-removal锌(II)和镍(II)降水。

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