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用于钯回收的功能化电纺纤维的设计与制备

Design and Production of Functionalized Electrospun Fibers for Palladium Recovery.

作者信息

Di Bonito Luigi Piero, Kyriacou Paraskevas, Di Colandrea Antonio, Di Natale Francesco, Ruoppolo Giovanna, Krasia-Christoforou Theodora

机构信息

Dipartimento di Matematica e Fisica, Università degli Studi della Campania "Luigi Vanvitelli", Viale Abramo Lincoln 5, 81100 Caserta, Italy.

Dipartimento di Ingegneria Chimica, dei Materiali e della Produzione Industriale Intensification of Separation Processes for the Environment and the Circular Economy Laboratory (STEEL), Università degli Studi di Napoli "Federico II", Piazzale Tecchio 80, 80125 Napoli, Italy.

出版信息

ACS Appl Polym Mater. 2024 Aug 5;6(16):9406-9419. doi: 10.1021/acsapm.4c00324. eCollection 2024 Aug 23.

Abstract

Adsorption stands out as a leading wastewater treatment method for ion removal or recovery. Polymeric fibers, notably electrospun ones, are gaining prominence due to their high capacity and easy recovery. Electrospinning offers a cost-effective means to produce fibers with a large surface area and high adsorption capacity. These fibers can be further functionalized with chemical substances acting as specific ligands for metal ions, bolstering their adsorption capabilities. In this study, dithioester-functionalized electrospun fibers were synthesized as an alternative to conventional sorbents for palladium recovery from acidic chloride solutions, similar to those used in hydrometallurgical processes for platinum group metal recovery (Pd, Pt, Rh···) from spent catalysts. Fibers with identical chemical composition but varying morphology were examined to assess their impact on palladium adsorption efficiency (i.e., beads-free and beads-on-string morphologies). Experimental investigations involved model solutions with varying palladium concentration, temperature, acidity (adjusted with HCl content), and salinity (adjusted with NaCl), utilizing both pure and dithioester-functionalized fibers. Experimental results demonstrate enhanced adsorption efficiency at lower temperatures and in 0.1 M HCl, with a negligible influence from solution salinity. Moreover, both pure polymeric and dithioester-functionalized electrospun fibers exhibit highly efficient palladium recovery. Furthermore, under optimal conditions, starting from an 80 mg/L palladium solution, a 95% recovery of palladium can be achieved with a sorbent dosage below 4 g/L of functionalized electrospun fibers. The adsorption data are well described by the Langmuir isotherm model for the pure polymeric fibers. At the same time, the contribution of dithioesters has been separately accounted for to describe the behavior of functionalized electrospun fibers. Thermal recovery of palladium from the spent sorbents has also been investigated.

摘要

吸附作为一种主要的废水处理方法,在离子去除或回收方面表现突出。聚合物纤维,尤其是电纺纤维,因其高容量和易于回收而日益受到关注。静电纺丝提供了一种经济高效的方法来生产具有大表面积和高吸附容量的纤维。这些纤维可以用作为金属离子特定配体的化学物质进一步功能化,从而增强其吸附能力。在本研究中,合成了二硫酯功能化的电纺纤维,作为从酸性氯化物溶液中回收钯的传统吸附剂的替代品,类似于湿法冶金过程中从废催化剂中回收铂族金属(钯、铂、铑···)所使用的溶液。研究了具有相同化学成分但形态不同的纤维(即无珠和串珠形态),以评估它们对钯吸附效率的影响。实验研究涉及使用纯纤维和二硫酯功能化纤维,对不同钯浓度、温度、酸度(用盐酸含量调节)和盐度(用氯化钠调节)的模型溶液进行研究。实验结果表明,在较低温度和0.1 M盐酸中吸附效率提高,溶液盐度的影响可忽略不计。此外,纯聚合物纤维和二硫酯功能化的电纺纤维都表现出高效的钯回收能力。此外,在最佳条件下,从80 mg/L的钯溶液开始,使用低于4 g/L的功能化电纺纤维作为吸附剂,可实现95%的钯回收率。纯聚合物纤维的吸附数据可以很好地用朗缪尔等温线模型描述。同时,已分别考虑二硫酯的作用来描述功能化电纺纤维的行为。还研究了从废吸附剂中热回收钯的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b95/11348797/85b2cd2836b9/ap4c00324_0001.jpg

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