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GC-PID法检测天然气中加臭剂的分析方法

Analysis method for detecting odorants in natural gas based on GC-PID

  • 摘要:
    目的 天然气加臭是保障天然气泄漏迅速识别和安全使用的重要手段,为保证加臭剂质量浓度符合标准规范且避免过量加臭,建立一种准确高效的分析方法对天然气中加臭剂进行检测。
    方法 采用光离子化气相色谱法(gas chromatography with photoionization detection,GC-PID),设置操作流程,优选分析参数,通过实验室评价和现场应用,系统考察GC-PID法的有效性、抗干扰性、检出限、重复性、准确性和现场适用性,验证其对四氢噻吩和无硫加臭剂的检测能力。
    结果 建立的方法对加臭剂具有高选择性,定量准确性高,在2.00~150.00 mg/m3范围内,对四氢噻吩的相对标准偏差<1.5%,检出限为0.40 mg/m3。GC-PID法具有良好的现场适用性,具有良好的数据准确性和稳定性。
    结论 基于GC-PID法开发的该天然气中四氢噻吩和无硫加臭剂的检测方法,为加臭剂质量浓度的在线监测和便携检测提供了新途径,具有实际应用价值与推广前景。

     

    Abstract:
    Objective Natural gas odorization is an important means to ensure the rapid identification of natural gas leaks and its safe use. In order to comply with standard specifications and to prevent over-odorization, an accurate and efficient analytical method for the detection of odorants in natural gas has been established.
    Method Based on the gas chromatography with photoionization detection (GC-PID) method, operational procedures were set up, analytical parameters were optimized, analytical processes were developed, and both laboratory evaluations and field applications were carried out. The effectiveness, immunity, detection limit, repeatability, accuracy and field applicability of the method were systematically evaluated, confirming the ability to detect tetrahydrothiophene and sulphur-free odorants.
    Result The method was determined to be highly selective for odorants, with high accuracy. In the range of 2.00~150.00 mg/m3, the method had good repeatability, with a relative standard deviation of less than 1.5%, and the detection limit was 0.40 mg/m3. The GC-PID method had good field applicability, good data accuracy and stability.
    Conclusion The method for the detection of tetrahydrothiophene and sulfur-free odorants in natural gas was developed based on the GC-PID method, which provides a new way for the online monitoring and portable detection of the mass concentration of odorants, and has practical application value and promotion prospects.

     

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