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Best Available Control Technology (BACT) Equivalent for the Control of Volatile Organic Emissions from Paint Dipping Operations

机译:最佳可用控制技术(BACT)相当于控制涂料浸涂操作的挥发性有机排放

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This paper provides details of a study conducted to demonstrate an equivalent method of Best Available Control Technology (BACT) compliance for volatile organic emissions from dip coating of certain miscellaneous metal parts. The study was proposed to show that the total volatile organic compound (VOC) emissions from 3.8 1b of VOC/gallon coating formulations were no greater than the total VOC emissions from 3.5 1b/gallon formulations used under the same conditions for coating steel joists. The presumptive BACT standard enforced by the Virginia Department of Environmental Quality (DEQ) for dip coating of steel joists is 3.5 In/gallon. The requirement of 3.5 1b/gallon was derived from the U.S. Environmental Protection Agency (EPA) Guideline Series "Control of Volatile Organic Emissions from Existing Stationary Sources -Volume VI: Surface Coating of Miscellaneous Metal Parts and Products." On June 5, 1998 the source completed a 12 month, full scale comparison study under a consent order with the Virginia DEQ. During the study period, the source made daily measurements of product produced, paint used, and emissions from the control and test paint tanks, and reported data to EPA and the DEQ every two months. The study concluded that a 26 percent reduction in paint usage and a 20 percent reduction in emissions was achieved in the test tanks using a 3.8 1b/gal coating compared to the control tanks using a 3.5 1b/gal coating. This study enables the source to achieve greater emission reductions than the presumptive BACT level and at the same time reduce painting costs by 34 percent. This study provides positive results for the environment, the steel joist industry, and the construction industry. This study could impact EPA's current Maximum Achievable Control Technology (MACT) rule development for Miscellaneous Metal Parts and Products and national VOC rules for this source category under Section 183(e) of the Clean Air Act.
机译:本文提供了一项研究的详细信息,以证明来自某些杂项金属部件的浸涂的挥发性有机排放的最佳可用控制技术(Bact)依从性的等效方法。该研究提出表明,VOC /加仑涂料配方3.81B的总挥发性有机化合物(VOC)排放不大于3.5 1B /加仑配方的总VOC排放,在涂层钢托梁的相同条件下使用。由弗吉尼亚州环境质量(DEQ)强制执行的推定BACT标准为钢托梁浸涂为3.5英寸/加仑。 3.5 1B /加仑的要求来自美国环境保护局(EPA)指南系列“从现有的固定来源控制挥发性有机排放量 - 易滤网:杂项金属零件和产品的表面涂层。” 1998年6月5日,源头完成了12个月,以弗吉尼亚州DEQ同意令全规模比较研究。在研究期间,源代码源日常测量生产的产品,使用的涂料和来自控制和测试油漆罐的排放,并将数据报告给EPA和DEQ每两个月的数据。该研究得出结论,使用3.8 1B / GAL涂层,在使用3.5 1B / GAL涂层的控制罐与控制罐相比,在试验罐中,在试验罐中实现了26%的涂料使用量和20%的排放减少。本研究使源能够实现比推定BACT水平更大的排放减少,同时将绘画成本降低34%。本研究为环境,钢铁床行业和建筑业提供了积极的成果。本研究可能会影响EPA目前的最新可实现的控制技术(MACT)规则开发,以便在清洁空气法案第183(e)条下解决此源类的杂项零件和产品和国家VOC规则。

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