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Predicting biomass gasification histories with CBK/G. Part 1. Kinetic parameter assignments

机译:用CBK / g预测生物量气化历史。第1部分。动态参数分配

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With coal chars, CBK/G is a reaction mechanism that accurately predicts gasification histories across the commercial domain of temperature, pressure, gas composition, size, and coal quality, given data to tune-in a single kinetic parameter for each char sample. This study develops a CBK/G parameter estimation protocol for biochars from diverse biomass forms. Kinetic parameters are specified to accurately match gasification histories for 17 biochars from 700 to 1000 degrees C at steam and CO2 pressures to 0.1 MPa. With biochars, calibration data must specify both a frequency factor and activation energy for the desorption of a surface carbon oxide. Half the biochars in the database required different activation energies than the 180 kJ/mol baseline value, which spread the assigned energies from 130 to 220 kJ/mol. Woods in raw, torrefied, and pelleted forms tend to have the fastest reactivities, along with a few biochars of agricultural residues (AgRes). The biochars of grasses and AgRes have reactivities only one-third of woods', although the reactivities of diverse AgRes biochars spans a very broad range. Steam gasification is faster than CO2 gasification, but the differences in rates are much smaller than with coal chars. The cross relations in CBK/G that relate channels for steam and CO2 gasification remain to be validated with tests under both steam and CO2 and their mixtures for diverse biochars.
机译:通过煤炭,CBK / G是一种反应机制,可准确地预测整个炭质量,压力,气体组成,大小和煤炭质量的商业领域的气化历史,给予每个CHAR样品的单个动力学参数。该研究为来自不同生物量形式的Biochars开发CBK / G参数估计协议。在蒸汽和CO2压力下将动力学参数精确地与700至1000摄氏度的17个生物区匹配为0.1MPa。使用Biochars,校准数据必须指定用于表面碳氧化物的解吸的频率因子和激活能量。数据库中的一半Biochars需要不同于180 kJ / mol基线值的不同激活能量,该值将分配的能量从130分开至220 kJ / mol。原始,泪水和颗粒形式的树林往往具有最快的反应性,以及一些农业残留物的生物群(农业)。虽然多元化的反应性跨越了植物的反应性,但是只有三分之一的伍兹的旧曲子的生物炸片。蒸汽气化比CO2气化快,但速率的差异远小于煤炭。 CBK / G中的交叉关系仍然在蒸汽和二氧化碳的试验及其混合物中验证蒸汽和CO2气体通道的CBK / g仍然核实。

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