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Enhanced Performance of Bioelectrochemical Hydrogen Production using a pH Control Strategy

机译:使用pH控制策略提高生物电化学氢气产生的性能

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The use of membranes in microbial electrolysis cells (MEC) is required to obtain high-purity hydrogen and to avoid the consumption of hydrogen by undesired microorganisms. However, its utilization results in pH gradients across the membrane that contribute to potential losses and reduce the efficiency of MEC. Several pH-controlled and noncontrolled scenarios were evaluated in this work, which evidenced that pH control is beneficial for the MEC performance. The best results were obtained if the anodic and cathodic pH were controlled at 7.5 and 2.0, respectively, to produce 0.58 m(3)m(-3)d(-1) of hydrogen at an applied voltage of only 0.2 V. The energy efficiency with respect to the electrical input was increased up to 883 %. Anodic pH control allowed us to maintain a stable exoelectrogenic activity with practically constant current intensity, whereas cathodic pH control at 2.0 allowed a fivefold decrease of the required electrical input, which opens new opportunities for the economy of its full-scale application.
机译:需要在微生物电解细胞(MEC)中使用膜来获得高纯度氢,并避免不需要的微生物消耗氢。然而,其利用率导致膜的pH梯度有助于潜在的损失和降低MEC的效率。在这项工作中评估了几种pH控制和非控制情景,这证明了PH控制对MEC性能有益。如果在7.5和2.0分别控制阳极和阴极pH值,则获得了最佳结果,以在施加的电压下产生0.58m(3)m(-3)d(-1)氢的氢。能量电气输入的效率高达883%。阳极pH控制使我们能够通过实际恒定的电流强度保持稳定的外部电活性,而2.0的阴极pH控制允许五倍降低所需的电气输入,这为其全面应用的经济开辟了新的机会。

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