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68篇 您的检索式:作者名="XU MingHou"
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1The effects of coal blending on the formation and properties of particulate matter during combustion显示文摘The control of particulate matter (PM) emissions from coal combustion becomes an urgent work due to their adverse effects on human health. Coal blending is a promising option for submicron particulate (PM1) reduction. This study addressed the effects of coal blending on the formation and properties of particulate matter in combustion process. Coal blends from lignite and bituminous coal,with different blend ratios (9:1,7:3,5:5,3:7 and 1:9),were combusted in a drop tube furnace. The mass size distribution,concentration,elemental composition and morphology of the particulate matter generated under O2/N2 and O2/CO2 conditions were characterized. Particulate matter was collected by a low pressure impactor (LPI),which aerodynamically segregated particulates into thirteen fractions with sizes ranging from 0.03 to 9.8 μm. The results showed that coal blending reduced PM1 generation,compared with the calculated average values from the combustion of constituent coals. This indicated that the mineral interactions had a great effect on PM1 reduction. The blend ratio also played an important role in the suppression of PM1 genera-tion. In this experimental study,PM1 generation suffered a maximum suppression at the blend ratio of 7:3. The O2/CO2 atmos-phere affected the formation and properties of the PM1 during coal blends combustion. Compared with the O2/N2 combustion,the interaction of minerals was weakened under O2/CO2 combustion,thus the suppression of PM1 generation decreased after coal blending. Compared with the calculated values,the concentrations and percentages of Ca,Fe in PM1 decreased,but the concentra-tions of Ca,Fe,Si and Al in coarse particulates (PM10+) increased after coal blends combustion. The interactions between the aluminosilicates in the bituminous coal and volatile elements Ca,Fe in the lignite were thought to contribute to the suppression of PM1 generation during the combustion of coal blends.ZHOU Ke XU MingHou YU DunXi WEN Chang ZHAN ZhongHua YAO Hong 2010Chinese Science Bulletin2010,55,30:7
2Characteristics and composition of particulate matter from coal-fired power plants显示文摘Measurements of the characteristics of particulate matter(PM)were performed at the inlet and outlet of the electrostatic precipitators(ESP)of four boilers in two full-scale pulverized coal power plants.PM was collected with a 13-stages low-pressure-impactor(LPI)having aerodynamic cut-off diameter ranging from 10.0 to 0.03μm for a size-segregated collection.The properties of PM including its con-centration,mass size distribution,emission characteristics,percent penetration of PM through ESP and elemental composition were investigated.The experimental results indicate that,in all the cases the mass size distribution of PM10 had typical bimodal.PM1 contained up to 1.15wt% of the total particle(TP)generated in the boilers.PM2.5 contained about 2wt%―7wt% of the TP and PM10 contained about 4wt%―19wt% of the TP.When additive limestone used for desulphurization as sorbent besides PM generated from coal combustion,there was new PM generated from limestone.Penetration as a func-tion of particle diameter had a clear peak in particle size ranging from 0.2 to 0.6μm.Particles in the submicrometer size range were much more difficult to be collected with ESP than larger particles.Dis-tributions of individual elements within PM10 were different.LIU XiaoWei XU MingHou YAO Hong YU DunXi ZHANG ZhongHua LüDangZhen 2009Science China(Technological Sciences)2009,52,6:7
3Effective identification of the three particle modes generated during pulverized coal combustion显示文摘Based on the mass fraction size distribution of aluminum (Al),an improved method for effectively identifying the modes of particulate matter from pulverized coal combustion is proposed in this study. It is found that the particle size distributions of coal-derived particulate matter actually have three modes, rather than just mere two.The ultrafine mode is mainly generated through the vaporization and condensation processes.The coarse mode is primarily formed by the coalescence of molten minerals, while the newly-found central mode is attributed to the heterogeneous condensation or adsorption of vaporized species on fine residual ash particles.The detailed investigation of the mass fraction size distribution of sulfur(S) further demonstrates the rationality and effectiveness of the mass fraction size distribution of the Al in identifying three particle modes.The results show that not only can the number of particle modes be identified in the mass fraction size distributions of the Al but also can their size boundaries be more accurately defined. This method provides new insights in elucidating particle formation mechanisms and their physico-chemical characteristics.YU DunXi XU MingHou YAO Hong LIU XiaoWei ZHOU Ke 2008Chinese Science Bulletin2008,53,10:5
