...
首页> 外文期刊>Journal of the human-environment system >Study on the Improvement of Work Environment by Photocatalyst in the Laboratory Animal Room
【24h】

Study on the Improvement of Work Environment by Photocatalyst in the Laboratory Animal Room

机译:实验动物房中光触媒改善工作环境的研究

获取原文
           

摘要

The presence of odorants and airborne bacterium within animal laboratories posed personal discomfort as well as health risks to researchers and their staff. This led to the development of photo-catalytic based filtration technology, capable of absorbing and decomposing odors in addition to sterilizing airborne bacterium, for an indoor air-circulation device. We performed several experiments to determine its characteristics. The result was a detection of tri-methylamine, which was found to contribute 94.6% of the odor in the laboratory animal room. Tri-methylamine is an important indicator in the odor environment for researchers and working staff. During field tests within animal laboratories, the experimental filtration system removed about 82% of the tri-methylamine and 51% of the ammonia immediately, and decreased odor concentration from 12 to 5 or less (by the triangle odor bag method), at which point no odor was perceived. The odor concentration at the outlet of the device was maintained at less than 5 during a trial period of two months. At the same time, the filtration device removed 64–95% of all airborne bacteria within the animal laboratories. In addition, the photo-catalytic filter that attained adsorptive saturation was successfully regenerated by using the photo-catalytic ability. The results of experiment demonstrated that the test device is more effective in absorbing and removing odor and bacteria in the animal laboratory rooms than similar devices. The photo-catalytic filtration system was effective for removing odor constantly being generated in the mouse animal room.
机译:动物实验室内存在增味剂和空气传播细菌,给研究人员及其工作人员带来个人不适以及健康风险。这导致了基于光催化的过滤技术的发展,该技术除了用于对室内传播的细菌进行灭菌之外,还能够吸收和分解气味。我们进行了几次实验以确定其特性。结果是检测到三甲胺,该三甲胺在实验室动物室中贡献了94.6%的气味。对于研究人员和工作人员,三甲胺是气味环境中的重要指标。在动物实验室的现场测试中,实验性过滤系统立即去除了约82%的三甲胺和51%的氨,并将气味浓度从12降至5或更低(通过三角气味袋法),此时没有感觉到气味。在两个月的试用期内,设备出口的气味浓度保持在5以下。同时,过滤装置清除了动物实验室内所有空气传播细菌的64–95%。另外,利用光催化能力成功地再生了达到吸附饱和的光催化过滤器。实验结果表明,该实验装置比类似装置更有效地吸收和去除动物实验室室内的异味和细菌。光催化过滤系统可有效去除小鼠动物室内不断产生的气味。

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