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Use of Gas Chromatography and Flame Photometric Detection For the Analysis of Sulfur Compounds in FlaresMRohan Vettiankal

机译:使用气相色谱法和火焰光度检测,对罗汉乙二岛硫磺化合物分析

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Gas chromatography (GC) is an analytical technique that can separate and identify compounds based upon their relative volatilities. The technique has a wide range of uses in many different types of industries. The speed and reliability of gas chromatography measurements makes it well suited for accurate measurement of process emissions that may fluctuate rapidly over wide ranges. One such application is in the measurement of flare feed streams. When coupled with a flame photometric detector (FPD), gas chromatography can determine flare feed concentrations of hydrogen sulfide (H2S), carbon disulfide (CS2), and carbonyl sulfide (COS) in near real-time. The speed and accuracy at which the GC allows these measurements to be made presents significant advantages over the conventional wet chemistry methods, such as EPA Method 11 (40 CFR 60), which generally provide less data at lower quality in a given amount of time. Because of this advantage, GC is seeing more use and acceptance as a reference method for flare performance testing and monitor certifications. This paper examines some of the specific advantages of GC in flare testing applications, and presents data that shows how this technique can streamline and enhance flare monitoring programs. The paper also discusses special techniques to improve the accuracy and reliability of GC measurements in these applications.
机译:气相色谱(GC)是一种分析技术,可以基于其相对挥发性分离和鉴定化合物。该技术在许多不同类型的行业中具有广泛的用途。气相色谱测量的速度和可靠性使其适用于精确测量可能在宽范围内快速波动的过程排放。一个这样的应用是在射流流的测量中。当与火焰光度检测器(FPD)偶联时,气相色谱可以在近实时确定硫化氢(H 2 S),碳二硫醚(CS2)和羰基硫醚(COS)的爆发料浓度。 GC允许这些测量的速度和精度呈现出与传统的湿化学方法的显着优点,例如EPA方法11(40 cFR 60),其通常在给定的时间内以较低质量提供更少的数据。由于这一优势,GC正在看到更多使用和接受作为闪光性能测试和监控认证的参考方法。本文介绍了GC在闪光测试应用中的一些特定优势,并显示了该技术如何简化和增强耀斑监测计划的数据。本文还讨论了提高这些应用中GC测量的准确性和可靠性的特殊技术。

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