期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
煤粉燃烧过程中矿物质气化影响因素的模拟研究 被引量:20
1
作者 隋建才 徐明厚 +3 位作者 丘纪华 朱文渊 高翔鹏 彭谷桃 《中国电机工程学报》 EI CSCD 北大核心 2005年第14期78-83,共6页
鉴于目前国内的实验设备和测量手段,精确测量煤燃烧过程中各种矿物质的气化率还存在很大困难。该文通过建立煤中矿物质气化的数学模型,针对煤中SiO2和FeO两种成分,来探讨相关因素对它们气化率的影响,最后应用CFD软件来研究它们在600MW... 鉴于目前国内的实验设备和测量手段,精确测量煤燃烧过程中各种矿物质的气化率还存在很大困难。该文通过建立煤中矿物质气化的数学模型,针对煤中SiO2和FeO两种成分,来探讨相关因素对它们气化率的影响,最后应用CFD软件来研究它们在600MW锅炉内的气化行为。计算结果表明:温度是煤中SiO2和FeO气化的主要影响因素,煤粒粒径和CO2浓度也会对它们有一定影响。通过与实验结果的比较,表明计算结果比较合理。 展开更多
关键词 热能动力工程:颗粒物 煤燃烧 矿物质气化 数值模拟
下载PDF
煤燃烧过程中矿物质气化与亚微米颗粒物形成的研究 被引量:6
2
作者 高翔鹏 徐明厚 +2 位作者 姚洪 隋建才 刘小伟 《动力工程》 EI CAS CSCD 北大核心 2007年第2期292-296,共5页
应用热重分析仪研究了煤中矿物质的气化,同时通过沉降炉试验台架研究了燃煤过程中亚微米颗粒的形成和排放特性,并对亚微米颗粒的形成机理进行了探讨。结果表明:矿物质的气化量随着温度的升高而增大;在1400℃时,各个元素的气化能力由大... 应用热重分析仪研究了煤中矿物质的气化,同时通过沉降炉试验台架研究了燃煤过程中亚微米颗粒的形成和排放特性,并对亚微米颗粒的形成机理进行了探讨。结果表明:矿物质的气化量随着温度的升高而增大;在1400℃时,各个元素的气化能力由大到小依次为S、Cu、Pb、Zn、Na、K、Ca、Fe、Mg、Cr和Mn;温度越高,煤粉粒径越小,氧气含量越高,形成的PM1.0的浓度越大,并富集了易气化元素S、P和Na等,PM1.0可能是由气化-凝结机理形成的。 展开更多
关键词 工程热物理 煤燃烧 矿物质气化 亚微米颗粒物
下载PDF
Olivine versus peridotite during serpentinization:Gas formation 被引量:5
3
作者 HUANG RuiFang SUN WeiDong +2 位作者 DING Xing LIU JinZhong PENG ShaoBang 《Science China Earth Sciences》 SCIE EI CAS CSCD 2015年第12期2165-2174,共10页
The dependence of starting materials and their initial grain sizes on the formation of gases (H2, CH4, C2H6 and C3Hs) during serpentinization was investigated by conducting hydrothermal experiments at 311℃ and 3 kb... The dependence of starting materials and their initial grain sizes on the formation of gases (H2, CH4, C2H6 and C3Hs) during serpentinization was investigated by conducting hydrothermal experiments at 311℃ and 3 kbar on olivine and peridotite with initial grain sizes ranging from 〈30 to 177 μm. Hydrocarbons (CH4, C2H6 and C3H8) were produced from reaction between dissolved CO2 in the starting fluids and HE formed during serpentinization, which were analyzed by Gas Chromatography. It was found that olivine serpentinization produced much less H2 and CH4 compared with those after peridotite alteration, while their C2H6 and C3H8 were identical. For example, for olivine with initial grain sizes of 〈30 μm, the amounts of HE and CH4 were 79.6 mmol/kg and 460 μmol/kg after 27 days, respectively. By contrast, the quantities of H2 and CH4 produced in experiment on peridotite with the same run duration were much larger, 119 mmol/kg and 1300 μmol/kg, respectively. This indicates that spinel and pyroxene in peridotite may increase the amounts of HE and hydrocarbons, possibly due to the catalytic effect of aluminum released by spinel and pyroxene during serpentinization. Moreover, the production of H2 and hydrocarbons is negatively correlated with initial grain sizes of the starting material, with smaller amounts of HE and hydrocarbons for larger initial grain sizes, indicating that the kinetics of serpentinization influences the formation of HE and hydrocarbons, possibly because of the lack of catalytic minerals for the starting material with larger grain sizes. This study suggests that olivine cannot completely represent peridotite during serpentinization, and that H2 and hydrocarbons in hydrothermal fields near the mid-ocean ridge may be produced in a very long period of serpentinization or the presence of catalytic minerals due to large grain sizes of ultramafic rocks. 展开更多
关键词 serpentinization hydrogen gas hydrocarbon olivine peridotite
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部