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Population Changes of Eubacteria, Sulfate-Reducing Bacteria and Methanogenic Archaea in an Anaerobic Reactor Processing Ethanol Distillery Vinasse

机译:厌氧反应器加工乙醇酿酒厂的血液菌,硫酸盐降低细菌和甲状腺原煤的人口变化

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摘要

Abstract The microbiological characterization by molecular techniques (DGGE and quantitative PCR) of Archaea, Bacteria domain and sulfate-reducing bacteria (SRB) from a laboratory scale Up-flow Anaerobic Sludge Blanket (UASB) processing sugar cane vinasse was performed during the operational phase with increasing organic loads. The organic load removal efficiency was between 97% and 75% for volumetric organic loads (VOL) in the range of 0.6 to 15.4 kgCOD.m-3.d−1 and for higher VOL (until 27.0 kgCOD.m-3 .d−1) the removal efficiency decreased to 48%. Archaea represented the majority of the estimated population (107 copies of 16S RNA ribosomal gene. mL-1) followed by bacteria (106 copies of 16S RNA ribosomal gene. mL-1) and sulfate-reducing bacteria (SRB) (105 copies of dsrB gene. mL-1). There was a significant difference between the populations of Archaea and SRB with increasing VOL. DGGE profiles show differences among populations with increasing VOL, especially with respect to sulfate-reducing bacteria. The presence of SRB together with a high sulfate removal percentage (97%) of about 15 kgCOD.m-3d-1h, indicates the establishment of a sulfidogenic process.
机译:摘要在运营阶段进行了来自实验室尺度上流动厌氧污泥毯(UASB)加工甘蔗渣(UASB)的分子,细菌结构域和硫酸盐降低细菌(SRB)的分子技术(DGGE和定量PCR)的微生物表征是在运营阶段进行的增加有机载荷。有机载荷去除效率在0.6至15.4 kgcod.m-3.D-1的体积有机载荷(VOL)的97%和75%之间为0.6至15.4 kgcod.m-3.d-1和更高的Vol(直到27.0kgcod.m-3。 - 1)去除效率降至48%。 Archaea代表大多数估计人群(107份16S RNA核糖体基因。ML-1),然后是细菌(106拷贝的16S RNA核糖体基因。ML-1)和硫酸盐还原细菌(SRB)(105份DSRB拷贝基因。ML-1)。古代群体和SRB含量越来越多的Vol。 DGGE型材显示群体的差异随着VOL的增加,特别是关于硫酸盐还原细菌。 SRB的存在与高硫酸盐除去百分比(97%)约为15kgcod.m-3d-1h表明建立磺化过程。

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