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Processing of Used Beveraged Waste for Production of Hydroge Gas with Electrolysis Process Using NaOH Catalyst

机译:用NaOH催化剂加工用于生产氢气的氢气用电解过程

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The production of hydrogen gas as an alternative fuel cell which is a renewable energy, is now in great demand by utilizing waste aluminum beverage cans and added water using NaOH catalyst by electrolysis process. The research method will be carried out by inserting 1 gram of aluminum pieces into a tube and 300 ml of distilled water followed by a NaOH catalyst. Both faucets are opened to release air during the filling process. The faucet is closed when the height of the solution in both tubes is the same. Then turn on the DC flow, then adjust the voltage according to the variable. The filling period is recorded until the specified reaction time. The results of the gas volume obtained are recorded, and the hydrogen obtained is determined by the flame test. From the research it can be concluded that the hydrogen gas produced from the reaction can be identified by means of a flame test. The characteristics of hydrogen gas appear in flames which tend to disappear in the air. At Al 5 gr Weight : 5 M NaOH concentration is the largest volume of hydrogen. The reaction time of 150 minutes will produce a lot of hydrogen gas. The largest volume of hydrogen gas lies at a voltage of 20 volts.
机译:通过利用废铝饮料罐和使用NaOH催化剂通过电解过程利用废铝饮料和加入水,其作为可再生能量的替代燃料电池的生产是如此优越。将通过将1克铝碎片插入管中并300ml蒸馏水,然后是NaOH催化剂来进行研究方法。在填充过程中打开两个龙头以释放空气。当两个管中的溶液的高度相同时,龙头关闭。然后打开直流流,然后根据变量调节电压。记录填充期直至指定的反应时间。记录的气体体积的结果,得到的氢通过火焰试验确定。从研究来,可以得出结论,可以通过火焰试验鉴定由反应产生的氢气。氢气的特性出现在火焰中,趋于在空气中消失。在Al 5 GR重量:5米NaOH浓度是最大的氢气量。 150分钟的反应时间将产生大量的氢气。最大体积的氢气位于20伏的电压下。

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