(安徽工業(yè)大學(xué) 冶金工程學(xué)院,馬鞍山 243032)
摘 要: 建立以綠色、無毒、低熔點(diǎn)的金屬Bi為捕集劑,選取Na2O-SiO2-Al2O3-Bi2O3渣型的火法熔煉新工藝,從廢汽車催化劑中回收鉑族金屬,研究熔渣堿度、金屬Bi質(zhì)量、熔煉溫度、捕集時(shí)間和硅硼質(zhì)量比等因素對Pd、Pt、Rh捕集行為的影響。熔渣堿度0.71、金屬Bi 1.9 g、硅硼質(zhì)量比0.94:1、1100 ℃熔煉10 min的優(yōu)化條件下,熔渣易分離、貴鉍表面光亮,Pd、Pt、Rh的回收率分別為98.90%、95.02%、97.00%,熔渣經(jīng)二次熔煉后,Pd、Pt、Rh的總回收率均大于99%;熔煉過程中Pd、Pt、Rh優(yōu)先被還原,以原子態(tài)或原子團(tuán)簇形態(tài)與金屬Bi鍵合,可形成α-Bi2Pd、Bi2Pt、Bi4Rh等二元金屬間化合物,有利于降低體系自由能,實(shí)現(xiàn)金屬Bi對Pd、Pt、Rh的良好捕集。該工藝的成功開發(fā)為廢汽車催化劑中鉑族金屬的綜合回收開辟了一條新思路。
關(guān)鍵字: 鉍;廢汽車催化劑;火法捕集;鈀;鉑;銠
(School of Metallurgical Engineering, Anhui University of Technology, Ma’anshan 243032, China)
Abstract:A novel process for the recovery of platinum group metals from spent automotive catalysts, of which Bi was used as the capturing agent with the properties of environment-friendly, non-toxic, and low melting temperature, was proposed, and the slag system of Na2O-SiO2-Al2O3-Bi2O3 was applied to the pyrometallurgical smelting process. The effects of slag basicity, capturing agent mass, smelting temperature, smelting capturing time, and mass ratio of Si to B on the recovery rates of Pd, Pt and Rh were systematically investigated. The results show that the platinum group metals containing bismuth alloy with smooth surface and simplicity in two-phase separation can be obtained under the optimal experimental conditions of slag basicity of 0.71, Bi mass of 1.9 g, smelting temperature of 1100 ℃, smelting capturing time of 10 min, and Si to B mass ratio of 0.94:1. The recovery rates of Pd Pt and Rh are 98.90%, 95.02% and 97.00%, respectively, and the overall Pd, Pt and Rh recovery reach as high as 99% by secondary smelting. The trace platinum group metals are preferentially reduced to atomic state or atomic clusters, which can bind with the newly generated metallic Bi, form the binary intermetallic compound of α-Bi2Pd, Bi2Pt and Bi4Rh. The similar lattice structures can reduce system free energy, and further achieve excellent capturing effects of Pd, Pt and Rh. The successful development of this process provides a new route for the comprehensive utilization of platinum group metals in waste automotive catalysts.
Key words: bismuth; spent automotive catalyst; pyrometallurgical capture; palladium; platinum; rhodium


