Zampieri Raffaella Margherita, Touloupakis Eleftherios, Faraloni Cecilia, Moia Isabela Calegari
Department of Agriculture, Food, Environment and Forestry, University of Florence, Via San Bonaventura 13, 50145 Firenze, Italy.
Research Institute on Terrestrial Ecosystems, National Research Council, Via Madonna del Piano 10, 50019 Sesto Fiorentino, Italy.
Microorganisms. 2025 Jun 14;13(6):1386. doi: 10.3390/microorganisms13061386.
In this work, the ability of the photosynthetic purple non-sulfur bacterium sp. to produce H was investigated in two cylindrical photobioreactors (PBRs). The PBRs used in this work had different working volumes: 0.2 L of working volume (named 0.2-PBR) and 4.0 L of working volume (named 4.0-PBR). Two mixing methods were tested in the 4.0-PBR. The first used a rotor with four paddles, and the second a spiral rotor. Additionally, light conversion efficiency (LCE) was assessed for the three conditions tested. The culture in the 0.2-PBR produced 142.15 mL of H with an average H production rate of 0.74 mL/h, an average productivity of 3.70 mL/L/h and an LCE = 0.59%. The culture in the 4.0-PBR produced a total of 806.05 mL and 1642 mL of H with the paddle rotor and the spiral rotor, respectively. The average H production rate and LCE of the two rotors were 2.29 mL/h and LCE = 0.58% in the case of the paddle rotor and 2.87 mL/h and LCE = 0.72% in the case of the spiral rotor. The more uniform and thus more efficient mixing of the cells achieved with the spiral rotor played an important role compared to the paddle rotor, resulting in a higher LCE. This study presents a scale-up from 0.2 L to 4.0 L of the photofermentation process using the purple non-sulfur bacterium sp. S16-VOGS3.
在这项工作中,研究了光合紫色非硫细菌sp.在两个圆柱形光生物反应器(PBR)中产生氢气的能力。本工作中使用的PBR具有不同的工作体积:0.2升工作体积(命名为0.2-PBR)和4.0升工作体积(命名为4.0-PBR)。在4.0-PBR中测试了两种混合方法。第一种使用带有四个桨叶的转子,第二种使用螺旋转子。此外,还评估了所测试的三种条件下的光转换效率(LCE)。0.2-PBR中的培养物产生了142.15毫升氢气,平均产氢速率为0.74毫升/小时,平均生产力为3.70毫升/升/小时,LCE = 0.59%。4.0-PBR中的培养物使用桨叶转子和螺旋转子分别产生了总计806.05毫升和1642毫升氢气。对于桨叶转子,两种转子的平均产氢速率和LCE分别为2.29毫升/小时和LCE = 0.58%,对于螺旋转子,平均产氢速率和LCE分别为2.87毫升/小时和LCE = 0.72%。与桨叶转子相比,螺旋转子实现的细胞混合更均匀、更高效,这起到了重要作用,导致LCE更高。本研究展示了使用紫色非硫细菌sp. S16-VOGS3将光发酵过程从0.2升扩大到4.0升。