Determination of total sulfur in coal by ultraviolet fluorescence method based on the large capacity combustion framework

Qunwei Wang , Zhenxing Lin , Qinghua Wu , Li Lin , Qingjian Zhang
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引用次数: 1

Abstract

In this paper, a systematic method for determination of total sulfur in coal by ultraviolet fluorescence is established based on a self-developed large capacity combustion framework (LCCF). The simple oxidation-combustion mode is upgraded to the pyrolysis-oxidation-combustion mode with the help of LCCF. Thus, components to be analyzed is pyrolyzed slowly and the whole decomposition process of sample is prolonged, which could improve the consistence of test results. The sampling size to be sent into LCCF is significantly increased, and the representativeness of samples is secured, which promotes the improvement of accuracy of testing results. Detection limits are augmented without additional hardware or software improvements by this way. The test systems equipped with conventional combustion tube (CCT) and self-developed LCCF are established differently to test standard coal samples (SCS) and ordinary coal samples (OCS) with different total sulfur range. Accuracy and precision of the two test systems are tested and the optimal injection quantity of the system with LCCF is determined. The results show that LCCF could support the injection quantity of 1000mg and ensure stable and complete combustion of sample, which is far more than that of CCT. The accuracy and precision of the test results are better than the requirements of the existing conventional analysis standards, which shows the excellent structure of LCCF and good performance. The new analysis system can further expand the application of ultraviolet fluorescence method in field of coal and others.

基于大容量燃烧框架的紫外荧光法测定煤中总硫
本文在自行研制的大容量燃烧框架(LCCF)的基础上,建立了一种系统的紫外荧光法测定煤中总硫的方法。利用LCCF将简单的氧化-燃烧模式升级为热解-氧化-燃烧模式。这样,待分析组分的热解速度较慢,延长了样品的整个分解过程,提高了测试结果的一致性。送入LCCF的样本量显著增加,保证了样本的代表性,促进了检测结果准确性的提高。通过这种方式,无需额外的硬件或软件改进即可增强检测极限。采用常规燃烧管(CCT)和自行研制的LCCF分别建立测试系统,对不同总硫范围的标准煤样(SCS)和普通煤样(OCS)进行测试。对两种测试系统的准确度和精密度进行了测试,确定了LCCF系统的最佳注射量。结果表明,LCCF可支持1000mg的进样量,并能保证样品的稳定完全燃烧,远远超过CCT。测试结果的准确度和精密度均优于现有常规分析标准的要求,说明LCCF结构优良,性能良好。该分析系统可进一步拓展紫外荧光法在煤炭等领域的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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