Critical Assessment of Hydrogen and Methane Production from 1G and 2G Sugarcane Processing Wastes Using One-Stage and Two-Stage Anaerobic Digestion

被引:8
作者
Mukherjee, Tirthankar [1 ]
Trably, Eric [2 ]
Kaparaju, Prasad [1 ]
机构
[1] Griffith Univ, Sch Engn & Built Environm, Southport, Qld 4111, Australia
[2] Lab Biotechnol Environm LBE, 102 Ave Etangs, F-11100 Narbonne, France
关键词
trash; bagasse; mill mud; molasses; anaerobic digestion; dark fermentation; BIOHYDROGEN PRODUCTION; DARK FERMENTATION; BAGASSE; PRETREATMENT; TEMPERATURE; WATER; BIOREFINERY; SIMULATION; BIODEGRADABILITY; OPTIMIZATION;
D O I
10.3390/en16134919
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Sugarcane is a lignocellulosic crop which is used to produce sugar in sugarcane processing industries. Globally, sugarcane processing industries generate solid and liquid wastes amounting to more than 279 million tons per annum and by-products; namely, trash, bagasse, mill mud, and molasses. The valorisation of waste and by-products has recently increased and is playing a significant role in achieving policies and goals associated with circular bioeconomy and sustainable development. For the valorisation of sugarcane processing industry waste and by-products, a number of technologies are well established and in use, while other innovative technologies are still ongoing through research and development with promising futures. These by-products obtained from sugarcane processing industries can be converted into biofuels like hydrogen and methane via anaerobic digestion. Molasses belongs to the first-generation (1G) waste, while trash, bagasse, and mill mud belong to second-generation (2G) waste. Various studies have been carried out in converting both first- and second-generation sugarcane processing industry wastes into renewable energy, exploiting anaerobic digestion (AD) and dark fermentation (DF). This review emphasises the various factors affecting the AD and DF of 1G and 2G sugarcane processing industry wastes. It also critically addresses the feasibility and challenges of operating a two-stage anaerobic digestion process for hydrogen and methane production from these wastes.
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页数:22
相关论文
共 107 条
[1]  
47Akunna J.C., 2018, Anaerobic waste-wastewater treatment and biogas plants: A practical handbook, DOI DOI 10.1201/9781351170529
[2]   Exploring lignocellulosic biomass for bio-methane potential by anaerobic digestion and its economic feasibility [J].
Ali, Shehbaz ;
Shah, Tawaf A. ;
Afzal, Asifa ;
Tabassum, Romana .
ENERGY & ENVIRONMENT, 2018, 29 (05) :742-751
[3]   Solid-state anaerobic digestion of sugarcane bagasse at different solid concentrations: Impact of bio augmented cellulolytic bacteria on methane yield and insights on microbial diversity [J].
Arelli, Vijayalakshmi ;
Mamindlapelli, Naveen Kumar ;
Juntupally, Sudharshan ;
Begum, Sameena ;
Anupoju, Gangagni Rao .
BIORESOURCE TECHNOLOGY, 2021, 340 (340)
[4]   Biogas production from sugarcane bagasse with South African industrial wastewater and novel kinetic study using response surface methodology [J].
Armah, Edward Kwaku ;
Chetty, Maggie ;
Deenadayalu, Nirmala .
SCIENTIFIC AFRICAN, 2020, 10
[5]  
Arruda Oliveira Cristiane, 2020, BIORESOUR TECHNOL RE, V12, DOI DOI 10.1016/J.BITEB.2020.100590
[6]   Use of an Automatic Methane Potential Test System for evaluating the biomethane potential of sugarcane bagasse after different treatments [J].
Badshah, Malik ;
Duong Minh Lam ;
Liu, Jing ;
Mattiasson, Bo .
BIORESOURCE TECHNOLOGY, 2012, 114 :262-269
[7]   Review on the start-up experiences of continuous fermentative hydrogen producing bioreactors [J].
Bakonyi, P. ;
Nemestothy, N. ;
Simon, V. ;
Belafi-Bako, K. .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2014, 40 :806-813
[8]   Dark fermentation biorefinery in the present and future (bio)chemical industry [J].
Bastidas-Oyanedel, Juan-Rodrigo ;
Bonk, Fabian ;
Thomsen, Mette Hedegaard ;
Schmidt, Jens Ejbye .
REVIEWS IN ENVIRONMENTAL SCIENCE AND BIO-TECHNOLOGY, 2015, 14 (03) :473-498
[9]   Metagenomic Reconstruction of Key Anaerobic Digestion Pathways in Municipal Sludge and Industrial Wastewater Biogas-Producing Systems [J].
Cai, Mingwei ;
Wilkins, David ;
Chen, Jiapeng ;
Ng, Siu-Kin ;
Lu, Hongyuan ;
Jia, Yangyang ;
Lee, Patrick K. H. .
FRONTIERS IN MICROBIOLOGY, 2016, 7
[10]   Debottlenecking the biological hydrogen production pathway of dark fermentation: insight into the impact of strain improvement [J].
Cao, Yujin ;
Liu, Hui ;
Liu, Wei ;
Guo, Jing ;
Xian, Mo .
MICROBIAL CELL FACTORIES, 2022, 21 (01)