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1)  Thermal degradation temperature
热降解温度
2)  linear heating rates
平衡热降解温度
1.
The degradation process of Cl PP with different Cl content in N 2 and air in linear heating rates have been studied by using TG DTG DSC.
用TG-DTG-DSC法研究了低氯化聚丙烯(Cl-PP)在空气、N2气流中线性升温时的热降解,发现随Cl%增加,主链脱HCl的失重率增大,而主链的降解失重率减小;N2气中平衡热降解温度T0p1、T00。
3)  degradation temperature
降解温度
4)  isothermal degradation
等温热降解
1.
The thermal stability of POM/COPA and POM/SAN/PA were studied in both nitrogen and air atmosphere by isothermal degradation at 220 ℃ and constant heating rate thermogravimetric analysis(TGA).
结果表明,加入稳定剂COPA、PA的聚甲醛体系在220℃等温热降解1h的失重率远小于空白POM;TG分析数据也显示改性后的聚甲醛体系在氮气中的Tonset明显高于空白POM,空气中空白POM的活化能及分解温度均低于改性聚甲醛。
5)  pyrolysis temperature
热解温度
1.
Effect of pyrolysis temperature on pyrolysate during fast pyrolysis of industrial lignin made by acid precipitation;
热解温度对酸沉淀工业木质素快速热解液体产物的影响
2.
By controlling only pyrolysis temperature of Fe(CO)5, polycrystalline iron fibers with tunable structure and chemical compositions were prepared by carrier gas flow induced method.
仅通过控制Fe(CO)5的热解温度(Td),用气流诱导法制备了化学组成与结构可控的多晶铁纤维。
3.
The change of final pyrolysis temperature,characteristic of waste,rate of gas yield and the key element of gas calorific value were studied in detail.
结果表明:实用热解设备的产气率高,理想热解温度在700℃以下。
6)  pyrolytic temperature
热解温度
1.
Effects of pyrolytic temperature of phenanthrene on its adsorption to black carbon;
黑碳制备的不同热解温度对其吸附菲的影响
2.
To study the effects of pyrolytic temperature on the cation exchange capacity(CEC) of the crop-residue-derived black carbon(BC) and the Pb2+ and Cd2+ sorption on BC,the BC was isolated from the charred wheat residues by pyrolyzing the wheat residues under the oxygen-limited conditions for 24 h at 150,250,300,400 and 500 ℃ respectively.
为探讨热解温度对秸杆燃烧物提取黑碳阳离子交换量和重金属吸附量的影响,在150~500℃范围24h热解小麦秸秆,提取黑碳,测定黑碳阳离子交换量(CEC)和黑碳吸附铅(Pb2+)和镉(Cd2+)量。
3.
A gas chromatograph was used to measure the oxygen content of coal sample under different pyrolytic temperatures.
通过对采集煤样进行热解试验,用气相色谱仪测定了试验煤样在不同热解温度下氧气的含量,分析了氧气随温度变化规律,得出耗氧速率与温度的数量关系,用于判定煤炭自燃的阶段,为科学控制煤炭自燃、防止煤炭自燃的发生提供决策依据。
补充资料:热降
分子式:
CAS号:

性质:工质在理想热机中绝热膨胀开始和完结时的热含量的差值:h0=i1-i2

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