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1)  combustion heat
燃烧热
1.
Molecular inductive effect index and the combustion heat and the density of paraffinic hydrocarbons;
分子诱导效应指数与链烷烃的燃烧热、密度
2.
The results show that the mass constant volume combustion heat of the nano-aluminum/kerosene gel system decreases with the increase of nano-aluminum powder content in the gel system.
测定了各单组分及纳米铝粉/煤油凝胶体系的燃烧热,表征了纳米铝粉及纳米铝粉/煤油凝胶体系的能量性能。
3.
The method for determining the combustion heat of the organic compounds has been improved, including changing means of fixing firethread, using the super performance calorimeter, changing oxygen pressure in firebox and changing the sample quantity.
对有机物燃烧热的测定方法进行了改进。
2)  Heat of combustion
燃烧热
1.
A new method for predicting the heat of combustion of liquid alkanes by using the group-bond contribution method;
应用基团键贡献法计算液态烷烃的燃烧热
2.
Data processing of determination of heat of combustion in oxygen bomb by Microsoft Excel;
用Microsoft Excel处理氧弹法燃烧热的实验数据
3)  burning heat
燃烧热
1.
The burning heat can be improved greatly,the burning speed is accelerated at the same time.
燃烧热有大幅度地提高、同时燃烧速率加快、而且可以抑制煤里面硫的燃烧,使二氧化硫的生成量降低。
2.
Test result showed that the specific volume of black powder is large, but burning heat is small; Burning heat of B ignition composition is big, but the specific volume is small.
试验表明 ,黑火药的比容较大 ,但燃烧热较小 ,而B点火药的燃烧热很大 ,但比容较小 ,因此它们的点火压力不大。
4)  regenerative combustion
蓄热燃烧
1.
Based on the analysis of regenerative combustion method and the existing regenerative ladle heater,a new regenerative space combustion ladle heater is developed in combining with the practice ladle heating situation in Laiwu Steel Corporation.
在分析蓄热燃烧方法和现有蓄热式烤包器的基础上,结合莱钢炼钢厂钢包烘烤现状,研制开发了新的蓄热式空间燃烧烤包器。
2.
The principle and development history of regenerative combustion and its applications in metallurgical furnaces were introduced.
:文章对蓄热燃烧技术的原理、发展历史及其在冶金工业炉中的应用进行了介绍 ,并对蓄热燃烧中的换向阀及换向控制、NOx的控制等关键问题进行了分析 ,冶金工业炉需要实施这一项蓄热燃烧节能技术改造 ,以提高其热能利用率 ,减少环境污
3.
According to the application of regenerative combustion technology,flue gas flowing in the furnace,and the features of its system s heat transfer,it was set up in the paper a new kind of calculation for effective heat efficiency of combustion and furnace chamber,heat recovery rate,and total heat efficiency.
针对蓄热燃烧技术的运用和烟气在炉内的流动过程及系统的传热方式的特点,本文建立1种燃烧有效热效率、炉膛有效热效率、热回收效率与总热效率之间新的计算式,并对其中的各种影响因素进行了分析,其分析结果对炉型设计、热效率计算、技术改造等起到指导作用。
5)  combustion heating
燃烧加热
1.
The prospect for reformation of heat treatment energy structure in China,the progressing of combustion heating technology,the prospect for preparing endothermic atmosphere with natural gas and so on have been discussed.
比较了用电炉加热和用燃烧炉加热的热效率 ,介绍了发达国家的热处理能源结构 ,论述了我国热处理能源结构改革的前景 ,燃烧加热技术的进步 ,用天然气制备吸热式气氛的前景等。
6)  heat exchange with combustion
燃烧换热
补充资料:燃烧热
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CAS号:

性质:又称燃烧焓(enthalpy of combustion)。手册中查出的标准燃烧焓(符号△cHm)是指标准状态下1mol纯物质完全燃烧,生成标准状态下最稳定的氧化物或单质时,体系焓的增量(等于此过程的热效应)。所谓“最稳定的氧化物与单质”,在298.15K(即25℃)是CO2(气)、H2O(液)、SO2(气)、N2(气)、HCl的水溶液及游离金属等。例如,298.15K甲烷的标准燃烧焓为-890.13kJ/mol。燃烧焓皆为负值,意味着燃烧时是放热。它是重要的热力学数据,除直接应用于科学研究、工艺设计及生产外,更主要的是用以计算有关反应(特别是有机物参与的反应)的反应热(焓)及一些基本热力学数据,从而解决各种化学热力学问题。

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