4Size distributions of major elements in residual ash particles from coal combustion显示文摘Combustion experiments for three coals of different ranks were conducted in an electrically-heated drop tube furnace. The size distributions of major elements in the residual ash particles (>0.4μm) such as Al, Si, S, P, Na, Mg, K, Ca and Fe were investigated. The experimental results showed that the con-centrations of Al and Si in the residual ash particles decreased with decreasing particle size, while the concentrations of S and P increased with decreasing particle size. No consistent size distributions were obtained for Na, Mg, K, Ca and Fe. The established deposition model accounting for trace element dis-tributions was demonstrated to be applicable to some major elements as well. The modeling results indicated that the size distributions of the refractory elements, Al and Si, were mainly influenced by the deposition of vaporized elements on particle surfaces. A dominant fraction of S and P vaporized during coal combustion. Their size distributions were determined by surface condensation, reaction or adsorption. The partitioning mechanisms of Na, Mg, K, Ca and Fe were more complex.YU DunXi XU MingHou YAO Hong LIU XiaoWei 2009Chinese Science Bulletin2009,54,6:4
5Compositional and structural study of ash deposits spatially distributed in superheaters of a large biomass-fired CFB boiler显示文摘Recognizing the nature and formation progress of the ash deposits is essential to resolve the deposition problem hindering the wide application of large-scale biomass-fired boilers.Therefore,the ash deposits in the superheaters of a 220 t/h biomass-fired CFB boiler were studied,including the platen(PS),the high-temperature(HTS),the upper and the lower low-temperature superheaters(LTS).The results showed that the deposits in the PSs and HTSs were thin(several millimeters)and compact,consisting of a yellow outer layer and snow-white inner layer near the tube surface.The deposits in the upper LTS appeared to be toughly sintered ceramic,while those in the lower LTS were composed of dispersive coarse ash particles with an unsintered surface.Detailed characterization of the cross-section and the initial layers in the deposits revealed that the dominating compositions in both the PSs and the HTSs were Cl and K(approximately 70%)in the form of KCl.Interestingly,the cross-section of the deposition in the upper LTS exhibited a unique lamellar structure with a major composition of Ca and S.The contents of Ca and Si increased from approximately 10%to approximately 60%in the deposits from the high temperature surfaces to the low temperature ones.It was concluded that the vaporized mineral matter such as KCl played the most important role in the deposition progress in the PS and the HTS.In addition,although the condensation of KCl in the LTSs also happened,the deposition of ash particles played a more important role.Yishu XU Xiaowei LIU Jiuxin QI Tianpeng ZHANG Minghou XU Fangfang FEI Dingqing LI 2021Frontiers in Energy2021,15,2:3
6Coal combustion-generated aerosols: Formation and properties显示文摘Minghou Xu Dunxi Yu Hong Yao Xiaowei Liu Yu Qiao 2010Proceedings of the Combustion Institute2010,,1:3
7PM 10 formation during the combustion of N 2 -char and CO 2 -char of Chinese coals显示文摘Chang Wen Minghou Xu Dunxi Yu Changdong Sheng Hongwei Wu Ping’an Zhang Yu Qiao Hong Yao 2013Proceedings of the Combustion Institute2013,,2:2
8Characterization of arsenic emission from a coal-fired power plant显示文摘Guo Xin Zheng Chuguang Xu MingHou 2004Ener- gy Fuels2004,18,6:1
9Comparison of sulphur retention by coal ash in different types of combustors显示文摘Sheng Changdong Xu Minghou Zhang Jun 2000Fuel Processing Technology2000,64,:1
10Status of trace element emission in a coal combustion process: a review显示文摘Xu Minghou Yan Rong Zheng Chuguang 2003Fuel Processing Technology2003,85,23:1
11Simulation of the gas temperature deviation in large-scale tangential coal fired utility boilers显示文摘XU Minghou YUAN Jianwei DING Shifa 1998Computer Methods inApplied Mechanics and Engineering1998,155,34:1
12The effect of alkali mineral matter on the ash melting characteristic显示文摘MAO Jun XU Minghou LI Fan 2003Journal of Huazhong University of Science and Technology2003,31,4:1
13Influence of Calcium Chloride on the Thermal Behavior of Heavy and Alkali Metals in Sewage Sludge Incineration显示文摘HAN Jun XU Minghou YAO Hong 2008Waste Management2008,,28:1
14Coal mineral transforrnation on ermsslon of particulate matters during coal combustion显示文摘Liu Xiaowei Xu Minghou Yu Dunxi 2003Proceedings of the CSEE2003,23,1:1
15Status of trace element emission in a coal combustion process: A review显示文摘Xu Minghou Yan Rong Zheng Chuguang 2004Fuel Processing Technology2004,85,23:1
16Multi-Monte Carlo method for particle coagulation: Description and validation 显示文摘Zhao Haibo Zheng Chuguang Xu Minghou 2005Applied Mathematics and Computation2005,167,2:1
17Status of trace elements emission in a coal combustion process: a review 显示文摘XU MINGHOU YAN RONG ZHENG CHUGUANG 2004Fuel Processing Technology2004,85,23:1
18Modeling of homogeneous mercury speciation using detailed chemical kinetics显示文摘Minghou Xu Yu Qiao Chuguang Zheng 2003Combustion and Flame2003,132,:1
19Characterization' of mercury emissions from a coal-fired power plant 显示文摘GUO Xin ZHENG Chuguang XU Minghou 2007Energy & Fuels2007,21,2:1
20Control of PM 1 by kaolin or limestone during O 2 /CO 2 pulverized coal combustion显示文摘Juan Chen Hong Yao Ping’an Zhang Li Xiao Guangqian Luo Minghou Xu 2010Proceedings of the Combustion Institute2010,,2:1
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