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Electrochemical method for wet removal of phosphine

机译:电化学方法湿清除磷化氢

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摘要

The removal of phosphine (PH3) was studied with an electrochemical approach using a Ti/SnO2 anode. The effects of the current density, O-2 content, gas flow rate, temperature, and type of electrolyte on the PH3 removal were investigated. The liquid phase reaction products were detected by ion chromatography. It was observed that PH3 was effectively removed in the electrochemical reactor and phosphate (PO43-) existed in solution after reaction. Increasing current density, oxygen content and reaction temperature can enhance the removal of PH3. 0ver 85% PH3 was removed with an operation condition of current density of 53.05 mA/dm(2), 65 degrees C, 4.6 vol % O-2 and gas flow rate of 200 mL/min in 0.1 mol/L Na2SO4 aqueous solution. Chosen Na2SO4 as electrolyte, removal efficiency remained stability and it would be conducive to the recovery of phosphate (PO43-). The gas flow rate influence is remarkably clear in the reactor where it was evident that the most efficient gas flow rate toward a 90% PH3 removal was reached at 50 mL/min. Electrochemical oxidation will be a potential method for the PH3 removal because of its low cost, long duration removal efficiency and the valuable hydrogen byproduct produced. (c) 2015 American Institute of Chemical Engineers Environ Prog, 34: 1640-1646, 2015
机译:磷化氢的移除(PH3)进行了研究使用Ti / SnO2阳极电化学方法。电流密度的影响,0 2内容,气体流速、温度、和类型电解液的PH3删除了。产品检测液相反应通过离子色谱法。是有效地在电化学中删除反应堆和磷酸盐(PO43 -)中存在的解决方案后的反应。氧含量和反应温度加强PH3的去除。删除当前的操作条件密度53.05 mA / dm(2), 65度C, 4.6卷% 0 2和气体流速0.1的200毫升/分钟mol / L Na2SO4水溶液。电解液,去除效率这将有利于稳定复苏的磷酸盐(PO43 -)。影响反应堆的非常清楚很明显,最有效的气体在哪里流量90% PH3删除了50毫升/分钟。为PH3删除,因为潜在的方法它的低成本、长时间去除效率和有价值的氢产生的代谢产物。2015年美国化学工程师协会约34:1640-1646 Prog, 2015

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