Department of Mechanical and Aerospace Engineering, University of California Davis, Davis, CA, USA; UC Davis Lung Center, One Shields Avenue, Davis, CA 95616, USA.
Department of Mechanical and Aerospace Engineering, University of California Davis, Davis, CA, USA; UC Davis Lung Center, One Shields Avenue, Davis, CA 95616, USA.; VA Northern California Health Care System, 10535 Hospital Way, Mather, CA 95655, USA.
J Chromatogr A. 2023 Aug 30;1705:464151. doi: 10.1016/j.chroma.2023.464151. Epub 2023 Jun 18.
The adequate odorization of natural gas is critical to identify gas leaks and to reduce accidents. To ensure odorization, natural gas utility companies collect samples to be processed at core facilities or a trained human technician smells a diluted natural gas sample. In this work, we report a detection platform that addresses the lack of mobile solutions capable of providing quantitative analysis of mercaptans, a class of compounds used to odorize natural gas. Detailed description of the platform hardware and software components is provided. Designed to be portable, the platform hardware facilitates extraction of mercaptans from natural gas, separation of individual mercaptan species, and quantification of odorant concentration, with results reported at point-of-sampling. The software was developed to accommodate skilled users as well as minimally trained operators. Detection and quantification of six commonly used mercaptan compounds (ethyl mercaptan, dimethyl sulfide, n-propylmercaptan, isopropyl mercaptan, tert‑butyl mercaptan, and tetrahydrothiophene) at typical odorizing concentrations of 0.1-5 ppm was performed using the device. We demonstrate the potential of this technology to ensure natural gas odorizing concentrations throughout distribution systems.
天然气的充分加臭对于识别气体泄漏和减少事故至关重要。为了确保加臭,天然气公用事业公司会收集样本,在核心设施进行处理,或者由经过培训的人类技术员嗅稀释后的天然气样本。在这项工作中,我们报告了一种检测平台,该平台解决了缺乏能够提供对用于天然气加臭的一类化合物——硫醇进行定量分析的移动解决方案的问题。提供了对平台硬件和软件组件的详细描述。该平台硬件旨在便携,方便从天然气中提取硫醇、分离单个硫醇种类,并定量检测气味剂浓度,在采样点报告结果。该软件的开发兼顾了熟练用户和基本培训操作人员。该设备能够检测和定量分析六种常用的硫醇化合物(乙硫醇、二甲基硫、正丙硫醇、异丙硫醇、叔丁硫醇和四氢噻吩),其典型加臭浓度为 0.1-5 ppm。我们展示了这项技术在确保整个分配系统中的天然气加臭浓度方面的潜力。