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Electrical discharge phenomena application for solid fossil fuels in-situ conversion

机译:电气放电现象应用于原位转换的固体化石燃料

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The application of high voltage to oil shale initiates partial discharges (PDs) with the following treeing like in insulating dielectrics. Critical PDs and treeing with a high propagation rate occur under the low electrical intensity ~10~2 V/cm due to oil shale's high porosity, heterogeneity and anisotropy. The completed discharge occurs as a result of these phenomena. Carbonization is initiated around a plasma channel at the treeing stage and extended during electromagnetic action time. Carbonized rock electrical resistance decreases by 8÷10 degrees to 10 ohm·cm, and shale and coal could be heated by Joule heat in carbonized volume and discharge plasma. A high-current supply is necessary for this heating stage. Also, a high-voltage supply with steep-grade characteristics can be used for PDs and treeing initiating and heating the carbonized rock with low resistance. Thus, these phenomena allow in-situ processing in order to produce a flammable gas and synthetic oil from inferior solid fossil fuels by pyrolytic conversion. Computations show that the ratio between energy derived from gas flaming and energy for shale conversion is more than fifty. Therefore, oil shale conversion with the help of electrical discharge phenomena application can be very efficient, as it needs little energy.
机译:高电压施加到油页岩中的应用发起与以下树状组织的局部放电(PDS)等在绝缘电介质。临界PD和树化具有高传播速率低电强度〜10〜2伏/厘米下发生由于油页岩的高孔隙率,非均质性和各向异性。所完成的放电发生由于这些现象的结果。碳化是围绕在所述树结构化阶段的等离子体通道发起并在电磁作用时间延长。碳化岩石电阻8÷10度减小到10欧姆·厘米,页岩和煤可以通过焦耳热在碳化体积和放电等离子体被加热。一种高电流供给是必要的该加热阶段。此外,具有陡峭级特性的高电压电源可用于PD和树状组织发起和加热碳化岩石具有低电阻。因此,这些现象允许在原位,以便通过热解转化以产生从低劣固体化石燃料可燃性气体和合成油处理。计算表明,能量之间的比率从气体燃烧和能量用于页岩转化率大于50导出。因此,油页岩与放电现象应用程序的帮助转化率可以是非常有效的,因为它需要很少的能量。

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