...
首页> 外文期刊>Journal of Cleaner Production >Development and adaptation of the technology of air biotreatment in trickle-bed bioreactor to the automotive painting industry
【24h】

Development and adaptation of the technology of air biotreatment in trickle-bed bioreactor to the automotive painting industry

机译:涓流床生物反应器空气生物处理技术的开发与适应汽车绘画行业

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The automotive painting industry is a source of environmental pollution caused by Volatile Organic Compounds (VOCs) present in the discharged ventilation air. To contribute to the mitigation of this type of air pollution, Ekoinwentyka Ltd. developed & ndash; from pilot scale to full scale & ndash; and adapted the technology of Compact Trickle Bed Bioreactor (CTBB) whose operating principle builds upon co-current downflow of the gas phase (polluted air) and liquid phase (solution of mineral salts) through a packed bed where active microorganisms are immobilized in the biofilm on the surfaces of packing elements. Pilot-scale bioreactor 0.32 m in diameter and 1.50 m total height had its packed bed inoculated with a consortium of microorganisms dominated by Pseudomonas fluorescens bacteria. During the experimental programme that lasted several months, the flow rate of air drawn from the ventilation system of the painting shop was changing between 1.0 and 10.0 m3/h and the inlet concentration of VOCs ranged from 10 to 200 ppm. By measuring VOC concentration in the purified air, the factor of VOC biodegradation was found to range between 85 and 99%. Based on pilot-scale experiments, full-scale CTBB has been developed 2.8 m in diameter and 10 m total height and installed as an add-on component of the ventilation system of the painting shop. Test operation at gas flow rates up to 6000 m3/h, confirmed VOC biodegradation factor at the level of 85 & ndash;99% thus proving a positive result of CTBB technology adaptation to the conditions of the automotive painting industry.
机译:汽车绘画行业是排出的通风空气中存在的挥发性有机化合物(VOC)引起的环境污染来源。为减轻这种空气污染的减轻,Ekoinwentyka Ltd.发达–从飞行员规模到满量程和ndash;并改编了紧凑型滴流床的技术,其工作原理在气相(污染空气)和液相(矿物盐的溶液)通过填充床上的运行原理构建,其中活性微生物在生物膜中固定活性微生物在包装元件的表面上。导尺直径0.32米的试验型,总高度为1.50米,其填充床接种了由荧光荧光细菌的杂种统治的微生物联盟。在持续数月的实验计划期间,从绘画商店的通风系统中抽取的空气流速在1.0和10.0 m 3 / h之间变化,VOC的入口浓度范围为10至200 ppm。通过测量纯化空气中的VOC浓度,发现VOC生物降解的因子在85至99%之间。基于试验规模实验,全规模的CTBB直径为2.8米,总高度为10米,并作为绘画商店通风系统的附加组件安装。在气体流速的试验操作可达6000 m3 / h,确认VOC生物降解系数在85&ndash的水平; 99%以证明CTBB技术适应汽车绘画行业的条件的肯定结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号