Hollow Fiber Coupler for Hydrogen Sulfide Spectral Analysis
Hollow Fiber Coupler for Hydrogen Sulfide Spectral Analysis
批准号:
571684-2021
负责人:
Lu, TaoT
金额:
$2.04万
依托单位:
依托单位国家:
加拿大
项目类别:
Alliance Grants
财政年份:
2022
资助国家:
加拿大
项目状态:
已结题
起止时间:
2022-01-01 至 2023-12-31
中文摘要
在天然气生产、运输和储存过程中,需要对硫化氢进行严密的监测。这项工作的性质是对一种精密光谱分析仪进行初步研究,该分析仪可以识别和量化天然气中低至百万分之几的硫化氢浓度。在本项目中,将使用中空纤芯光纤和常规光纤熔融光纤定向耦合器来高效地现场采集样品并进行实时光谱测量。特别是,我们将对吸收光谱和拉曼光谱进行光谱分析,并比较它们的相对优势和劣势。为了在杂乱的环境中以更高的精度定量化学浓度,将采用机器学习算法进行吸收和拉曼光谱分析。我们将比较这两种光谱方法在杂波环境中的灵敏度、分辨率和检测下限,并向EnventEngineering Ltd.建议其相关产品的合适选择。一旦被证明是积极的,预期的结果将有助于EnventEngineering Ltd.为石油行业提供以目前无法获得的精度、灵敏度和检测极限监测硫化氢浓度的能力。该项目的成功实施将进一步加强与Enventt的合作,并在未来扩展监测其他化学物质,如甲烷、叔丁基硫醇、甲硫醚等。拟议技术的实施将有助于行业确保天然气中这些化学物质的含量达到允许的水平。通过这项技术成功地控制它们,将有利于行业降低生产、运输和储存的仪器维护成本,减少温室气体排放源,以应对气候变化。这也将有助于该行业遵守政府制定的保护环境的要求。该项目对学生的培训将为加拿大行业提供高素质的人才,这对加拿大行业在该领域的领先地位至关重要。
英文摘要
Hydrogen Sulfide (H2S) needs to be closely monitored in natural gas production, transportation and storage. The nature of the work is to conduct initial study toward a precision spectroscopy analyzer that can identify and quantify H2S concentrations as low as several parts per million in natural gas. In this project, a hollow core fiber and a regular fiber fused optical directional coupler will be used to efficiently collect the samples on-site and conduct realtime spectral measurements. In particular, we will conduct spectral analysis on both absorption and Raman spectroscopy and compare their relative advantages and disadvantages. In order to quantify chemical concentrations in higher accuracy in cluttered environments, machine learning algorithms will be adopted for both absorption and Raman spectral analysis. We will compare the sensitivity, resolution and detection limit in cluttered environment between both spectrscopic methods and make recommendations to Envent Engineering Ltd. on the suitable choices for their related product. The anticipated outcome, once proven positive, will help Envent Engineering Ltd. to provide oil industry the capacity to monitor H2S concentrations at a precision, sensitivity and limit of detection that is currently unavailable. The successful execution of the project will further strength the collaboration with Envent with future extension for monitoring other chemical substance such as methane, Tert-Butyl Mercaptan, Methyl Sulfide, etc. The implementation of the proposed technology will help the industry to ensure these chemical contents in natural gas at a permissive level. The successful control of them through this proposed technology will benefit the industry to reduce the instrument maintenance cost for production, transportation and storage and reduce the greenhouse emission source to counter-fight the climate change. It will also help the industry to abide the requirement set by the government to protect our environment. The training of the students in the project will provide Canadian industry highly qualified personnels, which is critical for Canadian industry leading in the field.
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