期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Characteristics of reactivity and structures of palm kernel shell (PKS) biochar during CO_2/H_2O mixture gasification 被引量:3
1
作者 Guozhang Chang Ximin Yan +3 位作者 Pengyu Qi Mei An Xiude Hu Qingjie Guo 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第10期2153-2161,共9页
Palm kernel shell(PKS)biochars with different levels of carbon conversion were initially prepared using a tube furnace,after which the reactivity of each sample was assessed with a thermogravimetric analyzer under a C... Palm kernel shell(PKS)biochars with different levels of carbon conversion were initially prepared using a tube furnace,after which the reactivity of each sample was assessed with a thermogravimetric analyzer under a CO_2 atmosphere.The pore structure and carbon ordering of each biochar also examined,employing a surface area analyzer and a Raman spectroscopy.Thermogravimetric results showed that the gasification index R_sof the PKS biochar decreased from 0.0305 min^(-1) at carbon conversion(x)=20% to 0.0278 min^(-1)at x=40%.The expansion of micropores was the dominant process during the pore structure evolution,ad mesopores with sizes ranging from 6 to 20,48 to 50 nm were primarily generated during gasification under a CO_2/H_2O mixture.The proportion of amorphous carbon in the PKS biochar decreased significantly as x increased,suggesting that the proportion of ordered carbon was increased during the CO_2/H_2O mixed gasification.A significantly reduced total reaction time was observed when employing a CO_2/intermittent H_2O process along with an 83.46% reduction in the steam feed,compared with the amount required using a CO_2/H_2O atmosphere. 展开更多
关键词 Palm kernel shell REACTIVITY Pore structure Carbon ordering degree co2/intermittent H2O gasification
下载PDF
PMMA纳米孔泡沫的制备及发泡性能研究
2
作者 于旎 张毅 +1 位作者 彭维凯 罗浩 《材料开发与应用》 CAS 2023年第2期76-83,共8页
选用对于超临界CO_(2)具有高吸附能力的聚甲基丙烯酸酯(PMMA)作为基体材料,通过超临界CO_(2)间歇式发泡法,探究饱和阶段、发泡阶段参数以及CO_(2)吸附率对PMMA泡沫结构参数的影响。结果表明,在一定范围内,当其他条件相同时,降低温度或... 选用对于超临界CO_(2)具有高吸附能力的聚甲基丙烯酸酯(PMMA)作为基体材料,通过超临界CO_(2)间歇式发泡法,探究饱和阶段、发泡阶段参数以及CO_(2)吸附率对PMMA泡沫结构参数的影响。结果表明,在一定范围内,当其他条件相同时,降低温度或增大压力均能增加CO_(2)吸附率,在0℃、15 MPa条件下饱和48 h,PMMA中的CO_(2)吸附率达到最大值35.72%。将CO_(2)吸附率为35.72%的PMMA在40℃油浴中发泡30 s,可以获得泡孔密度为1.57×10^(15)个/cm^(3)、泡孔平均尺寸为35.9 nm且分布均匀的PMMA纳米孔泡沫。 展开更多
关键词 纳米孔泡沫 超临界co_(2)间歇式发泡 低温饱和
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部