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1)  heat of mixing
混合热
1.
The feasibility of simultaneous representation of vapor-liquid equilibrium and heat of mixing for ten l-alkanol+n-alkane systems by PRSV equation of state together with the Wong-Sandler mixing rule was investigated.
研究了用PRSV状态方程及Wong-Sandler混合规则同时描述10个烃醇体系的汽液平衡和混合热的可行性。
2.
The heat of mixing (△H or H~E) for two binary systems.
15K温度下的混合热(△H或H~E)。
2)  mixing heat
混合热
1.
Based on the molecular aggregation model, the equations for mixing heat of liquid mixtures were derived, and then used to correlate and calculate the mixing heat data for eight binary alcohol hydrocarbon systems including methanol benzene, ethanol benzene, n propanol cyclohexane, etc.
基于分子聚集模型建立了分子聚集溶液理论导出了混合热的计算式,应用本公式关联并计算了8个二元醇-烃体系25℃下的混合热数据,获得满意的结果。
3)  mixed heat
混合热
1.
he mixed heat of cyclohexanone and cyclohextanol is measured systematically with PICKER microheat meter in different temperatures.
用PICKER微量热计系统地测量了不同温度下,环已酮──环已醇二元体系的混合热
4)  co-pyrolysis
混合热解
1.
To obtain co-pyrolysis characteristics of medical wastes containing polyvinyl chloride(PVC) and biomass,co-pyrolysis experiment on mixture of tube for transfusion(TFT) and gauze,the main ingredient of which was PVC and cellulose respectively,was carried out in an atmosphere of N2 using thermogravimetric analyser(TGA).
为研究聚氯乙烯(polyvinyl chloride,PVC)类与生物质类医疗废物的混合热解特性,利用差热热重分析仪,在氮气气氛下,对输液管(tube for transfusion,TFT;含PVC)和纱布(含纤维素)样品进行了混合热解实验,并以其相互反应机制为依据,单组分热解模型为基础,建立了二者混合热解的动力学模型。
2.
Thermal-gravimetric analysis (TGA), gas chromatogram (GC) and mass spectrum (MS) method have been used to study the characteristics of sulphide pollutant that released from the co-pyrolysis of biomass and coal blends.
采用热重分析和色谱、质谱偶联技术,对三种秸秆类生物质与煤混合热解过程中产生的含硫气体进行了在线检测,研究生物质对煤热解析出的COS气体的影响。
3.
To obtain co-pyrolysis characteristics of medical wastes containing polyvinyl chloride(PVC)and biomass,co-pyrolysis experiments on mixtures of tube for transfusion(TFT)and gauze at different mass proportions,whose main ingredients were PVC and cellulose respectively,were carried out in an atmosphere of N2 using the thermogravimetric analyser(TGA.
为研究聚氯乙烯(polyvinyl chloride,PVC)类与生物质类医疗废物的混合热解特性,利用差热热重分析仪,在氮气气氛下,对输液管(tube for transfusion,TFT;含PVC)和纱布(含纤维素)样品在不同质量配比下进行了混合热解实验,深入研究二者混合热解的行为与规律。
5)  Mixed pyrolysis
混合热解
1.
An experimental study on mixed pyrolysis characteristics of typical MSW components was performed, and the reaction kinetics model was established by using least squares algorithms.
并列出了双组分混合热解实验部分的实验结果及模型计算结果,两者吻合较好,为进一步建立垃圾综合热解神经网络模型奠定了基础。
6)  Mixed hydrothermal solutions
混合热液
补充资料:混合热
混合热
mixing,heat of

   多种不同的物质相互混合形成均相系统时产生的热效应。通常情况下这种混合过程是在定温定压下进行的。常见的混合热有不同气体或液体之间的混合热以及溶解热、稀释热等。对于指定的几种物质,混合热取决于温度、压力和各种物质的物质的量。通常,混合热是指在一定温度和压力下几种物质按一定比例混合成1摩/升溶液(即n1n2+……=1摩)时的热效应。混合热可用量热计直接测量。低压气体的混合热较小,高压气体的混合热较大;液体,分子结构和大小相近的混合热较小,分子结构和大小差别较大的混合热较大。混合热的大小对混合前后分子间相互作用的变化、溶液中的溶质和溶剂的存在状态以及它们的相互作用,能提供有益的信息。因此混合热的测定是溶液研究的重要手段之一。
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