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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Efficient and Sustainable Removal of Magnesium from Brines for Lithium/Magnesium Separation Using Binary Extractants
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Efficient and Sustainable Removal of Magnesium from Brines for Lithium/Magnesium Separation Using Binary Extractants

机译:使用二元萃取剂从碳水化合物中从锂/镁分离的高效和可持续去除镁

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摘要

Lithium is becoming increasingly important due to its essential role in lithium-ion batteries. Over 70% of the global lithium resources are found in salt lake brines, but lithium is always accompanied by magnesium. It is a challenge to efficiently separate lithium from magnesium in brines. The state-of-the-art processes for lithium/magnesium separation either consume large quantities of chemicals and generate large amounts of waste or are energy-intensive. In this study, we develop a sustainable solvent extraction process based on binary extractants to efficiently separate lithium and magnesium. A binary extractant composed of Aliquat 336 and Versatic Acid 10, [A336][V10], was prepared and investigated for removal of magnesium from both a (synthetic) concentrated brine (106 g L-1 Mg and 10 g L-1 Li) and an (synthetic) original brine (1S g L-1 Mg, 80 g L-1 Na and 0.2 g L-1 Li). Through batch counter-current experiments and mixer-settler experiments, it was found that Li). Through batch counter-current experiments and mixer settler experiments, it was found that [A336] [V10] is able to quantitatively remove magnesium from the original brine in three continuous counter-current extraction stages with as little as about 10% coextraction of lithium. The loaded organic phase can be stripped and regenerated by water. The whole process (extraction and stripping) does not consume any acid or base but makes use of the differences in the chloride concentration during extraction and stripping. This process is an environmentally friendly alternative to the state-of-the-art processes and represents a step forward in the sustainable production of Li2CO3 from brines.
机译:由于其在锂离子电池中的基本作用,锂正在变得越来越重要。在盐湖盐水中发现了超过70%的全球锂资源,但锂总是伴随着镁。有效地将盐水中镁与盐水中的锂分离是挑战。锂/镁分离的最先进的方法消耗大量的化学品,并产生大量废物或能量密集。在这项研究中,我们基于二元萃取剂开发可持续的溶剂提取过程,以有效地分离锂和镁。制备由Aliquat 336和Ussatic酸10组成的二元萃取剂,并研究并研究了从(合成的)浓盐水(106g L-1mg和10g L-1 Li)中除去镁(合成的)原始盐水(1s g l-1mg,80g l-1na和0.2g l-1 li)。通过批量逆流实验和混合器定位器实验,发现LI)。通过批量逆流实验和混合器沉降器实验,发现[A336] [V10]能够在三个连续的逆流提取阶段中定量地从原有的盐水中取出镁,只有约10%的锂的共扣。可以用水剥离和再生负载的有机相。整个过程(提取和汽提)不会消耗任何酸或碱,而是在提取和汽提时使用氯化物浓度的差异。该过程是对最先进的过程的环保替代方案,并且代表了来自盐水的Li2Co3的可持续生产的前进。

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    Katholieke Univ Leuven Dept Chem Celestijnenlaan 200F Bus 2404 B-3001 Heverlee Flemish Brabant Belgium;

    Katholieke Univ Leuven Dept Chem Celestijnenlaan 200F Bus 2404 B-3001 Heverlee Flemish Brabant Belgium;

    Katholieke Univ Leuven Dept Chem Celestijnenlaan 200F Bus 2404 B-3001 Heverlee Flemish Brabant Belgium;

    Katholieke Univ Leuven Dept Chem Celestijnenlaan 200F Bus 2404 B-3001 Heverlee Flemish Brabant Belgium;

    Katholieke Univ Leuven Dept Chem Celestijnenlaan 200F Bus 2404 B-3001 Heverlee Flemish Brabant Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    binary extractant; solvent extraction; lithium; magnesium; brine;

    机译:二元萃取剂;溶剂萃取;锂;镁;盐水;

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