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Experimental evaluation of indoor air cleaning technologies and modeling of UV-PCO (photocatalytic oxidation) air cleaners under multiple VOCs conditions.

机译:室内空气净化技术的实验评估以及在多种VOC条件下对UV-PCO(光催化氧化)空气净化器的建模。

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摘要

The objectives of this study were to: (1) develop much needed test methods and datasets for determining the performance of various air cleaning technologies, and (2) improve the understanding and develop a simulation model for the performance prediction of ultraviolet photocatalytic oxidation (UV-PCO) devices under multiple volatile organic compounds (VOCs) conditions.; A "pull-down" test method and a "constant-source" test method were developed. Fifteen air cleaners, representing different technologies and types of devices, were tested with a mixture of representative VOCs in a full-scale chamber by using the "pull-down" method. Their initial performances were evaluated in terms of single-pass efficiency (eta) and clean air delivery rate (CADR). Ozone generation (if any) was also monitored during the tests. Technologies evaluated include sorption filtration, UV-PCO, ozone oxidation, air ionization, and botanical air cleaning. Based on test results, the relative effectiveness of the available technologies tested, and the effect of product configuration and VOC properties on the VOC removal efficiencies were analyzed.; Individual compound vs. multi-VOC mixture tests on selected groups of compounds (aromatics, alkanes, aldehydes and a complex mixture of 15 or 16 VOCs) were conducted for a honeycomb UV-PCO reactor in a full-scale chamber and for an annular tube reactor in small-scale and mid-scale chambers. Results indicate that the multi-VOC interference effects became more pronounced as the number of VOC species or the total concentration of VOCs increased (e.g., in 16-VOC mixture test) and the UV-intensity decreased (i.e., from 14.35 mW/cm 2 to 1 mW/cm2 for annular tube reactor). A computer simulation model and a "model-based" design procedure were developed for UV-PCO devices. The model consists of a one-dimensional fluid and concentration field model, a VOC reaction kinetics sub-model and a UV-irradiation sub-model. The intrinsic rate models and coefficients obtained from literatures or from independent kinetic experiments are needed as model inputs. The parametric and trend analysis was conducted to investigate the interference effects of other VOCs on toluene removal observed in full-scale experiments. The model developed is useful for investigating the multi-VOC interference effects (surface competition, byproduct generation, etc.) on the effectiveness of UV-PCO devices under various design and operating conditions.
机译:这项研究的目的是:(1)开发用于确定各种空气净化技术性能的急需的测试方法和数据集,以及(2)增进对紫外线光催化氧化(UV)性能预测的了解并开发一个仿真模型。 -PCO)设备在多种挥发性有机化合物(VOC)条件下。开发了“下拉”测试方法和“恒定源”测试方法。通过使用“下拉”方法,在具有代表性的VOC混合物的满量程室内对15种代表不同技术和设备类型的空气滤清器进行了测试。根据单次通过效率(eta)和清洁空气输送率(CADR)评估了它们的初始性能。在测试过程中还监测了臭氧的产生(如果有的话)。评估的技术包括吸附过滤,UV-PCO,臭氧氧化,空气电离和植物空气净化。根据测试结果,分析了可用测试技术的相对有效性,以及产品配置和VOC特性对VOC去除效率的影响。针对蜂窝式UV-PCO反应器在满量程室内和环形管中对选定的化合物组(芳族化合物,烷烃,醛和15或16种VOC的复杂混合物)进行了单独的化合物对比多VOC混合物测试小型和中型反应室中的反应堆。结果表明,随着VOC种类数或VOC总浓度的增加(例如,在16-VOC混合物测试中)和紫外线强度的降低(即从14.35 mW / cm 2降低),多重VOC干扰效应变得更加明显。环形管反应器的最大功率为1 mW / cm2)。为UV-PCO设备开发了计算机仿真模型和“基于模型”的设计程序。该模型由一维流体和浓度场模型,VOC反应动力学子模型和UV辐射子模型组成。需要从文献或独立动力学实验中获得的固有速率模型和系数作为模型输入。进行了参数和趋势分析,以研究在全规模实验中观察到的其他VOC对甲苯去除的干扰作用。开发的模型可用于研究在各种设计和操作条件下,多种VOC干扰效应(表面竞争,副产物生成等)对UV-PCO器件有效性的影响。

著录项

  • 作者

    Chen, Wenhao.;

  • 作者单位

    Syracuse University.;

  • 授予单位 Syracuse University.;
  • 学科 Engineering Mechanical.; Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 267 p.
  • 总页数 267
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;环境污染及其防治;
  • 关键词

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