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Experimental Design Optimization of the Determination of Total Halogens in Coal by Combustion-Ion Chromatography

机译:燃烧-离子色谱法测定煤中总卤素的实验设计优化

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Determination of total halogens in coal was investigated with oxygen bomb combustion followed by ion chromatography. Experimental parameters were optimized by fractional factorial design and response surface methodology. Fractional factorial design was employed in screening experiments to evaluate the influence of the oxygen pressure, catalyst, absorption solution, reduction reagent, bomb cooling time, and a combustion aid on the combustion of coal in an oxygen bomb. Response surface methodology was conducted to further refine the results obtained by fractional factorial design and to define parameters for the procedure. The accuracy and precision of combustion with ion chromatography were evaluated by the use of two certified reference materials and by fortified in-house coal standards. The limits of detection and quantification for total halogens were 0.84 and 2.80 milligrams per kilogram, respectively, for 500 milligram samples. Ion chromatography provided relative standard deviations less than 4 percent, recoveries exceeding 95 percent, and was convenient. This method is recommended for routine determination of total halogens in coal because of its reliability.
机译:煤中总卤素的测定通过氧弹燃烧然后离子色谱法进行研究。实验参数通过分数阶乘设计和响应面方法进行了优化。在筛选实验中采用分数阶乘设计来评估氧气压力,催化剂,吸收溶液,还原剂,炸弹冷却时间和助燃剂对氧气弹中煤燃烧的影响。进行了响应面分析,以进一步完善通过分数阶乘设计获得的结果,并为该过程定义参数。离子色谱法燃烧的准确性和精密度通过使用两种认证的参考物质和强化的内部煤炭标准进行了评估。对于500毫克样品,总卤素的检测和定量极限分别为0.84和2.80毫克每千克。离子色谱法的相对标准偏差小于4%,回收率超过95%,使用方便。由于该方法的可靠性,推荐用于常规测定煤中的总卤素。

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