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Effect of anode depth to produce nitrate through plasma electrolysis with air injection in Na_2SO_4 solution

机译:阳极深度通过在Na_2SO_4溶液中通过血浆电解产生硝酸盐的效果

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Nitrogen is the most important substance in fertilizer to produce high quality harvest. Nitrogen, which comes from the air, can formed as ammonia and nitrate in fertilizer. In industry, the most common fertilizer contain ammonia not nitrate because of its production process easiness compared to nitrate. Ammonia has fertilization efficiency 40% and nitrate has fertilization efficiency 60%. Industrial fertilizer production process nowadays, ammonia synthesis which called Haber-Bosch process, still not environmental friendly and also consume high energy. Environmental friendly and lower energy process is needed to produce fertilizer. Some study related to nitrogen fixation to produce fertilizer has been made including plasma electrolysis method. Plasma electrolysis is an effective method to fix nitrogen from the air because of its ability to produce OH radicals and other radicals to break the N_2 bound to produce nitrate with lower energy consumption compared to Haber-Bosch process. This method is implemented in batch reactor with variation of anode depth. This study has proven can produce nitrate up to 1,200 ppm in condition power 800 watt, anode depth 1.5-3.5 cm and Na_2SO_4 electrolyte concentration 0.02 M.
机译:氮是肥料中最重要的物质,以产生高质量的收获。来自空气的氮气可以形成为氨和肥料中的氨。在工业中,最常见的肥料含有氨而不是硝酸盐,因为与硝酸盐相比它的生产过程容易。氨具有施肥效率40%,硝酸盐具有施肥效率60%。现在工业肥料生产过程,氨合成,叫做Haber-Bosch工艺,仍然没有环境友好,也消耗了高能量。需要环境友好和更低的能量过程来生产肥料。已经进行了与氮固定有关生产肥料的研究,包括等离子体电解方法。等离子体电解是一种有效的方法,用于从空气中固定氮的方法,因为它产生OH基团和其他基团以破坏结合的N_2以产生硝酸盐,与Haber-Bosch工艺相比能够降低能量消耗。该方法以批量反应器实现,具有阳极深度的变化。该研究已被证明可以在条件电源800瓦,阳极深度1.5-3.5cm和NA_2SO_4电解质浓度0.02米的情况下生产硝酸盐高达1,200ppm。

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