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Ozone impact minimization through coordinated scheduling of turnaround operations from multiple olefin plants in an ozone nonattainment area

机译:通过协调安排臭氧不达标区域中多个烯烃工厂的周转操作来最大程度地减少臭氧影响

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摘要

Turnaround operations (start-up and shutdown) are critical operations in olefin plants, which emit large quantities of VOCs, NOx and CO. The emission has great potentials to impact the ozone level in ozone non attainment areas. This study demonstrates a novel practice to minimize the ozone impact through coordinated scheduling of turnaround operations from multiple olefin plants located in Houston, Texas, an ozone non attainment area. The study considered two olefin plants scheduled to conduct turnaround operations: one start-up and one shutdown, simultaneously on the same day within a five-hour window. Through dynamic simulations of the turnaround operations using ASPEN Plus Dynamics and air quality simulations using CAMx, the study predicts the ozone impact from the combined effect of the two turnaround operations under different starting time scenarios. The simulations predict that the ozone impact from planned turnaround operations ranges from a maximum of 11.4 ppb to a minimum of 1.4 ppb. Hence, a reduction of up to 10.0 ppb can be achieved on a single day based on the selected two simulation days. This study demonstrates a cost-effective and environmentally benign ozone control practice for relevant stakeholders, including environmental agencies, regional plant operators, and local communities.
机译:周转操作(启动和关闭)是烯烃工厂的关键操作,烯烃工厂排放大量的VOC,NOx和CO。这种排放物有很大的潜力影响未达标臭氧层区域的臭氧水平。这项研究表明,通过协调排定位于得克萨斯州休斯顿(臭氧未达标地区)的多个烯烃工厂的周转操作,可以最大程度地减少臭氧的影响。这项研究考虑了计划在两个小时内在五个小时内同时进行的两个烯烃工厂:一个启动和一个关闭。通过使用ASPEN Plus Dynamics进行的周转操作的动态仿真和使用CAMx的空气质量仿真,该研究通过在不同的启动时间场景下两次周转操作的综合效果预测了臭氧的影响。模拟预测,计划的周转操作对臭氧的影响范围为最大11.4 ppb至最小1.4 ppb。因此,根据所选的两个模拟日,一天内最多可减少10.0 ppb。这项研究为相关利益相关者(包括环境机构,区域工厂运营者和当地社区)展示了具有成本效益且对环境无害的臭氧控制实践。

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