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流速和基质浓度对光合细菌生物膜形成和产氢的影响。

Effects of flow rate and substrate concentration on the formation and H2 production of photosynthetic bacterial biofilms.

机构信息

Key Laboratory of Low-Grade Energy Utilization Technologies and Systems (Chongqing University), Ministry of Education, Chongqing 400030, China.

出版信息

Bioresour Technol. 2011 Jul;102(13):6902-8. doi: 10.1016/j.biortech.2011.04.026. Epub 2011 Apr 15.

Abstract

Photosynthetic bacteria (PSB), Rhodopseudomonas palustris CQK 01, were immobilized on the surface of a thin glass slide in a lab-scale flat panel photobioreactor under different flow rates and substrate concentrations. The morphology, dry weight and thickness of the mature PSB biofilms were determined to reveal the relationship between biofilm formation and hydrogen production performance. The mature biofilm formed at a low flow rate and a high substrate concentration showed a looser structure, these structures of the mature biofilm then affected the H(2) production performance of the bioreactor during mature stage. The biofilm formed at a flow rate of 228 ml/h and a substrate concentration of 60 mmol/l exhibited the highest dry weight and optimally porous structure, which is beneficial not only for hydrogen removal from the biofilm but also glucose diffusion into the biofilm, thus significantly boosting the photo-hydrogen production performance.

摘要

光合细菌(PSB),沼泽红假单胞菌 CQK01,在实验室规模的平板光生物反应器中,在不同流速和底物浓度下,被固定在薄玻璃幻灯片的表面上。测定成熟 PSB 生物膜的形态、干重和厚度,以揭示生物膜形成与产氢性能之间的关系。在低流速和高底物浓度下形成的成熟生物膜具有较疏松的结构,这些成熟生物膜的结构进而影响生物反应器在成熟阶段的 H2 生产性能。在流速为 228ml/h 和底物浓度为 60mmol/l 的条件下形成的生物膜表现出最高的干重和最佳的多孔结构,这不仅有利于从生物膜中去除氢气,而且有利于葡萄糖向生物膜中的扩散,从而显著提高了光产氢性能。

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