Gan Rong, Ge Ming-Min, Liu Yong-di, Jia Hong-Hua, Yan Zhi-Ying, Yong Xiao-Yu, Wu Xia-Yuan, Zhou Jun
College of Biotechnology and Pharmaceutical Engineering, Nanjing Technology University, Nanjing 211816, China.
Bioenergy Research Institute, Nanjing Technology University, Nanjing 211816, China.
Huan Jing Ke Xue. 2017 Jun 8;38(6):2607-2616. doi: 10.13227/j.hjkx.201607207.
In order to improve the methane production and concentration, effect of activated carbon addition on the anaerobic fermentation of corn straw under the conditions of mesophilic temperature (38℃) and thermophilic temperature(50℃) was investigated in this study. The results showed that the addition of activated carbon could significantly promote methane production. Compared with the control group in mesophilic and thermophilic conditions, cumulative methane production could be increased by 63% and 96% in test groups. By DGGE analysis, the bacterium enriched by addition of activated carbon was mainly , compared to (without adding activated carbon) in the thermophilic system, while the differences in fermentation with adding activated carbon and without adding activated carbon was not significant in the mesophilic system. With addition of activated carbon, the archaea enriched in the fermentation liquid was mainly in the mesophilic system, whereas the archaea enriched in the fermentation liquid was mainly in the thermophilic system. The archaea enriched on activated carbon was mainly at mesophilic temperature while the archaea enriched on activated carbon was mainly at thermophilic temperature.
为了提高甲烷产量和浓度,本研究考察了添加活性炭对中温(38℃)和高温(50℃)条件下玉米秸秆厌氧发酵的影响。结果表明,添加活性炭可显著促进甲烷产生。与中温和高温条件下的对照组相比,试验组的累计甲烷产量分别提高了63%和96%。通过DGGE分析,在高温系统中,添加活性炭富集的细菌主要是 ,而未添加活性炭(对照组)的主要是 ;在中温系统中,添加活性炭与未添加活性炭的发酵差异不显著。添加活性炭后,中温系统发酵液中富集的古菌主要是 ,而高温系统发酵液中富集的古菌主要是 。在中温条件下,活性炭上富集的古菌主要是 ,而在高温条件下,活性炭上富集的古菌主要是 。