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Supercritical CO2 extraction of organic carbonate-based electrolytes of lithium-ion batteries

机译:超临界CO2萃取锂离子电池有机碳酸酯类电解质

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摘要

Supercritical fluid extraction (SFE) was applied to reclaim organic carbonate-based electrolytes of spent lithium-ion batteries. To optimize the SFE operational conditions, the response surface methodology was adopted. The parameters studied were as follow: pressure, ranging from 15 to 35 MPa; temperature, between 40 degrees C and 50 degrees C and static extraction time, within 45 to 75 min. The optimal conditions for extraction yield were 23 MPa, 40 degrees C and was dynamically extracted for 45 min. Extracts were collected at a constant flow rate of 4.0 L min(-1). Under these conditions, the extraction yield was 85.07 +/- 0.36%, which matched with the predicted value. Furthermore, the components of the extracts were systematically characterized and analyzed by using FT-IR, GC-MS and ICP-OES, and the effect of SFE on the electrolyte reclamation was evaluated. The results suggest that the SFE is an effective method for recovery of organic carbonate-based electrolytes from spent lithium-ion batteries, to prevent environmental pollution and resource waste.
机译:超临界流体萃取(SFE)用于回收废锂离子电池的有机碳酸酯类电解质。为了优化SFE操作条件,采用了响应面方法。研究的参数如下:压力为15至35 MPa;温度介于40摄氏度至50摄氏度之间,静态提取时间为45至75分钟。提取得率的最佳条件为23 MPa,40℃,动态提取45分钟。提取液以4.0 L min(-1)的恒定流速收集。在这些条件下,提取率为85.07 +/- 0.36%,与预测值相符。此外,使用FT-IR,GC-MS和ICP-OES对提取物的成分进行了系统地表征和分析,并评估了SFE对电解质回收的影响。结果表明,SFE是从废锂离子电池中回收有机碳酸酯类电解质的有效方法,可防止环境污染和资源浪费。

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