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Novel 3-Hydroxy-2-Naphthoate-Based Task-Specific Ionic Liquids for an Efficient Extraction of Heavy Metals

机译:新型基于3-羟基-2-萘甲酸的特定任务离子液体可有效萃取重金属

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摘要

Ionic liquids (ILs) are per definition salts with melting points below 100°C and might be green alternatives for the extraction of heavy metals from aqueous solutions due to their favorable environmental and physico-chemical properties. Partial solution during extraction, so-called leaching, however, limits their applicability. The present study synthesizes three novel ammonium and phosphonium ILs based on 3-hydroxy-2-naphthoic acid—trihexyltetradecylphosphonium—([P66614]), methyltrioctylphosphonium—([P1888]), and methyltrioctylammonium 3-hydroxy-2-naphthoate ([N1888][HNA])—by a deprotonation-metathesis route. The aims were to improve stability during extraction while still achieving high selectivity toward heavy metal ions, as well as to study the impact of different alkyl chains and the central atom of the cation on physico-chemical properties, extraction efficacy, and leaching. Extraction capabilities for the seven heavy metals Ag, Cd, Co, Cu, Mn, Ni, and Pb were studied in pure water at pH 8.0. Further experiments were conducted in water containing 30 g L−1 NaCl to simulate a seawater matrix and/or 30 mg L−1 humic acids, as well as metal-spiked natural water samples. All three ILs showed extraction efficacies ≥90% for Cu and Pb after 24 h. Overall, extraction efficacies for Ag, Cd, Cu, and Pb were highest for drinking water samples. Ag and Cd extraction was increased by up to 41% in (hyper-) saline samples using IL [P66614][HNA] compared with pure water samples. Leaching values were reduced down to 0.07% loss of the applied IL, which can be attributed to the hydrophobic character of 3-hydroxy-2-naphthoate. Our results represent a positive development toward a greener extraction of heavy metals from natural waters.
机译:离子液体(ILs)定义为熔点低于100°C的盐,由于其良好的环境和物理化学性质,可能是从水溶液中提取重金属的绿色替代品。然而,萃取过程中的部分溶液,即所谓的浸出,限制了它们的适用性。本研究基于3-羟基-2-萘甲酸三己基十四烷基phosph-([P66614]),甲基三辛基phosph-([P1888])和甲基三辛基铵3-羟基-2-萘甲酸([N1888])合成了三种新型铵和phospho离子液体[HNA])-通过去质子复分解途径。目的是提高萃取过程中的稳定性,同时仍对重金属离子实现高选择性,并研究不同烷基链和阳离子中心原子对理化性质,萃取效率和浸出的影响。在pH 8.0的纯水中研究了七种重金属Ag,Cd,Co,Cu,Mn,Ni和Pb的萃取能力。在包含30 g L -1 NaCl的水中进行了进一步的实验,以模拟海水基质和/或30 mg L -1 腐殖酸以及掺有金属的天然水样本。 24小时后,所有三个离子液体对铜和铅的萃取效率均≥90%。总体而言,饮用水样品中银,镉,铜和铅的提取效率最高。与纯水样品相比,使用IL [P66614] [HNA]在(高)盐度样品中提取Ag和Cd最多可增加41%。浸出值降低至所用IL的0.07%损失,这可归因于3-羟基-2-萘甲酸的疏水性。我们的结果代表了从天然水中绿色提取重金属的积极进展。

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