This work presents a simple and accurate method for the fast sequential determination of Rh, Pd, and Pt in spent automotive catalysts and e-wastes using high-resolution continuum source flame atomic absorption spectrometry (HR-CS FAAS). Extensive research was carried out in model systems on the impact of potential interfering substances on analyte's signals measured in two types of flame (air-CH and NO-CH). Mutual analyte interactions were also taken into account. Different background corrections offered by the HR-CS AAS spectrometer were tested to obtain interference-free analyte signals and the best detectability. Using an air-CH flame and 1 % La solution as a spectrochemical buffer provided good sensitivity and accurate determinations of Rh, Pd, and Pt using a simple calibration graph. Microwave-assisted leaching of PGE from waste samples with aqua regia at 240 °C for 60 min efficiently leached all target metals, which significantly simplified and shortened the sample preparation step. The detectability of the method (detection limit of 0.4, 0.6, and 5 mg kg for Rh, Pd, and Pt, respectively) and precision (< 7 %) were satisfactory. The accuracy of the method was confirmed by analysis of certified reference materials (spent automotive catalyst (ERM-EB504), electronic scrap (BAM-M505a)), and calculated zeta score values. The recoveries for Rh, Pd, and Pt in ERM-EB504 were 93, 101, and 96 %, respectively, and for Pd in BAM-M505a, 97 %. The developed method can be used to assess the value of secondary raw materials, such as various types of spent catalysts and e-waste containing Rh, Pd, and Pt.
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http://dx.doi.org/10.1016/j.talanta.2024.126894 | DOI Listing |
Adv Mater
January 2025
Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen, 518055, China.
Among direct recycling methods for spent lithium-ion batteries, solid-state regeneration is the route with minimal bottlenecks for industrial application and is highly compatible with the current industrial cathode materials production processes. However, surface structure degradation and interfacial impurities of spent cathodes significantly hinder Li replenishment during restoration. Herein, we propose a unique advanced oxidation strategy that leverages the inherent catalytic activity of spent layered cathode materials to address these challenges.
View Article and Find Full Text PDFChem Asian J
January 2025
The University of Melbourne, Melbourne TrACEES Platform, School of Chemistry, 3010, Parkville, AUSTRALIA.
Platinum group metals (PGMs) are increasingly recycled from spent automotive catalysts due to their scarcity in nature. Many studies were developed using different leaching reagents in order to achieve greener benefits and reduce environmental pollution. This article reports for the first time direct comparison of leaching reagents on the efficiency of PGMs using microwave (MW) assisted heating.
View Article and Find Full Text PDFJ Environ Manage
November 2024
Graduate Institute of Environmental Engineering, National Taiwan University, Taipei, 106319, Taiwan; Advanced Research Center for Green Materials Science and Technology, National Taiwan University, Taipei, 106319, Taiwan. Electronic address:
Platinum (Pt) and palladium (Pd) are commonly integrated into automotive catalytic converters to convert harmful emissions into relatively safer substances. Their scarcity has resulted in the rapid development of an industry focused on their recovery. Polyamide 6 (PA6), a microplastic pollutant, is a common industrial material.
View Article and Find Full Text PDFSci Rep
October 2024
Department of Health Hazards Surveillance, Hangzhou Center For Disease Control and Prevention (Hangzhou Health Supervision Institution), No. 568 Mingshi Road, Hangzhou, 310021, Zhejiang, China.
To analyze the prevalence and influencing factors of myopia among children and adolescents in Hangzhou city, and provide ideas for the formulation of myopia prevention and control measures. A cross-sectional school-based study using stratified cluster random sampling method was used to select 31,880 students from 113 schools in Hangzhou city. Myopia screening and questionnaires on the influencing factors of poor visual acuity were carried out.
View Article and Find Full Text PDFEnviron Technol
September 2024
Engineering Department, Qingdao Qingli Environmental Protectionquipment Co, LTD, Jiaozhou, People's Republic of China.
Automotive catalysts are the largest consumption source of platinum group metals (PGMs). When it exceeds its useful life, spent automotive catalysts (SACs) are the most important secondary PGMs resource and are classified as hazardous solid waste. Recycling SAC is a promising solution to alleviate the shortage of PGMs resources for projects and reduce environmental pollution.
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