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REE(Ⅲ) recovery from spent NiMH batteries as REE double sulfates and their simultaneous hydrolysis and wet-oxidation

机译:Ree(Ⅲ)从废NiMH电池中回收作为REE双硫酸盐及其同时水解和湿氧化

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摘要

Efficient recovery of REEs present in the battery waste is a modern problem that has proven to be difficult to solve in an efficient manner. The raw material investigated in the current study is mixed alkaline rare earth element (REE) double sulfate (DS) precipitate, originating from the sulfuric acid leachate of nickel-metal hydride battery (NiMH) waste. Typically, REE can be precipitated as a mixture of REE double sulfates, however the real challenge is the separation of REEs from each other's into pure fraction. The study elucidates the process by which the DS are transformed into hydroxides with simultaneous in-situ conversion of Ce(Ⅲ) to Ce(Ⅳ) by air. Air flow rate (0-1 L/h), temperature (30-60 °C), liquid-solid ratio (L/S, 12.5-100 g/L), 3REE/NaOH mol ratio (1-1.6) and time (60-240 min) were varied in the study of oxidation and double sulfate conversion. Best oxidation achieved was 93% along near-complete dissociation of double sulfate matrix (52767 ppm Na reduced to 48 ppm Na). After parameter optimization, a larger batch was produced to conduct selective dissolution of REE(Ⅲ) into HNO_3 media, leaving concentrated impure Ce(OH)_4 as the end product.
机译:在电池废物中存在的REES的有效恢复是一种现代问题,已被证明难以以有效的方式解决。研究当前研究中研究的原料是混合碱性稀土元素(REE)双硫酸盐(DS)沉淀,来自镍金属氢化物电池(NiMH)废物的硫酸渗滤液。通常,REE可以作为REE双硫酸盐的混合物沉淀,然而真正的挑战是将REES与彼此分离成纯分数。该研究阐明了将DS转化为氢氧化物的方法,通过空气同时原位转化为Ce(Ⅲ)至Ce(Ⅳ)。空气流速(0-1L / h),温度(30-60°C),液态比(L / S,12.5-100g / L),3REE / NaOH Mol比(1-1.6)和时间(60-240分钟)在研究氧化和双硫酸盐转化的研究中变化。实现的最佳氧化沿着双硫酸盐基质的近完全解离93%(52767ppm Na减少至48ppm Na)。在参数优化之后,制备较大的批次以将REE(Ⅲ)的选择性溶解转化为HNO_3培养基,将浓缩的纯度CE(OH)_4作为最终产品。

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  • 来源
    《Waste Management》 |2020年第4期|66-73|共8页
  • 作者单位

    Aalto University School of Chemical Engineering Department of Chemical and Metallurgical Engineering P.O. Box 16200 Aalto 00076 Espoo Finland;

    Aalto University School of Chemical Engineering Department of Chemical and Metallurgical Engineering P.O. Box 16200 Aalto 00076 Espoo Finland;

    Aalto University School of Chemical Engineering Department of Chemical and Metallurgical Engineering P.O. Box 16200 Aalto 00076 Espoo Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cerium; Wet oxidation; Selective dissolution; Spent NiMH batteries;

    机译:铈;湿氧化;选择性溶解;花了NiMH电池;

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