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Use of pressure manifestations following the water plasma expansion for phytomass disintegration

机译:在水等离子膨胀后利用压力表现来分解phyphyass

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A prototype capable of generating underwater high-voltage discharges (3.5 kV) coupled with water plasma expansion was constructed. The level of phytomass disintegration caused by transmission of the pressure shockwaves (50-60 MPa) followed by this expansion was analyzed using gas adsorption techniques. The dynamics of the external surface area and the micropore volume on multiple pretreatment stages of maize silage and sunflower seeds was approximated with robust analytical techniques. The multiple increases on the reaction surface were manifest in up to a 15% increase in cumulative methane production, which was itself manifest in the overall acceleration of the anaerobic fermentation process. Disintegration of the sunflower seeds allowed up to 45% higher oil yields using the same operating pressure.
机译:构建了能够产生水下高压放电(3.5 kV)以及水等离子膨胀的原型。使用气体吸附技术分析了由压力冲击波(50-60 MPa)的传播以及随后的膨胀引起的植物气崩解的水平。玉米青贮和葵花籽在多个预处理阶段的表面积和微孔体积的动态变化采用了可靠的分析技术进行了估算。反应表面的多次增加体现为累积甲烷产量最多增加15%,这本身就体现在厌氧发酵过程的整体加速中。在相同的操作压力下,葵花籽的分解可使油的产率提高多达45%。

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