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应用于气态二噁英在V2O5-WO3/TiO2基催化剂上催化分解的新型含多氯二苯并二噁英/多氯二苯并呋喃气流生成系统。

Innovative PCDD/F-containing gas stream generating system applied in catalytic decomposition of gaseous dioxins over V2O5-WO3/TiO2-based catalysts.

作者信息

Yang Chia Cheng, Chang Shu Hao, Hong Bao Zhen, Chi Kai Hsien, Chang Moo Been

机构信息

Graduate Institute of Environmental Engineering, National Central University, Chungli 320, Taiwan.

出版信息

Chemosphere. 2008 Oct;73(6):890-5. doi: 10.1016/j.chemosphere.2008.07.027. Epub 2008 Aug 26.

Abstract

Development of effective PCDD/F (polychlorinated dibenzo-p-dioxin and dibenzofuran) control technologies is essential for environmental engineers and researchers. In this study, a PCDD/F-containing gas stream generating system was developed to investigate the efficiency and effectiveness of innovative PCDD/F control technologies. The system designed and constructed can stably generate the gas stream with the PCDD/F concentration ranging from 1.0 to 100ng TEQ Nm(-3) while reproducibility test indicates that the PCDD/F recovery efficiencies are between 93% and 112%. This new PCDD/F-containing gas stream generating device is first applied in the investigation of the catalytic PCDD/F control technology. The catalytic decomposition of PCDD/Fs was evaluated with two types of commercial V(2)O(5)-WO(3)/TiO(2)-based catalysts (catalyst A and catalyst B) at controlled temperature, water vapor content, and space velocity. 84% and 91% PCDD/F destruction efficiencies are achieved with catalysts A and B, respectively, at 280 degrees C with the space velocity of 5000h(-1). The results also indicate that the presence of water vapor inhibits PCDD/F decomposition due to its competition with PCDD/F molecules for adsorption on the active vanadia sites for both catalysts. In addition, this study combined integral reaction and Mars-Van Krevelen model to calculate the activation energies of OCDD and OCDF decomposition. The activation energies of OCDD and OCDF decomposition via catalysis are calculated as 24.8kJmol(-1) and 25.2kJmol(-1), respectively.

摘要

开发有效的多氯二苯并对二恶英和多氯二苯并呋喃(PCDD/F)控制技术对环境工程师和研究人员而言至关重要。在本研究中,开发了一种含PCDD/F的气流生成系统,以研究创新型PCDD/F控制技术的效率和有效性。所设计和构建的系统能够稳定生成PCDD/F浓度范围为1.0至100 ng TEQ Nm(-3)的气流,而重现性测试表明PCDD/F的回收率在93%至112%之间。这种新型含PCDD/F的气流生成装置首次应用于催化PCDD/F控制技术的研究。在控制温度、水蒸气含量和空速的条件下,用两种商用V(2)O(5)-WO(3)/TiO(2)基催化剂(催化剂A和催化剂B)对PCDD/F的催化分解进行了评估。在280℃、空速为5000 h(-1)的条件下,催化剂A和催化剂B对PCDD/F的破坏效率分别达到84%和91%。结果还表明,水蒸气的存在会抑制PCDD/F的分解,因为它与PCDD/F分子竞争两种催化剂活性氧化钒位点上的吸附。此外,本研究结合积分反应和Mars-Van Krevelen模型计算了八氯二苯并对二恶英(OCDD)和八氯二苯并呋喃(OCDF)分解的活化能。通过催化作用,OCDD和OCDF分解的活化能分别计算为24.8 kJmol(-1)和25.2 kJmol(-1)。

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