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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Extraction and pre-concentration of platinum and palladium from microwave-digested road dust via ion exchanging mesoporous silica microparticles prior to their quantification by quadrupole ICP-MS
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Extraction and pre-concentration of platinum and palladium from microwave-digested road dust via ion exchanging mesoporous silica microparticles prior to their quantification by quadrupole ICP-MS

机译:在四极杆ICP-MS定量分析之前,通过离子交换介孔二氧化硅微粒从微波消化的道路灰尘中提取和预浓缩铂和钯

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摘要

We report on the use of mesoporous silica microparticles (mu Ps) functionalized with quarternary amino groups for the isolation of platinum and palladium tetrachloro complexes from aqueous road dust digests. The mu Ps have a size ranging from 450 to 850 nm and are suspended directly in the aqueous digests, upon which the anionic Pt and Pd complexes are retained on the cationic surface. Subsequently, the mu Ps are separated by centrifugation. Elements that cause spectral interferences in ICP-MS determination of Pt and Pd can be quantitatively removed by adding fresh 0.240 mol L-1 HCl to the mu Ps and by repeating the centrifugation step. The analyte-loaded mu Ps are then dissolved in 0.1 mL of 2 mol L-1 HF, diluted to 2 mL, and the solutions thus obtained are analyzed by quadrupole ICP-MS. This method avoids analyte elution from the sorbent. This "dispersed particle extraction" approach yielded a run-to-run relative standard deviation a parts per thousand currency signaEuro parts per thousand 5 % for Pt and a parts per thousand currency signaEuro parts per thousand 4 % for Pd (at 0.1 ng mL(-1), n = 4 road dust digests). Method detection limits (expressed as concentrations in the dust samples) are 2 and 1 ng g(-1) for Pt and Pd, respectively. The method was validated by analysis of a reference material (BCR CRM 723) and applied to the analysis of road dust samples collected in downtown Vienna. Pt and Pd concentrations in samples collected in summer and in winter were compared, with concentrations ranging from 205 to 1445 ng g(-1) for Pt and from 201 to 1230 ng g(-1) for Pd.
机译:我们报告了使用具有季氨基功能化的介孔二氧化硅微粒(mu Ps)从水性道路粉尘消化物中分离铂和钯四氯配合物。 mu Ps的粒径范围为450至850 nm,直接悬浮在水溶物中,阴离子Pt和Pd络合物保留在阳离子表面上。随后,通过离心分离mu Ps。可以通过向mu Ps中添加新鲜的0.240 mol L-1 HCl并重复离心步骤来定量去除ICP-MS测定Pt和Pd中引起光谱干扰的元素。然后将加载了分析物的mu Ps溶于0.1 mL的2 mol L-1 HF,稀释至2 mL,然后通过四极杆ICP-MS分析由此获得的溶液。该方法避免了分析物从吸附剂上洗脱。这种“分散粒子提取”方法得出的运行相对运行标准偏差为:Pt的千分之一欧元/千分之五(5%)和Pd的千分之千欧元四分之四/分(0.1 ng mL( -1),n = 4个道路扬尘摘要)。 Pt和Pd的方法检测极限(表示为粉尘样品中的浓度)分别为2和1 ng g(-1)。该方法通过对参考材料(BCR CRM 723)的分析进行了验证,并应用于分析在维也纳市中心收集的道路扬尘样品。比较了夏季和冬季采集的样品中Pt和Pd的浓度,Pt的浓度范围为205至1445 ng g(-1),Pd的浓度范围为201至1230 ng g(-1)。

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