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Microwave-assisted extraction of rare earth elements from petroleum refining catalysts and ambient fine aerosols prior to inductively coupled plasma-mass spectrometry

机译:在电感耦合等离子体质谱法之前,从石油精制催化剂和环境精细气溶胶中微波辅助萃取稀土元素

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摘要

A robust microwave-assisted acid digestion procedure followed by inductively coupled plasma-mass spectrometry (ICP-MS)was developed to quantify rare earth elements (REEs)in fluidized-bed catalytic cracking (FCC)catalysts and atmospheric fine particulate matter (PM2.5).High temperature (200 deg C),high pressure (200psig),acid digestion (HNO3,HF and H3BO3)with 20min dwell time effectively solubilized REEs from six fresh catalysts,a spent catalyst and PM2.5.This method was also employed to measure 27 non-REEs including Na,Mg,Al,Si,K,Sc,Ti,V,Cr,Mn,Fe,Co,Ni,Cu,Zn,Ga,As,Se,Rb,Sr,Zr,Mo,Cd,Cs,Ba,Pb and U.Complete extraction of several REEs (Y,La,Ce,Pr,Nd,Tb,Dy and Er)required HF indicating that they were closely associated with the aluminosilicate structure of the zeolite FCC catalysts.Internal standardization using ~(115)In quantitatively corrected non-spectral interferences in the catalyst digestate matrix.Inter-laboratory comparison using ICP-optical emission spectroscopy (ICP-OES)and instrumental neutron activation analysis (INAA)demonstrated the applicability of the newly developed analytical method for accurate analysis of REEs in FCC catalysts.The method developed for FCC catalysts was also successfully implemented to measure trace to ultra-trace concentrations of La,Ce,Pr,Nd,Sm,Gd,Eu and Dy in ambient PM2.5 in an industrial area of Houston,TX.
机译:开发了鲁棒的微波辅助酸消化程序,然后采用电感耦合等离子体质谱法(ICP-MS)来定量流化床催化裂化(FCC)催化剂和大气细颗粒物(PM2.5)中的稀土元素(REE)高温(200℃),高压(200psig),酸消解(HNO3,HF和H3BO3)停留时间为20分钟,有效地溶解了6种新鲜催化剂,废催化剂和PM2.5的REE。测量27种非稀土元素,包括Na,Mg,Al,Si,K,Sc,Ti,V,Cr,Mn,Fe,Co,Ni,Cu,Zn,Ga,As,Se,Rb,Sr,Zr,Mo ,Cd,Cs,Ba,Pb和U.完全萃取几种REE(Y,La,Ce,Pr,Nd,Tb,Dy和Er)需要HF,这表明它们与沸石FCC催化剂的硅铝酸盐结构密切相关使用〜(115)进行内部标准化以定量校正催化剂消化物基质中的非光谱干扰通过ICP-OES和仪器进行实验室间比较用中子活化分析(INAA)证明了新开发的分析方法可准确分析FCC催化剂中REE的适用性。针对FCC催化剂开发的方法也已成功地用于测量痕量的痕量La,Ce,Pr,德克萨斯州休斯敦工业区环境PM2.5中的Nd,Sm,Gd,Eu和Dy

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