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Photo-fermentative hydrogen gas production from dark fermentation effluent of ground wheat solution: Effects of light source and light intensity

机译:地面小麦溶液的暗发酵废水光发酵产生的氢气:光源和光强度的影响

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摘要

Dark fermentation effluent of wheat powder solution was subjected to light fermentation for bio-hydrogen production using different light sources and intensities. Tungsten, fluorescent, infrared (IR), halogen lamps were used as light sources with a light intensity of 270 Wm~(-2) along with sunlight. Pure culture of Rhodobacter sphaeroides-RV was used in batch light fermentation experiments. Halogen lamp was found to be the most suitable light source yielding the highest cumulative hydrogen formation (CHF, 252 ml) and yield (781 ml H_2g~(-1) TVFA). In the second set of experiments, light fermentations were performed at different light intensities (1-10 klux) using halogen lamp. The optimum light intensity was found to be 5 klux (approx. 176 Wm~(-2)) resulting in the highest CHF (88 ml) and hydrogen yield (1037 ml H_2 g~(-1)TVFA). Hydrogen formation was limited by the availability of light at low light intensities below 5 klux and was inhibited by the excess light above 5 klux.
机译:使用不同的光源和强度,将小麦粉溶液的深色发酵废液进行轻度发酵,以生产生物氢。钨,荧光,红外(IR),卤素灯被用作光源,其光强度为270 Wm〜(-2)以及日光。球形红细菌-RV的纯培养物用于间歇光发酵实验。发现卤素灯是产生最高累积氢形成量(CHF,252 ml)和产量(781 ml H_2g〜(-1)TVFA)的最合适的光源。在第二组实验中,使用卤素灯以不同的光强度(1-10 klux)进行光发酵。发现最佳光强度为5 klux(约176 Wm〜(-2)),从而获得最高的CHF(88 ml)和氢气产率(1037 ml H_2 g〜(-1)TVFA)。氢的形成受到低于5 klux的低光强度下光的可用性的限制,并受到高于5 klux的过量光的抑制。

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