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两种挡液板内部流场的数值模拟与除液效率分析
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作者 陈宁 王首宝 +1 位作者 许庆合 常佳 《能源与环保》 2021年第3期132-137,共6页
利用数值模拟技术,通过改变水蒸气流速、挡液板间距、液滴直径等参数,对挡液板内气液两相流场进行数值模拟计算,分析了各参数对挡液板除液效率和压降的影响,并比较了波纹折线型和加钩状折线型挡液板的除液性能。研究结果表明,随着气流... 利用数值模拟技术,通过改变水蒸气流速、挡液板间距、液滴直径等参数,对挡液板内气液两相流场进行数值模拟计算,分析了各参数对挡液板除液效率和压降的影响,并比较了波纹折线型和加钩状折线型挡液板的除液性能。研究结果表明,随着气流速度和液滴直径增加,除液效率提高;随着板间距增大,除液效率降低;在相同板间距不同气流速度条件下,加钩状折线挡液板除液效率更佳。 展开更多
关键词 内部流场 除液效率 两相流动 压降 数值模拟
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Degradation of Nitrobenzene-Containing Wastewater with O_3 and H_2O_2 by High Gravity Technology 被引量:17
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作者 Jiao Weizhou Liu Youzhi +3 位作者 Liu Wenli Li Jing Shao Fan Wang Chaoran 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2013年第1期85-94,共10页
Nitrobenzene-containing industrial wastewater was degraded in the presence of ozone coupled with H2O2 by high gravity technology. The effect of high gravity factor, H2O2 concentration, pH value, liquid flow-rate, and ... Nitrobenzene-containing industrial wastewater was degraded in the presence of ozone coupled with H2O2 by high gravity technology. The effect of high gravity factor, H2O2 concentration, pH value, liquid flow-rate, and reaction time on the efficiency for removal of nitrobenzene was investigated. The experimental results show that the high gravity technology enhances the ozone utilization efficiency with O3/H202 showing synergistic effect. The degradation efficiency in terms of the COD removal rate and nitrobenzene removal rate reached 45.8% and 50.4%, respectively, under the following reaction conditions, viz.: a high gravity factor of 66.54, a pH value of 9, a H2O2/O3 molar ratio of 1:1, a liquid flow rate of 140 L/h, an ozone concentration of 40 rag/L, a H2O2 multiple dosing mode of 6 mL/h, and a reaction time of 4 h. Compared with the performance of conventional stirred aeration mixers, the high gravity technology could increase the COD and nitrobenzene removal rate related with the nitrobenzene-containing wastewater by 22.9% and 23.3%, respectively. 展开更多
关键词 nitrobenzene containing wastewater rotating packed bed OZONE H2O2 free radicals
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Effects of atomization parameters of dust removal nozzles on the de-dusting results for different dust sources 被引量:5
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作者 Cheng Weimin Ma Youying +1 位作者 Yang Junlei Sun Biao 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第6期1025-1032,共8页
In order to obtain appropriate spray pressure and enhance the spraying and dust removal efficiency, various factors including the dust characteristics, nozzle spraying angle, effective spraying range, water consumptio... In order to obtain appropriate spray pressure and enhance the spraying and dust removal efficiency, various factors including the dust characteristics, nozzle spraying angle, effective spraying range, water consumption and droplet size are taken into account. The dust characteristics from different mines and atomization parameters of different pressure nozzles were measured. It was found that the internal pressure of coal cutters and roadheaders should be kept at 2 MPa, which could ensure large droplet size, large spraying angle and low water consumption and hence realizing a large-area covering and capture for large particle dusts. However, the external spray pressure should be kept at 4 MPa for smaller droplet size and longer effective spraying range, leading to effective dust removal in the operator zone. The spray pressure of support moving, drawing opening, and stage loader on a fully mechanized caving face and stage loader on a fully mechanized driving face should be kept at 8 MPa, under which the nozzles have long effective spraying range, high water flow and small droplet size for the rapid capture of instantaneous, high-concentration and small size dust groups. From the applications on the caving and driving faces in the coal mines, it is indicated that the optimization of spray pressure in different spraying positions could effectively enhance dust removal efficiency. Selecting appropriate nozzles according to the dust characteristics at different positions is also favorable for dust removal efficiency. With the selected nozzles under optimal pressures, the removal rates of both total dust and respirable dust could reach over70%, showing a significant de-dusting effect. 展开更多
关键词 Dust sources Dust size Types of spraying nozzle Spray pressure Atomization parameters
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