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首页> 外文期刊>Journal of the air & waste management association >Decomposition of Gas Phase 1,3-Butadiene by Ultraviolet/Ozone Process
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Decomposition of Gas Phase 1,3-Butadiene by Ultraviolet/Ozone Process

机译:紫外/臭氧法分解1,3-丁二烯气相

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A pilot-scale plug-flow reactor was built to investigate its performance in treating airborne 1,3-butadiene (BD) via ozonation (O_3) and ultraviolet (UV)/O_3 technologies. Governing factors, such as the initial molar ratio of ozone to BD, UV volumetric electric input power, and moisture content in the influent airstream, were investigated. Experiments were conducted at an influent BD concentration of ~50 ppm, an ambient temperature of 26℃, and a gas retention time of 85 sec. Results show that an initial molar ratio of ozone to BD of 3.5 and 2 sufficed to obtain BD decompositions of > 90% for ozonation and UV/O_3, respectively. The UV irradiance did not directly promote the decomposition of BD, rather, it played a role in promoting the production of secondary oxidants, such as hydroxyl radicals. Kinetic analyses indicate that both types of BD decomposition are peudo-first-order with respect to BD concentrations. Moisture content (relative humidity = 40-99%) and UV volumetric electric input power (0.147 and 0.294 W/L) are both factors that weakly affect the rate of BD decomposition. Economic evaluation factors, including both energy of ozone production and UV electric input power, were also estimated.
机译:建造了一个中试规模的活塞流反应器,以研究其通过臭氧化(O_3)和紫外线(UV)/ O_3技术处理机载1,3-丁二烯(BD)的性能。研究了控制因素,例如臭氧与BD的初始摩尔比,UV体积电输入功率以及流入气流中的水分含量。实验在进水BD浓度约为50 ppm,环境温度为26℃,气体保留时间为85秒的条件下进行。结果表明,臭氧与BD的初始摩尔比分别为3.5和2,足以使臭氧​​分解和UV / O_3的BD分解分别> 90%。紫外线辐射并不能直接促进BD的分解,相反,它在促进诸如羟基自由基等二次氧化剂的产生中起着一定的作用。动力学分析表明,相对于BD浓度,两种类型的BD分解都是伪一级的。水分含量(相对湿度= 40-99%)和紫外线体积电输入功率(0.147和0.294 W / L)都是弱影响BD分解速率的因素。还估算了经济评估因素,包括臭氧产生的能量和紫外线输入功率。

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