ŁUKASIEWICZ Research Network-Industrial Chemistry Institute, Rydygiera 8 Str., 01-793 Warsaw, Poland.
Molecules. 2022 Aug 5;27(15):4984. doi: 10.3390/molecules27154984.
The extraction of metals from waste printed circuit boards (WPCBs) with ionic liquids (ILs), Deep Eutectic Solvents (DESs) and organophosphorous-based acid (Cyanex 272) has been presented. The study was undertaken to assess the effectiveness of the application of the new leaching liquids, and the new method of extraction of metals from the leachate and the solid phase with or without the leaching process. Solvent extraction from the liquid leachate phase has been studied in detail with popular ILs, such as tetraoctylphosphonium bromide, {[P][Br] and tributyltetradecylphosphonium chloride, [P][Cl] using Aqueous Biphasic Systems (ABS) method. Trihexyltetradecylphosphonium bis(2,4,4-trimethylpentyl) phosphinate, [P][Cyanex272], ([P][BTMPP]), trihexyltetradecylphosphonium thiocyanate, [P][SCN], methyltrioctylammonium chloride (Aliquat 336), as well as bis(2,4,4-trimethylpentyl)phosphinic acid (Cyanex 272) were also used in the extraction of metals from the leachate. Two DESs (1) {choline chloride + lactic acid, 1:2} and (2) {choline chloride + malonic acid, 1:1} were used in the extraction of metals from the solid phase. The extraction behavior of metals with DESs was compared with that performed with three new bi-functional ILs: didecyldimethylammonium salicylate, [N][Sal], didecyldimethylammonium bis(2-ethylhexyl) phosphate, [N][D2EHPA], and didecyldimethylammonium bis(2,4,4-trimethylpentyl) phosphinate, [N][Cyanex272]. The [P][Cyanex272]/toluene and (Cyanex 272 + diethyl phosphite ester) mixtures exhibited a high extraction efficiency of about 50-90% for different metal ions from the leachate. High extraction efficiency of about 90-100 wt% with the ABS method using the mixture {[P][Br], or [P][Cl] + NaCl + HO + post-leaching liquid phase} was obtained. The DES 2 revealed the efficiency of copper extraction, = 15.8 wt% and silver, = 20.1 wt% at pH = 5 from the solid phase after the thermal pre-treatment and acid leaching. The solid phase extraction efficiency after thermal pre-treatment only was ( = 9.6 wt% and = 14.2 wt%). The use of new bi-functional ILs did not improve the efficiency of the extraction of metal ions from the solid phase. Process factors such as solvent concentration, extraction additives, stripping and leaching methods, temperature, pH and liquid/solid as well as organic/water ratios were under control. For all the systems, the selectivity and distribution ratios were described. The proposed extraction processes can represent alternative paths in new technologies for recovering metals from electronic secondary waste.
从废印刷电路板 (WPCBs) 中提取金属的离子液体 (ILs)、深共晶溶剂 (DESs) 和有机磷基酸 (Cyanex 272) 已被提出。本研究旨在评估新浸出液的应用效果,以及从浸出液和固相中提取金属的新方法,无论是否进行浸出过程。使用流行的 ILs,如四辛基溴化磷、[P][Br] 和三丁基十四烷基氯化磷、[P][Cl],通过水两相体系 (ABS) 方法详细研究了溶剂从液体浸出液相中的萃取。三己基十四烷基膦双(2,4,4-三甲基戊基)膦酸酯、[P][Cyanex272]、([P][BTMPP])、三己基十四烷基硫氰酸酯、[P][SCN]、甲基三辛基氯化铵 (Aliquat 336) 以及双(2,4,4-三甲基戊基)膦酸酯 (Cyanex 272) 也用于从浸出液中提取金属。两种 DESs(1) {胆碱氯化物+乳酸,1:2} 和 (2) {胆碱氯化物+丙二酸,1:1} 用于从固相中提取金属。将 DESs 的萃取行为与三种新的双功能 ILs 进行了比较:癸基二甲基水杨酸盐、[N][Sal]、癸基二甲基磷酸二(2-乙基己基)酯、[N][D2EHPA] 和癸基二甲基膦酸二(2,4,4-三甲基戊基)酯、[N][Cyanex272]。[P][Cyanex272]/甲苯和 (Cyanex 272 + 二乙基膦酸酯) 混合物对不同金属离子的萃取效率约为 50-90%。使用混合物 {[P][Br] 或 [P][Cl] + NaCl + HO + 浸出后液} 通过 ABS 方法获得了约 90-100wt%的高萃取效率。DES 2 在热预处理和酸浸后从固相中以 15.8wt%和 20.1wt%的效率提取铜和银,pH 值为 5。仅进行热预处理时的固相萃取效率为 9.6wt%和 14.2wt%。使用新的双功能 ILs 并没有提高从固相中提取金属离子的效率。控制了溶剂浓度、萃取添加剂、反萃和浸出方法、温度、pH 值以及液/固比和有机/水比等工艺因素。对所有系统均描述了选择性和分配比。所提出的提取工艺可代表从电子二次废物中回收金属的新技术中的替代途径。