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Biofiltration of VOC's from Paint Manufacturing

机译:从油漆制造中的VOC生物滤膜

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Many of the NESHAP/MACT hazardous air pollutant (HAP) rules promulgated to date, often required the use of thermal oxidizer/incineration-type controls in order to meet the extremely stringent destruction efficiencies (Dre). Emission standards for the paint manufacturing industry, part of the Miscellaneous Organic NESHAP (MON Rule), are currently being promulgated with a more reasonably attainable Dre or emission removal level. Biofiltration can be applied to achieve, and potentially exceed the proposed standards, while providing a less costly, more energy efficient, 'environmentally friendly', and sustainable control solution. Forrest Paint of Eugene, Oregon agreed to a cost-sharing venture with Bio-Reaction Industries LLC. (BRI) to prove this technology and act in a proactive manner to reduce their emissions prior to finalization of the MON MACT. BRI has, to our knowledge, successfully installed the first innovatively designed biofilter on the emission stream of a paint production unit at Forrest Paint. Installation and start-up of the unit commenced in December 2000. Test results indicate that the BRI biofilter will exceed the proposed MACT standard for destruction efficiency of those solvent compounds emitted from the paint manufacturing operations (toluene, xylene, hexane, ethylbenzene, MIBK, methanol, and benzene). The innovative, patented design with a fungal-based biomatrix is the key to maximization of the overall removal efficiency. In addition, the fungal-based biomatrix has been shown to be especially effective in biological oxidation of certain, specific organic compounds (xylene, toluene and benzene). Capital cost, is significantly less than for a thermal oxidizer, and operating costs are less than 10% of a comparably sized regenerative thermal oxidizer. Installation requirements, performance tests, monitoring data, energy requirements and technology comparisons will be presented.
机译:许多Neshap / Mact危险空气污染物(HAP)规则迄今为止,通常需要使用热氧化剂/焚烧型对照,以满足极其严格的破坏效率(DRE)。目前正在颁布油漆制造业的排放标准,杂项有机Neshap(Mon Rule),并颁布更合理地获得的DRE或排放水平。可以应用生物滤光来实现,并且可能超过所提出的标准,同时提供更昂贵,更节能,“环保”和可持续控制解决方案。俄勒冈州的福雷斯涂料,俄勒冈州同意与生物反应行业LLC的成本共享风险。 (BRI)以证明这项技术,并以积极主动的方式行事,以减少在整理举办的最终确定之前的排放。为了我们的知识,BRI已经成功地在Forrest Paint上安装了在油漆生产单元的排放流上的第一个创新设计的生物过滤器。本机的安装和启动于2000年12月开始。测试结果表明,BRI生物过滤器将超过从涂料制造操作(甲苯,二甲苯,己烷,乙苯,MIBK,MIBK,所述溶剂化合物的销毁效率的拟议CACT标准。甲醇和苯)。具有真菌为基础的BioMatrix的创新,专利设计是最大化整体清除效率的关键。此外,基于真菌的生物湿饼已经表明在某些特异性有机化合物(二甲苯,甲苯和苯)的生物氧化中特别有效。资本成本显着低于热氧化剂,运营成本小于相对尺寸的再生热氧化剂的10%。将提出安装要求,性能测试,监控数据,能源要求和技术比较。

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