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Accelerating the separation of emulsified oil products using high electrostatic fields

机译:使用高静电场加速乳化油产品的分离

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To create an oil-based emulsified liquid, a blend of glycerol and biodiesel was stabilized with the aid of sodium oleate as an emulsifier. The time taken by the glycerol to settle down from the biodiesel under the sole effect of gravity has been compared to that attained under the influence of high electrostatic fields. Experiments were designed to study the effect of the employed electrode pairs, electrode distance, and voltage magnitude and polarity on the separation rate of glycerol. High DC voltage measurements and laser beam intensity readings were recorded every second via a computational micro-controller program. Results showed that the time taken to achieve 100% separation completeness under gravity reached 30,000?s (8.3?h). However, when an electrode pair was submerged to the proper height (4?cm apart) and the voltage was set to 2000?V, 99.02% separation completeness was reached within 1800?s (0.5?h). When the effect of the employed electrode pairs was studied, the obtained results revealed that the electrode pairs of different diameters gave the highest percentage of separation completeness and the shortest separation time at 4000?V. Gas chromatography (GC) analysis was performed to biodiesel samples before and after applying the high voltage. The results do not indicate the appearance of any foreign peaks, which confirms that the applied voltage has not create, or even initiate, any chemical reactions. Concerning the physical properties before and after applying the high voltage, insignificant changes has been measured in the density, refractive index, flash point, and water content.
机译:为了产生油基乳化液,借助于乳化剂溶液稳定甘油和生物柴油的混合物。将甘油在重力唯一的效果下从生物柴油中沉降的时间,以便在高静电场的影响下实现。设计实验以研究采用的电极对,电极距离和电压幅度和极性对甘油的分离速率的影响。通过计算微控制器程序每秒记录高直流电压测量和激光束强度读数。结果表明,在重力下实现100%分离完整性所需的时间达到30,000?S(8.3?H)。然而,当电极对被浸没到适当的高度(分开4℃)并且将电压设定为2000〜ΔV,在1800?s(0.5Ωh)内达到99.02%的分离完整性。当研究所用电极对的效果时,所得到的结果显示,不同直径的电极对具有最高百分比的分离完整性,并且在4000℃下的最短分离时间。在施加高电压之前和之后对生物柴油样品进行气相色谱(GC)分析。结果不表示任何外峰的外观,这证实施加的电压没有产生,甚至引起任何化学反应。关于施加高电压之前和之后的物理性质,在密度,折射率,闪点和含水量下测量了微不足道的变化。

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