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Recovery of rare earths from industrial wastewater using extraction-precipitation strategy for resource and environmental concerns

机译:利用提取 - 降水策略对资源和环境问题的提取策略回收来自工业废水的稀土

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摘要

Unlike the classic separation technologies, an extraction-precipitation strategy has been developed for the recovery of rare earth (RE) and from industrial wastewater using a novel phenoxycarboxylic acid of 2-(4-butoxyphenoxy) acetic acid (BPAA). Compared with 4-(4-butoxyphenoxy) butanoic acid (BPBA) and 2-(4-(benzyloxy) phenoxy) acetic acid (BZAA), BPAA enabled minimal reagent/equipment/energy uses in each step of the sustainable process. It was successfully used to enrich REEs with the concentration of 159 mg/L, and the enrichment factor of 189 times was reached. The formed precipitate sizes were bigger than the REEs precipitates from industrial precipitants, i.e., oxalic acid, ammonium hydrogencarbonate, CaO and MgO, which could be settled quickly within 1 min. Compared with COD value of 432 mg/L and 725 mg/L in traditional liquid-liquid extraction using P507 and NA, the COD value of 45 mg/L from BPAA using extraction-precipitation strategy were much lower. It is worthwhile mentioning that BPAA has revealed some advantages in the extraction-precipitation process, i.e., higher efficiency, larger processing capacity, lower energy consumption and simple process. The extraction-precipitation strategy may be suitable for large-scale applications.
机译:与经典的分离技术不同,已经开发出提取沉淀策略,用于使用2-(4-丁氧基苯氧羰基)乙酸(BPAA)的新苯氧基羧酸从稀土(RE)和工业废水中恢复。与4-(4-丁氧基苯氧基)丁酸(BPBA)和2-(4-(苄氧基)苯氧基)乙酸(BZAA),BPAA在可持续过程的每一步中使用BPAA的最小试剂/设备/能量。它成功地用于浓度为159mg / L的浓度,达到189次的富集因子。形成的沉淀尺寸大于工业沉淀剂的REES沉淀,即草酸,碳酸氢铵,CaO和MgO,可以在1分钟内快速稳定。与使用P507和Na的传统液 - 液萃取中的COD值432mg / L和725mg / L的鳕鱼值相比,使用萃取沉淀策略的BPAA 45mg / L的COD值远低得多。值得一提的是,BPAA在提取沉淀过程中揭示了一些优点,即效率更高,加工能力较大,降低能耗和简单的过程。提取沉淀策略可能适用于大规模应用。

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