Yang Chia Cheng, Chang Shu Hao, Hong Bao Zhen, Chi Kai Hsien, Chang Moo Been
Graduate Institute of Environmental Engineering, National Central University, Chungli 320, Taiwan.
Chemosphere. 2008 Oct;73(6):890-5. doi: 10.1016/j.chemosphere.2008.07.027. Epub 2008 Aug 26.
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.
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)。