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A review of current progress of supercritical fluid technologies for e-waste treatment

机译:用于电子废物处理的超临界流体技术进步述评

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摘要

This paper focuses on current progress of supercritical fluid (SCF) technology for e-waste treatment through reviewing characteristics and challenges of existing technologies. With the high-speed development of science and technology, electronic and electric equipment continually upgrades and updates, which bring a series of problems on dealing with the e-waste. The most serious problem is that the harmless disposal of halogen flame retardants and refractory polymers in e-waste is difficult. In recent years, the recycling technologies for e-waste has entered a new stage through tireless efforts of the researchers. Compared with the common recycling technologies like pyrolysis and acid leaching, SCF technologies have great advantages in the field of environment, without air or water pollution risks. Supercritical fluids such as supercritical water and supercritical carbon dioxide are sustainable green solvents as well as highly promising reaction mediums. The principles, operation procedures and optimized parameters of SCF treatment are discussed and summarized in this paper. Furthermore, SCF technologies applied in the field of e-waste recycling have also achieved satisfactory results. Significant progress has been made in the detoxification of e-waste and removal of refractory polymers by SCF technologies. The dechlorination efficiency and debromination efficiency has been reported to be over 90%. The base metals, the precious metals, and other inorganic materials were all reported to be recovered from e-waste by SCF technologies with a recovery rate of more than 93%. Common challenges in SCF process like corrosion and salt precipitation also came up with some propose solutions. Hence, the application of SCF technology in e-waste treatment demonstrates green reaction and resource recovery with significant economy and environment perspectives. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文通过审查现有技术的特点和挑战,侧重于超临界流体(SCF)技术对电子废物处理的进展。随着科学技术的高速发展,电子和电气设备不断升级和更新,在处理电子废物时带来了一系列问题。最严重的问题是,卤素阻燃剂和耐火聚合物在电子废物中的无害处理是困难的。近年来,通过研究人员的不懈努力,电子废物的回收技术已经进入了新的阶段。与热解和酸浸出等共同的回收技术相比,SCF技术在环境领域具有很大的优势,无空气或水污染风险。超临界水和超临界二氧化碳的超临界流体是可持续的绿色溶剂以及高度有前途的反应介质。本文讨论和总结了SCF处理的原理,操作程序和优化参数。此外,在电子废物回收领域应用的SCF技术也取得了令人满意的结果。通过SCF技术解毒,通过SCF技术取消耐火聚合物的解毒,取得了重大进展。据报道,脱氯效率和脱溴化效率超过90%。据报道,基础金属,贵金属和其他无机材料被SCF技术从电子废物中回收,恢复率超过93%。 SCF过程中的共同挑战,如腐蚀和盐水降水也提出了一些提出的解决方案。因此,SCF技术在电子废物处理中的应用证明了具有重要经济和环境的观点的绿色反应和资源恢复。 (c)2019 Elsevier Ltd.保留所有权利。

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