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Effect of process variables on photosynthetic algal hydrogen production

机译:工艺变量对光合作用藻氢产生的影响

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Chlamydomonas reinhardtii is a green alga that can use the sun's energy to split water into O-2 and H-2. This is accomplished by means of a two-phase cycle, an aerobic growth phase followed by an anaerobic hydrogen production phase. The effects of process variables on hydrogen production are examined here. These variables include cell concentration, light intensity, and reactor design parameters that affect light transport and mixing. An optimum cell concentration and light intensity are identified, and two reactor designs are compared. The maximum hydrogen production observed in this study was 0.29 mL of hydrogen per milliliter of suspension. This was measured at atmospheric pressure during a 96 h production cycle. This corresponds to an average hydrogen production rate of 0.12 mmol/mL(.)h.
机译:莱茵衣藻是一种绿藻,可以利用太阳的能量将水分解为O-2和H-2。这通过两阶段循环来完成,即有氧生长阶段,然后是厌氧制氢阶段。在此检查工艺变量对制氢的影响。这些变量包括细胞浓度,光强度以及影响光传输和混合的反应器设计参数。确定最佳细胞浓度和光强度,并比较两种反应器设计。在这项研究中观察到的最大氢气产生量为每毫升悬浮液0.29 mL氢气。这是在96小时生产周期的大气压下测量的。这对应于0.12mmol / mL(.h)的平均氢气产生速率。

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