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首页> 外文期刊>Transactions of the ASABE >HIGHLY EFFICIENT BIODIESEL CONVERSION FROM SOYBEAN OIL USING LIQUID-PHASE PLASMA DISCHARGE TECHNOLOGY
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HIGHLY EFFICIENT BIODIESEL CONVERSION FROM SOYBEAN OIL USING LIQUID-PHASE PLASMA DISCHARGE TECHNOLOGY

机译:使用液相等离子体放电技术从大豆油的高效生物柴油转换

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摘要

In this study, the use of liquid-phase plasma discharge (LPPD) technology to accelerate the transesterification process was explored. An innovative LPPD reactor was first evaluated by varying the conductive opening size on the dielectric plate (0.75, 1.0, and 1.25 mm) coupled with five methanol to oil molar ratios (MOMR; 3, 4, 5, 6, and 7) and two liquid flowrates through the reactor (2.7 and 4.1 mL s(-1)) at a given catalyst (NaOH) to oil ratio (NaOR) of 0.8% (w/w). The optimal combination of opening size (1.0 mm), MOMR (5), and flowrate (2.7 mL s(-1)) was then fixed while the NaOR was varied from 0.4% to 1.2% (w/w) in 0.2% increments to determine the best NaOR for the reactor. The results showed that the best combination of the four operating parameters was an opening size of 1.0 mm, MOMR of 5, liquid flowrate of 2.7 mL s(-1), and NaOR of 0.6% (w/w), with which a biodiesel conversion rate of 99.5% was obtained at an applied voltage of 1.2 kV. The transesterification reaction time was found to be only 923 ms. The developed LPPD technology has potential to position biodiesel competitively against petroleum diesel.
机译:在本研究中,探讨了使用液相等离子体放电(LPPD)技术来加速酯交换过程。首先通过改变与五甲醇与油摩尔比(MOMR; 3,4,5,6和7)和2个甲醇的电介质板(0.75,1.0和1.25mm)上的导电开口尺寸进行评估,通过改变导电开口尺寸来评估创新的LPPD反应器。在给定的催化剂(NaOH)中通过反应器(2.7和4.1ml S(-1))流量的液体流量为0.8%(w / w)的油比(NaOR)。然后固定开口尺寸(1.0mm),MOMR(5)和流量(2.7ml S(-1))的最佳组合,同时N NOOR以0.2%的增量变化0.4%至1.2%(w / w)确定反应堆的最佳NaOR。结果表明,四个操作参数的最佳组合是1.0mm,5,液体流量为2.7ml s(-1)的液体流量,NaOR为0.6%(w / w),其中一个生物柴油在1.2 kV的施加电压下获得99.5%的转化率。发现酯交换时间仅为923ms。开发的LPPD技术有可能竞争地对抗石油柴油的竞争地位。

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