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首页> 外文期刊>International journal of hydrogen energy >Electro-hydrolysis of cheese whey solution for hydrogen gas production and chemical oxygen demand (COD) removal using photo-voltaic cells (PVC)
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Electro-hydrolysis of cheese whey solution for hydrogen gas production and chemical oxygen demand (COD) removal using photo-voltaic cells (PVC)

机译:使用光伏电池(PVC)对干酪乳清溶液进行电水解以产生氢气和去除化学需氧量(COD)

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Diluted cheese whey (CW) solution was used for hydrogen gas production by electro-hydrolysis using photo-voltaic cells (PVC) as source of electricity. Effects of initial chemical oxygen demand (COD) concentration on the rate and yield of hydrogen gas production were investigated using a completely mixed and sealed reactor with aluminum electrodes. Cumulative hydrogen gas formation (CHF) increased with increasing initial COD concentration. The highest cumulative hydrogen gas volume (26472 mL), hydrogen gas production rate (4553 mL d~(-1)), hydrogen yield (7004 mL H_2 g~(-1) COD), and percent COD removal (21.5%) were obtained with initial COD of 35172 mg L~(-1), H_2 gas formation from water control was only 5365 mL. pH of the CW solution increased with decreasing conductivities during the course of experiments. Gas phase contained more than 99% H_2 at the end of experiments. The highest energy efficiency (20.4%) was also obtained with the highest COD content. Nearly pure hydrogen gas formation by electro-hydrolysis of cheese whey using PVC panels was proven to be an effective method.
机译:稀释的干酪乳清(CW)溶液用于通过使用光伏电池(PVC)作为电源的电水解产生氢气。使用带有铝电极的完全混合和密封的反应器,研究了初始化学需氧量(COD)浓度对氢气产生速率和产率的影响。累积氢气形成量(CHF)随着初始COD浓度的增加而增加。最高累积氢气量(26472 mL),氢气生产率(4553 mL d〜(-1)),氢气产率(7004 mL H_2 g〜(-1)COD)和COD去除百分率(21.5%)以35172 mg L〜(-1)的初始COD所获得的水控制水生成的H_2气体仅为5365 mL。在实验过程中,CW溶液的pH随着电导率的降低而增加。在实验结束时,气相含有超过99%的H_2。还以最高的COD含量获得了最高的能源效率(20.4%)。事实证明,使用PVC面板通过电水解干酪乳清形成几乎纯净的氢气是一种有效的方法。

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