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三羟甲基乙烷、新戊二醇及其二元体系固—固相变贮热的动力学研究 被引量:2
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作者 鲁彬 高文玲 +1 位作者 赵惠敏 刘晓地 《固原师专学报》 2000年第3期10-10,共1页
运用kissinger及Ozawa方法两种热分析动力学模型,利用差示扫描量热法(DSC)测定三羟基乙烷(PG)、新戊二醇(NPG)及其二元体系的低温固一固相变DSC曲线,求算固一固相变的表观活化能和反应级数,探讨表观活化能随组成不同的变化规律。两种方... 运用kissinger及Ozawa方法两种热分析动力学模型,利用差示扫描量热法(DSC)测定三羟基乙烷(PG)、新戊二醇(NPG)及其二元体系的低温固一固相变DSC曲线,求算固一固相变的表观活化能和反应级数,探讨表观活化能随组成不同的变化规律。两种方法的处理结果是相一致的。 展开更多
关键词 多元醇 固-固相变 相变 贮热动力学
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Effects of La substitution on microstructure and hydrogen storage properties of Ti−Fe−Mn-based alloy prepared through melt spinning 被引量:6
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作者 Ze-ming YUAN Zhen QI +3 位作者 Ting-ting ZHAI Hong-zhang WANG Hai-yan WANG Yang-huan ZHANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第10期3087-3095,共9页
The as-spun Ti_(1−x)La_(x)Fe_(0.8)Mn_(0.2)(x=0,0.01,0.03,0.06,0.09,molar fraction)alloys were prepared by melt spinning.The effects of La substitution for Ti on the microstructure,hydrogen storage kinetics and thermod... The as-spun Ti_(1−x)La_(x)Fe_(0.8)Mn_(0.2)(x=0,0.01,0.03,0.06,0.09,molar fraction)alloys were prepared by melt spinning.The effects of La substitution for Ti on the microstructure,hydrogen storage kinetics and thermodynamics of TiFe-type Ti−Fe−Mn-based alloy were investigated.The as-spun alloys hold the TiFe single phase,which transforms to TiFeH_(0.06),TiFeH,and TiFeH_(2) hydrides after hydrogenation.La substitution promotes the formation of micro-defects(such as dislocations and grain boundaries)in the alloys,thus facilitating hydrogen diffusion.In addition,the hydrogen storage kinetics properties are improved after introducing La element.With the rise of La content,the hydrogen storage capacity decreases firstly and then increases,but the absolute value of hydriding enthalpy change(|ΔH|)increases firstly and then reduces.When x=0.01,the maximum value of|ΔH|is obtained to be(25.23±0.50)kJ/mol for hydriding,and the alloy has the maximum hydrogen absorption capacity of(1.80±0.04)wt.%under the conditions of 323 K and 3 MPa. 展开更多
关键词 La substitution Ti−Fe−Mn-based alloy melt spinning hydrogen storage kinetics thermodynamics
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