Thermodynamic and kinetic investigations of the SrBr2 hydration and dehydration reactions for thermochemical energy storage and heat transformation
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Keywords:
Exothermic reaction
Thermogravimetric analysis
Thermogravimetric analysis
Characterization
Thermogravimetry
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Abstract The thermal degradation of original and aged chloroprene rubber was studied using thermogravimetric analysis. Thermogravimetric analysis (TGA) and differential thermogravimetric analysis (DTG) techniques were used to detect the mass loss during the temperature elevation. By the analysis of the mass loss curves through usual kinetic methods, it was possible to evaluate the different degradation processes present in the overall degradation. The activation energies of the degradation processes were obtained using the dynamic, non-isothermal Kissinger and Osawa methods and the half-width at half-high technique (HWHH). The results obtained demonstrate clearly the differences between original and aged chloroprene rubber as well as the influence of the air and N2 in TGA.
Thermogravimetric analysis
Chloroprene
Degradation
Isothermal process
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Thermogravimetric analyses of the samples were performed on a Q-1000/D derivatograph of the F. Paulik, J. Paulik and L. Erdey system of the MOM company (). The method is based on registering changes in the thermochemical and physical parameters of a substance that can be caused when it is heated by the device. The thermochemical state of the sample is described by the curves: T (temperature), DTA (differential thermoanalytic), TG (thermogravimetric) and DTG (differential thermogravimetric). The last curve is derived from the TG function.
Thermogravimetric analysis
Differential thermal analysis
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Thermogravimetric analysis
Thermal Stability
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Thermal energy
Energy Recovery
Phase-change material
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In this paper, thermogravimetric analysis of different types/grades of polyvinyl chloride (PVC) wall panel is carried out using thermogravimetric analyzer. The data output from the analyzer is subjected to data analysis software i.e., OriginPro 2018, from which thermal attributes are find out for different grades of PVC wall panel i.e., soft PVC, hard PVC, WPVC and SPVC. The thermogravimetric attributes i.e., onset degradation temperature T i , final degradation temperature T f ,, reaction interval and the peak temperature T P from the derivative thermogravimetric curve for the four basic types of PVC were comparatively analyzed for the characterization purpose. Beside the thermal characterization, the thermogravimetric analysis also disclosed the compositional attributes of the four types of PVC wall panel. The analysis in this paper characterized the SPVC as the most thermally stable PVC wall panel followed by hard, soft and WPVC.
Thermogravimetric analysis
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Thermogravimetric and derivative thermogravimetric curves of some complexes [Ni(S2CNHR)2] (R=Me, Et, Pri, Bui, But, Bz,p-MePh,p-MeOPh,p-ClPh,p-NO2Ph) in a dynamic nitrogen atmosphere were studied to determine their modes of decomposition. All these complexes show similar TG profiles. The weight losses in the main decomposition stages indicate conversion of the nickel(II) dithiocarbamates to sulphide. Reaction orders were estimated via the shape characteristics of the corresponding derivative thermogravimetric curves and kinetic analysis of the thermogravimetric data was performed by using the Coats-Redfern and Horowitz-Metzger methods.
Thermogravimetric analysis
Derivative (finance)
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Thermogravimetric (TGA ) 与石油化学的蒸馏测量方法相比更好在不同的墙温度理解燃料电影蒸发的特征。90 的电影蒸发特征 # 汽油, 93 # 有不同起始的厚度的汽油 and0# 柴油机在不同环境流动被调查,加热评价。为这些燃料在燃料电影蒸发上加热率,电影厚度和环境流动的影响被发现。结果证明环境条件 inTGA 类似于为在内燃机的燃料电影的那些,因此从 TGA 的数据对燃料电影蒸发的分析合适。TGA 能模仿为燃料电影蒸发影响因素的钥匙并且能调查加热率和电影厚度的基本 quantifi-cational 效果。为了得到快速、足够的燃料,拍摄蒸发,足够地高的墙温度是必要的。蒸发时间以高加热率和薄电影厚度减少,并且强烈煤气的流动对支持燃料电影蒸发重要。从在 100 deg C/min 的一个热忘恩负义的人的 TGA 的数据适合分析柴油机电影蒸发在期间冷开始 andwarming 起来。由于紧张的分子的相互作用,蒸发顺序不能严格地根据每个部件的沸点被划分因为多部件在快蒸发过程期间溶解了混合,并且更重的部件能在到达他们的沸点前蒸发。0 # 当墙温度是 beyond250 deg C 时,柴油机电影将充分蒸发。
Thermogravimetric analysis
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