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Co-pyrolysis characteristics of coal and sludge blends using thermogravimetric analysis

机译:Co-pyrolysis煤和污泥的特征混合使用热重分析

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摘要

Co-pyrolysis characteristics of low grade coal (LGC) and sludge derived fuel (SDF) as well as their blends (L/S=85/15, 75/25, 50/50, and 25/75) were determined at nonisothermal (10, 20, and 30 degrees C/min) conditions in nitrogen atmosphere using thermogravimetric analyzer (TGA). The results indicated that SDF decomposed at a lower temperature than LGC and weight loss of L/S blends was lower than individual LGC or SDF. The difference of weight loss between experimental measurement and theoretical calculation reached circa 0.82 to 2.50 wt % at around 900 degrees C, indicating that there was an inhibitive effect between LGC and SDF. In addition, textural analysis also confirmed the assumption that L/S blend char had higher surface area but less micropore. The results of kinetics analysis showed that the process could be described by two or three consecutive first order reactions, which revealed the possible mechanism of co-pyrolysis behaviors between LGC and SDF. The estimated kinetics parameters (activation energies and pre-exponential factors) for LGC, SDF and their blends were found to be in the range of 16.3 to 144.1 kJ/mol and 1.21 to 4.09 x 10(10) min(-1), respectively. Lower activation energies observed in the relevant decomposition stages indicated that the reaction became faster upon blending. (c) 2015 American Institute of Chemical Engineers Environ Prog, 34: 1780-1789, 2015
机译:Co-pyrolysis低煤级的特征(LGC)和污泥衍生燃料(SDF)他们的混合(L / S = 85/15, 75/25, 50/50, 25/75)确定在非等温(10、20和30度/分钟)条件在氮气氛用热重分析仪(TGA)。结果表明,自卫队分解较低温度比LGC和减肥的L / S混合低于个人LGC或自卫队。不同实验之间的减肥测量和理论计算大约0.82到2.50 wt %在900摄氏度左右,表明有抑制的效果LGC和自卫队之间。分析也证实了假设L / S混合字符有更高的表面积但更少微孔。表明,该过程可以被两个三个连续一阶反应,揭示了co-pyrolysis的可能机制LGC和自卫队之间的行为。(激活能量和动力学参数LGC pre-exponential因素),自卫队和他们混合是在16.3的范围144.1焦每摩尔,1.21到4.09 x 10(10)最小值(1),分别。在相关分解阶段在混合反应变得更快。美国化学工程师学会(c) 2015约34:1780-1789 Prog, 2015

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