1)  pyrolysis
热解烃
1.
In order to characterize the influences of maturation and water in the hydrogen isotopic compositions of individual n-alkanes from the pyrolysis,the simulation test of typeⅡsource rock was made by high-pressure autoclave.
对Ⅱ型未成熟源岩采用高压釜热模拟实验方法,研究了在有水及无水条件下,生成的热解烃中正构烷烃单体氢同位素随热成熟作用的变化情况。
2)  pyrolysis hydrocarbon sum
热解烃总量
3)  thermophilic desmolysing bacteria
嗜热解烃菌
4)  pyrolysis
热解
1.
The study progress of technology of pyrolysis of waste tines;
废橡胶热解技术研究进展
2.
Research on pyrolysis of spent alkaline zinc manganese dioxide batteries in a rotary kiln;
回转窑热解处理废锌锰电池试验研究
3.
Influencing factors and product property of low temperature pyrolysis of oil sludge;
含油污泥低温热解的影响因素及产物性质
5)  Pyrogenation
热解
1.
Experimental study on the characteristics of the Nitrogen releasing during pyrogenation of soft coal,carbonaceous coal and their blends;
烟煤、贫煤及其混煤氮热解释放特性试验研究
2.
Analysis of organic compounds in the pyrogenation gas products of longjing tea;
龙井茶叶热解气体产物中有机物的分析
3.
The experimental research about the pyrogenation characteristics of corn-straw at the different conditions;
玉米秸秆在不同条件下热解规律实验研究
6)  thermal degradation
热解
1.
The intercalated structures of the prepared polypropylene/montmorillonite(PP/MMT) nanocomposites were characterized with X-ray diffraction(XRD) and transmission electron microscopy(TEM),whereafter their thermal degradation mechanism and combustion properties were investigated by thermal gravimetry(TG),cone calorimetry,limited oxygen index(LOI),and UL 94 tests.
采用X射线衍射和透射电镜对所制备的聚丙烯/蒙脱土(PP/MMT)插层纳米复合材料的结构进行表征;通过热分析、锥形量热、氧指数、垂直燃烧测试对其热解和燃烧性能进行了研究。
2.
The thermal degradation of samples has been studied by thermal analysis, CONE calorimeter and IR.
将麻纤维用含氮、磷、卤的无机阻燃化合物处理 ,所得阻燃纤维采用热分析、锥形量热分析、红外光谱研究其热解行为 ,用氧指数、剩碳率、热释放速率和有效燃烧热等参数表征它的阻燃性能 ,并用Broido方程计算麻纤维的动力学参数热解活化能的变化。
3.
The thermal degradation experiments were carried out for some combustibles such as plastic, hardboard, cloth, board, and thipywood which are common in buildings.
对建筑物中常见的几种可燃物:塑料、硬纸板、布料、三合板、木板等,进行了热解实验,给出了其失重曲线,并导出了热解反应动力学参数———活化能E和频率因子A。
参考词条
补充资料:废物热解
分子式:
CAS号:

性质:是在缺氧或无氧条件下废物的热分解过程。热解温度为500~800℃,比焚烧温度低。有机废物的热解可得到能分离、回收和再利用的气体或液体燃料。另外,由于热解温度相对较低,因此热解过程产生的氮氧化物(NOχ)少,而且尾气排放量也少。目前,发达国家已有城市垃圾、废塑料和废轮胎热解处理的工业化装置,但成功运行的这类工业化装置毕竟还很少,因此从总体来说,废物热解技术尚处在试验性生产的中试阶段。

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