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Effect of Biochar on the Cracking of Tar from the Pyrolysis of a Pine Sawdust in a Fixed Bed Reactor

机译:生物炭对固定床反应器中松树锯末热解焦油裂解的影响

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The effect of biochar on the cracking of the tar from pyrolysis of a pine sawdust was experimentally studied. The pine sawdust was pyrolyzed in a fixed bed reactor at 1123K with and without a pine sawdust biochar placed downstream of the pyrolysis process to crack the pyrolysis tar. The cracking temperatures tested were 923, 1023 and 1123K and the vapour residence times of the tar passing through the biochar studied were 0, 1.2, 2.3 and 3.8s. The pyrolysis liquid yield decreased and pyrolysis gas yield increased with increasing biochar cracking temperature and the vapour residence time. The main pyrolysis gases were H2, CO, CH4 and CO2. As the cracking temperature increased, the H2 yield increased while CH4 yield decreased. The CO concentration decreased when the cracking temperature increased from 973K to 1023K but then increased when the temperature continued to increase. The trend of the change of CO2 concentration as a function of the cracking temperature was opposite to that of CO. As the vapour residence time increased, the yields of H2 and CO2 increased while CH4 and CO yields decreased.
机译:实验研究了生物炭对松树锯末热解的焦油破裂的影响。松果在1123K的固定床反应器中热解,在1123K,没有松木锯末Biochar放置在热解过程下游以破解热解焦油。测试的裂化温度为923,1023和1123K,通过研究的生物炭的焦油的蒸气停留时间为0,1.2,2.3和3.8s。随着生物炭裂化温度和蒸汽停留时间的增加,热解液产量降低和热解气得产量增加。主要的热解气体是H 2,CO,CH 4和CO 2。随着裂化温度的增加,H 2产量增加,而CH 4产率降低。当裂化温度从973k升至1023K增加时,CO浓度降低,但随后在温度持续增加时增加。作为裂化温度的函数的CO 2浓度变化的趋势与CO的函数相反。随着蒸汽停留时间增加,H 2和CO 2的产率增加,而CH 4和CO屈服降低。

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