量热技术
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应用差示扫描量热技术(DSC)对血液诸成分热稳定性的分析
Analysis to the Thermal Stabilities of Components in Blood by DSC
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差示扫描量热技术(DSC)在肉类研究中的应用进展
Application development of differential scanning calorimetry in meat research
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微量吸附量热技术在ZnxCo(1-x)Cr2O4催化剂筛选上的应用
Application of the Microcalorimetric Adsorption Technique on Screening of Zn_xCo_ ( 1-x ) Cr_2O_4 Catalysts
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用氨吸附微量量热技术对Al2O3载体和铂铼重整催化剂的表面酸性进行了表征。
The surface acidity of Al_2O_3 supports as well as several Pt-Re reforming catalysts was characterized by means of a modified microcalorimetry method combined with ammonia adsorption .
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通过燃速测定、差示扫描量热技术(DSC)和热失重技术(TG)研究了有机金属化合物(OME)对二硝酰胺铵(ADN)单元推进剂的热分解和燃烧性能的影响。
The effect of organ-metallic compound OME on the combustion and thermal decomposition of ammonium dinitramide ( ADN ) was investigated by burning rate measurement , DSC and TG .
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采用热重和示差扫描量热技术(TG-DSC)对改性前后煤沥青的热解行为进行了分析。
Thermal behavior of modified coal tar pitch was analyzed with thermogravimetric and differential scanning calorimetry ( TG-DSC ) .
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使用NH3和CO2为探针分子,吸附量热技术能够定量地描述固体表面酸碱中心的数目和强度分布。
Specifically , the strength and number of surface acid and base sites can be quantitatively titrated by the microcalorimetric adsorption of NH 3 and CO 2 as probe molecules .
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利用电化学和微量量热技术测定了NaCl和一些单糖(D-葡萄糖、D-半乳糖、D-木糖和D-阿拉伯糖)在水中相互作用的焓、熵及Gibss自由能参数。
Electrochemical and calorimetric methods are used to determine enthalpic , entropic and Gibbs free energy interaction parameters for the NaCl monosaccharide ( D glucose , D galactose , D xylose and D arabinose ) water systems .
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通过差示扫描量热技术(DSC),测定变压器油氧化放热峰的起始温度,并考察加入不同质量分数的抗氧剂(T501)后,它对变压器油氧化起始温度及抗氧化性能的影响。
Differential scanning calorimetry ( DSC ) was used to determine the incipient oxidation temperature of transformer oil , and the influence of the dosage of T501 oxidation inhibitor on transformer oil inoxidizability investigated .
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采用差示扫描量热技术(DSC)和偏光显微镜(POM)研究聚偏氟乙烯(PVDF)、聚三氟氯乙烯(PCTFE)、单体摩尔比为1:1和1:3的VDF-CTFE无规共聚物。
The crystallization of polyvinylidene ( PVDF ), polychlorotrifluorethylene ( PCTFE ) and random copolymers with an approximate 1:1 and 1:3 mole ratio of vinylidene fluoride ( VDF ) to chlorotrifluoroethylene ( CTFE ) were analyzed by differential scanning calorimetry ( DSC ) and polarized optical microscope ( POM ) .
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微量量热技术在医药筛选和检验中的应用固相微量萃取技术
Application of Microcalorimetric Technique for the Screening and Examination of Medicines
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微量量热技术在含能材料寿命评估领域的技术进展和发展趋势
Progress and Prospect of Microcalorimetry Technique in Assessing the Service Life of Energetic Materials
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并举例说明了差示扫描量热技术在大豆蛋白分析中的应用。
Moreover , the applications of differential scanning calorimetry in soybean proteins are also discussed .
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吸附量热技术和金属氧化物催化剂的表面酸碱性
The Technique of Microcalorimetric Adsorption and Its Application in Characterizing Surface Acidity / Basicity of Metal Oxides
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本论文主要介绍了微量吸附量热技术及其在研究几种固体酸碱材料表面性质上的应用。
The technique of microcalorimetric adsorption and its application for measurements of surface acidity and basicity have been reviewed .
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这些涉及到热物性测定、量热技术分析和热分析以及物理化学领域。
These relate to the thermal property measured , the volume of technical analysis and thermal analysis and thermal chemical physics field .
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对自然气候条件下塑木复合材料的宏观质量变化及颜色变化进行了分析,同时采用差示扫描量热技术对其热学变化特征进行了分析。
The weight and color change of wood plastic composites was analysed and the thermal characteristic was studied by using differential scanning calorimetry under natural weather .
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通过实验结果的分析和总结,作者提出了将微量量热技术用于筛选和检验医药的新方法。
On the analysis of all the results , the authors put forward a method on application of microcalorimetric technique for screen - ing and examination of medicines .
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利用X射线衍射技术、差示扫描量热分析技术和透射电子显微镜研究了非晶态Cu56Zr44合金的结构及其等温退火条件下的晶化过程。
The microstructure and crystallization process of an amorphous Cu 56 Zr 44 alloy at isothermal annealing were studied by using the X-ray diffraction , differential scanning calorimetry and transmission electron micrograph techniques .
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以示差量热分析技术(DSC)研究δ′相析出的动力学及固溶电场的影响。
Kinetics of 8 ' phase precipitation and influence of electric field applying during solution process are studied by differential scanning calorimetry ( DSC ) technique .
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利用红外光谱、差示扫描量热法分析技术对改性树脂的结构及固化反应过程进行了研究。
The structure and curing of the modified phenol resin were investigated by means of IR spectra and DSC methods .