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Microwave-assisted solid sampling system for Hg determination in polymeric samples using FF-AAS

机译:用于使用FF-AA的聚合物样品中HG测定的微波辅助固体取样系统

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In this work, a new portable device based on a monomode microwave applicator was developed and applied for microwave-assisted solid sampling analysis coupled to flame furnace atomic absorption spectrometry (MW-SS-FF-AAS). As an example of application, Hg was determined in polymer samples in order to demonstrate the feasibility of the proposed system. Polymeric samples were weighed directly on a quartz boat, containing a microcrystalline cellulose pellet wetted with 6 mol L-1 NH4NO3 solution, which was introduced into the microwave system for the combustion step. Oxygen flowed continuously through the quartz tube for sample combustion, as well as to carry the combustion products to the flame furnace (FF) atomizer. Microwave irradiation was kept on up to sample ignition (generally < 5 s). After that, microwave was turned off and atomic absorption signals were integrated. The instrument calibration was possible using aqueous reference solutions after optimization of some operational conditions such as mass of combustion aid, volume of igniter, oxygen flow rate, FF tube design, flame stoichiometry, and sample mass. Under optimized conditions, the LOD and LOQ were 0.2 and 0.7 mu g g(-1), respectively, which were suitable for Hg determination at low concentration in polymers. In addition, no statistical difference was observed between the results obtained by MW-SS-FF-AAS and the certified values of certified reference materials (ERM EC 681k and ERM EC 680k). The proposed microwave-assisted solid sampling system is portable and might be easily adapted to any conventional atomic absorption spectrometer, increasing the range of applications of this well-known technique.
机译:在这项工作中,开发了一种基于单兆微波涂敷器的新便携式设备,并施加用于耦合到火焰炉原子吸收光谱法(MW-SS-FF-AAS)的微波辅助固体采样分析。作为施用的一个例子,在聚合物样品中测定Hg,以证明所提出的系统的可行性。将聚合物样品直接称为石英船,含有6摩尔L-1 NH 4 NO 3溶液的微晶纤维素颗粒,其被引入微波系统中以进行燃烧步骤。氧气连续通过石英管流动以进行样品燃烧,以及将燃烧产物携带到火焰炉(FF)雾化器中。微波辐射保持样品点火(通常<5秒)。之后,关闭微波,并整合原子吸收信号。在优化一些操作条件之类的燃烧助剂,点火件,氧气流速,FF管设计,火焰化学计量和样品质量之后,使用含水参考溶液可以使用含水参考溶液。在优化的条件下,LOD和LOQ分别为0.2和0.7μg(-1),其适用于在聚合物中低浓度的Hg测定。另外,在MW-SS-FF-AAS获得的结果和认证参考材料的认证值(ERMECEC 681K和ERM EC 680K)获得之间没有观察到统计差异。所提出的微波辅助固体采样系统是便携式的,并且可以容易地适应任何传统的原子吸收光谱仪,增加了这种众所周知的技术的应用范围。

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