Development of methanogenic consortia in fluidized-bed batches using sepiolite of different particle size.

Microbiologia (Madrid, Spain) Pub Date : 1996-09-01
J M Sánchez, F Rodríguez, L Valle, M A Muñoz, M A Moriñigo, J J Borrego
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Abstract

The addition of support materials, such as sepiolite, to fluidized-bed anaerobic digesters enhances the methane production by increasing the colonization by syntrophic microbiota. However, the efficiency in the methanogenesis depends on the particle size of the support material, the highest level of methane production being obtained by the smaller particle size sepiolite. Because of the porosity and physico-chemical characteristics of these support materials, the anaerobic microbial consortia formed quickly (after one week of incubation). The predominant methanogenic bacteria present in the active granules, detected both by immunofluorescence using specific antibodies and by scanning electron microscopy, were acetoclastic methanogens, mainly Methanosarcina and Methanosaeta.

不同粒径海泡石流化床产甲烷联合体的研制。
在流化床厌氧消化池中添加海泡石等支撑材料,通过增加共生菌群的定植来提高甲烷产量。然而,产甲烷的效率取决于载体材料的粒径,粒径较小的海泡石产甲烷量最高。由于这些支撑材料的多孔性和物理化学特性,厌氧微生物群落很快形成(孵育一周后)。利用特异性抗体的免疫荧光和扫描电镜检测,活性颗粒中存在的主要产甲烷菌是醋酸破菌,主要是Methanosarcina和Methanosaeta。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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