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Scheduling of multiple chemical plant start-ups to minimize regional air quality impacts

机译:安排多个化工厂的启动,以最大程度地减少对区域空气质量的影响

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摘要

Chemical plant concentrated regions may suffer localized and transient air pollution events that violate national ambient air quality standards (NAAQS).Flaring emissions,especially intensive start-up flaring emissions from chemical plants,have potentially significant impacts on local air quality.Thus,when multiple plants in an industrial zone plan to start-up within a same time period,their start-up plans should be evaluated and optimally controlled so as to avoid unexpected air-quality violations in any air-quality concern regions (AQCRs).In this paper,a general systematic methodology for multi-plant start-up emission evaluation and control has been developed.The methodology starts with collecting regional meteorological information such as wind speed and temperature; geographical information of all of the involved chemical plants and AQCRs; as well as plant operation data such as the start-up time window,start-up duration,and estimated emission profile.Next,a regional air-quality evaluation based on Gaussian dispersion model will be conducted.If any air quality violation is predicted to an AQCR,a multi-objective scheduling problem will be generated and solved to optimize the start-up sequence and start-up beginning time for all chemical plants.The scheduling model minimizes the overall air quality impacts to all of the AQCRs as well as minimize the total start-up time mismatch of all plants,subject to the principles of atmospheric pollutant dispersion.This study may provide valuable quantitative decision supports for multiple stake holders,including government environmental agency,regional chemical plants,and local communities.
机译:化工厂集中地区可能遭受违反国家环境空气质量标准(NAAQS)的局部性和短暂性空气污染事件。排放,特别是化工厂密集的启动燃烧燃烧排放,会对当地空气质量产生潜在的重大影响。工业区中的工厂计划在同一时期内启动,应评估并优化其启动计划,以避免在任何空气质量关注区域(AQCR)发生意外的空气质量违规情况。因此,已经开发了一种用于多工厂启动排放评估和控制的通用系统方法。该方法首先收集风速和温度等区域气象信息;所有涉及的化工厂和AQCR的地理信息;以及工厂运行数据,如启动时间窗口,启动持续时间和估计的排放曲线。接下来,将基于高斯分散模型进行区域空气质量评估。一个AQCR,将生成并解决一个多目标调度问题,以优化所有化工厂的启动顺序和启动开始时间。该调度模型最大程度地降低了对所有AQCR的总体空气质量的影响,并最小化了根据大气污染物扩散的原则,所有工厂的总启动时间不匹配。本研究可能为包括政府环境机构,区域化工厂和当地社区在内的多个利益相关者提供有价值的定量决策支持。

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