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首页> 外文期刊>Journal of the air & waste management association >Refinery Evaluation of Optical Imaging to Locate Fugitive Emissions
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Refinery Evaluation of Optical Imaging to Locate Fugitive Emissions

机译:光学成像的精炼厂评估以找出逸散排放

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Fugitive emissions account for approximately 50% of total hydrocarbon emissions from process plants. Federal and state regulations aiming at controlling these emissions require refineries and petrochemical plants in the United States to implement a Leak Detection and Repair Program (LDAR). The current regulatory work practice, U.S. Environment Protection Agency Method 21, requires designated components to be monitored individually at regular intervals. The annual costs of these LDAR programs in a typical refinery can exceed US$1,000,000. Previous studies have shown that a majority of controllable fugitive emissions come from a very small fraction of components. The Smart LDAR program aims to find cost-effective methods to monitor and reduce emissions from these large leakers. Optical gas imaging has been identified as one such technology that can help achieve this objective. This paper discusses a refinery evaluation of an instrument based on backscatter absorption gas imaging technology. This portable camera allows an operator to scan components more quickly and image gas leaks in real time. During the evaluation, the instrument was able to identify leaking components that were the source of 97% of the total mass emissions from leaks detected. More than 27,000 components were monitored. This was achieved in far less time than it would have taken using Method 21. In addition, the instrument was able to find leaks from components that are not required to be monitored by the current LDAR regulations. The technology principles and the parameters that affect instrument performance are also discussed in the paper.
机译:逸散排放量约占加工厂总碳氢化合物排放量的50%。旨在控制这些排放的联邦和州法规要求美国的炼油厂和石化厂实施泄漏检测和维修计划(LDAR)。当前的监管工作惯例是美国环境保护署的方法21,要求对指定的组件进行定期监控。在典型的炼油厂中,这些LDAR计划的年度成本可能超过1,000,000美元。先前的研究表明,大多数可控的逃逸排放源来自很小一部分组件。 Smart LDAR计划旨在寻找具有成本效益的方法来监控和减少这些大型泄漏机的排放。光学气体成像已被认为是可以帮助实现这一目标的一种技术。本文讨论了一种基于背散射吸收式气体成像技术的仪器的精炼厂评估。这款便携式摄像机使操作员可以更快地扫描组件并实时泄漏图像气体。在评估过程中,该仪器能够识别出泄漏的组件,这些组件占检测到的泄漏总量的97%。监视了超过27,000个组件。与使用方法21相比,该方法所花费的时间要少得多。此外,该仪器还能从不需要由当前LDAR法规监控的组件中发现泄漏。本文还讨论了影响仪器性能的技术原理和参数。

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