Anaerobic Digestion of Napier Grass (Pennisetum purpureum) in Two-Phase Dry Digestion System Versus Wet Digestion System

被引:0
作者
Amornpan Thaemngoen
Kanyarat Saritpongteeraka
Shao-Yuan Leu
Chettaphong Phuttaro
Chayanon Sawatdeenarunat
Sumate Chaiprapat
机构
[1] Prince of Songkla University,Department of Civil Engineering, Faculty of Engineering
[2] Postgraduate Education and Research Development Office (PERDO),Center of Excellence on Energy Technology and Environment
[3] The Hong Kong Polytechnic University,Department of Civil and Environmental Engineering
[4] Chiang Mai Rajabhat University,Asian Development College for Community Economy and Technology
[5] PSU Energy Systems Research Institute (PERIN),undefined
[6] Prince of Songkla University,undefined
[7] Hat Yai Campus,undefined
来源
BioEnergy Research | 2020年 / 13卷
关键词
Napier grass; Methane yield; Wet digestion; Dry digestion; Leachate circulation;
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学科分类号
摘要
Napier grass (Pennisetum purpureum) is a high yield tropical grass with great potential for anaerobic digestion. Two-phase anaerobic dry digestion (TADD), considered an alternative for anaerobic wet digestion system (AWD) with only front-end leach bed reactor (LBR), is added to existing liquid digester, was tested under different leachate circulations, and was compared with AWD. Leachate circulation frequency in LBR was found to highly influence hydrolysis rate and hence improved overall digestibility of the grass fiber. Additional methane yield of 32.5% was achieved when leachate circulation increased from 1 to 4 times per day and diminished to merely 13.7% more at continuous circulation. A shift in methane generation from leachate digester to LBR as digestion time progressed and important biochemical characteristics were discussed. In AWD, operation at an organic loading of 4 kgVS/m3 d gave the highest methane yield at 145.2 m3/tondry, which is 2.3 times higher than TADD due to an advantage in mass transfer in a total wet environment. This work had advanced our understandings on phase separation in anaerobic digestion system and the key methanation performance among dry and wet digestions of the prototypical lignocellulosic biomass.
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页码:853 / 865
页数:12
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