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首页> 外文期刊>Journal of engineering thermophysics >Conversion of Tar in Supercritical Water/Oxygen Fluid with Soot Suppression
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Conversion of Tar in Supercritical Water/Oxygen Fluid with Soot Suppression

机译:超临界水/氧流体中焦油的烟尘抑制转化

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摘要

An autothermal mode of tar conversion was implemented in a vertical tubular reactor. The pressure was 30 MPa the tar and water flows were 4.9 and 6.9 g/min respectively the oxygen flow varied: 02.9 4.5 and 5.8 g/min. The tar was supplied from above at the first stage into a counter-flow of supercritical water (SCW) and at the subsequent ones into a flow of SCW/O-2 fluid. The high-molecular sedimentary layer (HSL) that formed at the first stage was replenished continuously at the subsequent stages consisted of tar components depositing on the bottom of the reactor and was suppressing formation of soot. The autothermal mode of the process was achieved due to heat release in the combustion of the lower part of the HSL in the SCW/O-2 fluid. With increased O-2 flow the power of ohmic heaters was reduced to zero and the reactor wall temperature increased from the initial 723 K to 818 K. Elemental and mass spectrometric analyses of the liquid and volatile conversion products collected at the outlet of the reactor as well as of the solid conversion residue taken from the reactor enabled determination of their amount and composition. This in turn allowed us to write down the gross reaction of tar conversion in the SCW/O-2 fluid and determine the characteristics of the equivalent fuel and the thermal effects of its oxidation.
机译:焦油转化的自热模式是在立式管式反应器中实现的。压力为30 MPa,焦油和水流量分别为4.9和6.9 g/min,氧气流量变化:02.9、4.5和5.8 g/min。在第一阶段,焦油从上方供应到超临界水 (SCW) 的逆流中,在随后的阶段供应到 SCW/O-2 流体中。第一阶段形成的高分子沉积层(HSL)在随后的阶段由沉积在反应器底部的焦油成分组成,抑制了烟尘的形成。该过程的自热模式是由于 SCW/O-2 流体中 HSL 下部燃烧时的热量释放而实现的。随着 O-2 流量的增加,欧姆加热器的功率降低到零,反应器壁温从最初的 723 K 增加到 818 K。 对反应器出口处收集的液体和挥发性转化产物以及从反应器中提取的固体转化残留物进行元素和质谱分析,可以确定其数量和成分。这反过来又使我们能够写下 SCW/O-2 流体中焦油转化的总反应,并确定等效燃料的特性及其氧化的热效应。

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