Enhancement of biogas production from microalgal biomass through cellulolytic bacterial pretreatment

被引:59
|
作者
Kavitha, S. [1 ]
Subbulakshmi, P. [1 ]
Banu, J. Rajesh [1 ]
Gobi, Muthukaruppan [2 ]
Yeom, Ick Tae [3 ]
机构
[1] Anna Univ, Dept Civil Engn, Reg Campus, Tirunelveli, India
[2] SRM Univ, Sch Bioengn, Dept Biotechnol, Madras, Tamil Nadu, India
[3] Sungkyunkwan Univ, Grad Sch Water Resource, Suwon, South Korea
关键词
Microalgal liquefaction; Chlorella vulgaris; Biomass stress index; Biomethanation; Energetic analysis; WASTE ACTIVATED-SLUDGE; CELL-WALL DEGRADATION; CHLORELLA-VULGARIS; ANAEROBIC-DIGESTION; METHANE PRODUCTION; THERMAL PRETREATMENT; BIOAUGMENTATION; DISINTEGRATION; CONVERSION; IMPACT;
D O I
10.1016/j.biortech.2017.02.081
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Generation of bioenergy from microalgal biomass has been a focus of interest in recent years. The recalcitrant nature of microalgal biomass owing to its high cellulose content limits methane generation. Thus, the present study investigates the effect of bacterial-based biological pretreatment on liquefaction of the microalga Chlorella vulgaris prior to anaerobic biodegradation to gain insights into energy efficient biomethanation. Liquefaction of microalgae resulted in a higher biomass stress index of about 18% in the experimental (pretreated with cellulose-secreting bacteria) vs. 11.8% in the control (non-pretreated) group. Mathematical modelling of the biomethanation studies implied that bacterial pretreatment had a greater influence on sustainable methane recovery, with a methane yield of about 0.08 (g Chemical Oxygen Demand/g Chemical Oxygen Demand), than did control pretreatment, with a yield of 0.04 (g Chemical Oxygen Demand/g Chemical Oxygen Demand). Energetic analysis of the proposed method of pretreatment showed a positive energy ratio of 1.04. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:34 / 43
页数:10
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