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81.
Liu Zhengchao Pan Xunxi Dong Wenbo Hou Huiqi Zhang Zhenman Hou Jian Yu Yong Li Changlin 《环境科学学报(英文版)》1997,9(1):95-99
In this paper pulsed corona discharge is shown to be effective for the decomposition of CF3Cl(Freon-13).The pressure of CF3Cl was 2.67×103Pa,after discharged for 2 min,39.5% of CF3Cl was decomposed.The products were mainly CF4,Cl2 and CF2Cl2.The yield increased by adding O2 or air.Under the same conditions,more than 94% decomposition yield was obtained if 5.32×103Pa O2 or air was added.The composition of products became CF2O,Cl2 and CF4.While the partial pressure of O2 or air reached 1 arm,the decomposition yield decreased to 54.5% and 48. 5% respectively. 相似文献
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本文分析了锅炉房噪声的产生机理 ,针对各类锅炉房的具体情况 ,提出了“分散控制”和“集中控制”的不同治理方案。其中隔声、消声、隔振、吸声等声学措施的综合利用 ,易收到较好的效果 ,可降噪 2 0dB(A)以上 相似文献
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The preparation of immobilizing-catalysts for decomposing ozone by using dipping method was studied. XRD, XPS and TEM were used to characterize the catalysts. The three kinds of catalysts were selected preferentially, and their catalytic activities were investigated. The results showed that the catalyst with activated carbon dipping acetate( active components are Mn:Cu = 3:2, active component proportion in catalyst is 15%, calcination temperature is 200℃ ) has the best catalytic activity for ozone decomposing. One gram of catalyst can decompose 17.6g ozone at initial ozone concentration of 2.5g/m^3 and the residence time in reactor of 0.1s. The experimental results also indicated that humidity of reaction system had negative effect on catalytic activity. 相似文献
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针对生物法净化低浓度挥发性有机废气的过程机理研究表明,生物膜填料塔净化低浓度甲苯气体是一个以气膜控制为主的传质过程,其中甲苯的生化降解属于瞬时快速化学反应,即甲苯的生化降解反应速率远远超过甲苯在液膜中的扩散速率,甲苯的生化降解在气液相界面处即可发生,其宏观表现即为甲苯气体直接吸附在润湿的生物膜上后迅速被微生物生化降解。因此,可以从气体吸附理论的新角度去解释生物法净化废气中低浓度挥发性有机物的动力学过程。对于低浓度挥发性有机废气的生物法净化装置的设计与操作而言,凡能改善传质条件、减少气膜阻力的措施均能强化这一生物吸收净化过程。 相似文献
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Decomposition mass loss and pyrolysis products analyses of particles sampled at various locations along the tailpipe of a Euro-IV diesel engine were performed using a thermogravimetry in conjunction with Fourier transformation infrared spectrometry-mass spectrum. Diesel particles were collected at the same location with and without diesel oxidation catalyst (DOC) mounted on the test engine separately. The three poles in thermal gravity-differential thermal gravity images suggested that the decomposition process of diesel particles could be divided into three stages which correspond to the decompositions of lower boiling substances, higher boiling substances and soot respectively. It is noticed that no matter whether DOC was mounted or not, the further the particles were sampled away from the engine block, the lower the peak temperatures and the heavier the mass losses within the first two stages, which indicated that the soluble organic fraction in the particle samples increased and therefore lowering the activation energy of thermal decomposition. Hydroxyl, ammonia, CxHy fragments, benzene, toluene, and phenol were found to be the primary products of particle decomposition, which didn't change with the location of particle sample point. The employment of DOC increased the activation energy for particle oxidation and resulted in a higher peak temperature and lower mass loss within the first-stage. Moreover, the CO stretching bands of aldehyde and ketone at 1771 cm?1 was only detected without a DOC, while the NO2 peak at 1634 cm?1 was solely noticed with the presence of DOC. Compared to the first-stage pyrolysis products, more polycyclic aromatic hydrocarbons and less CxHy fragments were seen in the second-stage. 相似文献
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