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1)  characteristics of spontaneous combustion
自燃特点
2)  burning features
燃烧特点
1.
This paper describes the burning features of the Xishan coal in the industrial boilers with the chain grade,and in the light of the main influence of burning the Xishan coal on the operation of the industrial boilers with the chain grade,puts forward some suggestions on improving the operation of the industrial boilers with the chain grade.
叙述了链条炉排工业锅炉燃用西山煤的燃烧特点,针对燃用西山煤对链条炉排工业锅炉运行的主要影响提出若干改进建议。
3)  Hypergolic ignition
自燃点火
4)  spontaneous ignition temperature
自燃点
1.
Experimental study on the flash point and spontaneous ignition temperature of binary flammable liquid mixtures;
易燃液体二元混合物闪点、自燃点实验研究
2.
The results show that amyl nitrate and isooctyl nitrate can reduce the spontaneous ignition temperature and improve the cetane number of diesel fuel,amyl nitrate is better than isooctyl nitrate when doped aione,there exists antagonism between this two additives when used together.
用自燃点法对硝酸戊酯和硝酸异辛酯的性能进行了试验研究。
3.
In this paper,flash point and the spontaneous ignition temperature of ternary mixtures of flammable liquids consisting of alcohol species,ketone species and aether species with different proportion were studied by automatic closed-cup flash point tester and automatic ignition temperature detector.
利用自动低温闭口闪点测定仪、自动引燃温度测定仪对醇、酮、酯等不同情况下组成的三元混合液体的闪点、自燃点变化规律进行了实验研究,采用Taylor多项式,拟合出了三元混合液体闪点、自燃点随组分配比变化的经验计算公式,并通过实验数据对其进行了验证。
5)  self-ignition point
自燃点
1.
Probe to the definitions of ignition point and self-ignition point and their relation;
燃点、自燃点定义及其相互关系探讨
6)  auto-ignition temperature
自燃点
1.
Prediction of auto-ignition temperatures of alkanes by electrotopological state indices
应用电性拓扑状态指数预测烷烃自燃点
2.
The quantitative relationship existed between the auto-ignition temperature(AIT) and molecular structures of the hydrocarbon compounds were investigated based on the quantitative structure-property relationship(QSPR) study.
基于定量结构-性质相关性(QSPR)原理,研究了烃类物质自燃点与其分子结构间的内在定量关系;采用新近提出的支持向量机方法对90种烃类物质的自燃点进行了研究,建立了根据分子结构预测烃类物质自燃点的数学模型;分别采用内部验证及外部验证的方式对模型性能进行了验证。
补充资料:自燃
分子式:
CAS号:

性质:一种非人为点燃或加温而自然燃烧的现象。通常是在常温下,由于可燃物和空气中氧进行缓慢氧化积聚热量致使温度达到该物燃点所引起的。例如,白磷在空气中缓慢氧化,在白磷表面积聚的热量使温度达到40℃以上时,白磷即自发燃烧。稻草、煤炭、棉纱等易燃物,若储藏或堆放不合理,也会发生自燃。

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