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Bioreactors for H_2 Production by Purple Nonsulfur Bacteria

机译:紫色无硫细菌生产H_2的生物反应器

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Two types of laboratory-scale bioreactors were designed for H_2 production by purple nonsulfur bacteria. The bioreactors employed a unique type of hydrogenase activity found in some photosynthetic bacteria that functions in darkness to shift CO (and H_2O) into H_2 (and CO_2). The mass transport of gaseous CO into an aqueous bacterial suspension was the rate-limiting step and the main challenge for bioreactor design. Hollow-fiber and bubble-train bioreactors employing immobilized and free-living bacteria have proven effective for enhancing the mass transfer of CO. The hollow-fiber bioreactor was designed so that both a growth medium and CO (10% in N_2) passed from the inside of the fibers to the outside within the bioreactor. Bacteria were immobilized on the outer surface of the hollow fibers. Hydrogen production from CO at an average rate of 125 ml g cdw~(-1) h~(-1) (maximum rate of 700 ml g cdw~(-1) h~(-1)) was observed for more than 8 months. The bubble-train bioreactor was built using polyvinyl chloride (PVC) tubing, wound helically on a vertical cylindrical supporting structure. Small bubbles containing CO were injected continuously through a needle/septum connection from the gas reservoir (20% CO). Up to 140 ml g cdw~(-1) h~(-1) of H_2 production activity was observed using this bioreactor for more than 10 days.
机译:设计了两种类型的实验室规模的生物反应器,用于由紫色非硫细菌生产H_2。该生物反应器利用了在某些光合细菌中发现的独特类型的氢化酶活性,这些酶在黑暗中起作用,将CO(和H_2O)转变为H_2(和CO_2)。气态CO向细菌水悬浮液的大量运输是限速步骤,也是生物反应器设计的主要挑战。事实证明,采用固定化和自由活动细菌的中空纤维和气泡培养生物反应器可有效提高CO的传质。中空纤维生物反应器的设计应使生长培养基和CO(N_2中的10%)都通过纤维内部到生物反应器外部。细菌被固定在中空纤维的外表面上。观察到从CO生成氢气的平均速率为125 ml g cdw〜(-1)h〜(-1)(最大速率为700 ml g cdw〜(-1)h〜(-1))。个月。气泡火车生物反应器是使用聚氯乙烯(PVC)管制成的,螺旋缠绕在垂直的圆柱形支撑结构上。含二氧化碳的小气泡通过针/隔膜连接从储气罐中连续注入(20%CO)。使用该生物反应器观察到多达140 ml g cdw〜(-1)h〜(-1)的H_2生产活性超过10天。

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