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Voltammogram of Stainless Steel/Fe-Co-Ni Electrode on Water Electrolysis in Base Condition with Dahlia Pinnata Tuber Starch Media

机译:用大丽花Pinnata块茎淀粉培养基在基地条件下水电解的不锈钢/ Fe-Co-Ni电极伏安图

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Hydrogen production in a safe, enviromentally friendly, and inexpensive is an attempt to realize energy needs commercially, one of them is electrolysis. Many attempts which relate with water electrolysis had been conducted to produce hydrogen, for example by using wastewater as water substitution. The research is to study the effect of dahlia pinnata tuber starch to stainless steel/Fe-Co-Ni electrode activity on water electrolysis in base condition. Stainless steel/Fe-Co-Ni electrode activity for breaking the water molecules eventually is better than stainless steel electrode, either there is existance of dahlia pinnata tuber starch or not. The presence of dahlia pinnata tuber starch apparently makes the covering on surface of the electrode so the catalytic activity of the electrode is reduced. Covering is mostly affected by dahlia pinnata tuber starch concentration. Wastewater which contains starch, especially dahlia pinnata tuber starch, obviously is not good enough because hydrogen production rate becomes obstructed.
机译:氢气生产安全,环境友好,廉价是在商业上进行能源需求的尝试,其中一个是电解。已经进行了许多与水电解相关的尝试以产生氢,例如通过使用废水作为水取代。该研究是研究大丽花Pinnata块茎淀粉对碱条件下水电解的不锈钢/ Fe-Co-Ni电极活性的影响。用于破坏水分子的不锈钢/ Fe-Co-Ni电极活性最终比不锈钢电极更好,无论是真皮橡胶淀粉淀粉都存在。大麻疙瘩块茎的存在显然使覆盖物在电极的表面上,因此电极的催化活性降低。覆盖物主要受到大丽花Pinnata块茎淀粉浓度的影响。含有淀粉的废水,特别是大丽花Pinnata块茎淀粉,显然不够好,因为氢气产率受阻。

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