Anaerobic digestion of food waste for bio-energy production in China and Southeast Asia: A review

被引:148
作者
Negri, Camilla [1 ]
Ricci, Marina [1 ]
Zilio, Massimo [1 ]
D'Imporzano, Giuliana [1 ]
Qiao, Wei [2 ,3 ]
Dong, Renjie [2 ,3 ]
Adani, Fabrizio [1 ]
机构
[1] Univ Milan, DiSAA, Grp Ricicla, Via Celoria 2, I-20133 Milan, Italy
[2] China Agr Univ, Coll Engn, Beijing 100083, Peoples R China
[3] Biobased Gaseous Fuels Energy Author Natl Dev & R, State R&D Ctr Efficient Prod & Comprehens Utiliza, Beijing 100083, Peoples R China
关键词
Anaerobic digestion; Biomethane; Biomethane potential; Energy balance; Food waste; Food waste co-digestion; Food waste pre-treatment; MUNICIPAL SOLID-WASTE; IMPROVING METHANE PRODUCTION; HYDRAULIC RETENTION TIME; ORGANIC LOADING RATE; CO-DIGESTION; ACTIVATED-SLUDGE; SEWAGE-SLUDGE; SINGLE-STAGE; MICROBIAL COMMUNITY; BIOHYDROGEN PRODUCTION;
D O I
10.1016/j.rser.2020.110138
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Rapid economic growth in Asia and especially in China, will lead to a huge increase of food waste (FW) production that is expected to increase by 278-416 million tonnes. Among various waste management practices, anaerobic digestion (AD) is a useful method to transform food waste, producing renewable energy/biofuel and bio-fertilizers. This review aims to investigate some of the key factors in proposing FW for anaerobic digestion, with particular reference to China and South East Asian countries. Food waste shows variable chemical composition and a high content of biodegradable material (carbohydrates, protein and lipid). This composition led to consistent biogas production that was reported, as average for Chinese FW, of 480 +/- 88 LCH4 kg(-1) VS (n = 42). Since these data are higher than those reported for energy crops (246 +/- 36 LCH4 kg(-1) VS), this makes FW a good candidate to substitute for energy crops, avoiding food-energy conflicts. FW co-digestion with different substrates improved total bio-methane production (on average), from 268 +/- 199 mL g(-1) VS to 406 +/- 137 mL g(-1) VS. Food waste pretreatment, also, seems to be very useful in increasing total biogas production. Physical and thermal treatments were the best, increasing biogas production by 40% and 30%, respectively. Techno-economic evaluation seems to indicate the feasibility of substituting EC with FW for producing biogas and reducing total biomass costs. To achieve this, separate collection sources need to be put into place, assuring high FW quality to promote a Circular Economy approach in FW management.
引用
收藏
页数:21
相关论文
共 207 条
[71]   Effects of temperature and hydraulic retention time on anaerobic digestion of food waste [J].
Kim, Jung Kon ;
Oh, Baek Rock ;
Chun, Young Nam ;
Kim, Si Wouk .
JOURNAL OF BIOSCIENCE AND BIOENGINEERING, 2006, 102 (04) :328-332
[72]   Feasibility of biohydrogen production by anaerobic co-digestion of food waste and sewage sludge [J].
Kim, SH ;
Han, SK ;
Shin, HS .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2004, 29 (15) :1607-1616
[73]   Bioconversion of food waste to energy: A review [J].
Kiran, Esra Uckun ;
Trzcinski, Antoine P. ;
Wun Jern Ng ;
Liu, Yu .
FUEL, 2014, 134 :389-399
[74]   Effect of sludge recirculation on characteristics of hydrogen production in a two-stage hydrogen-methane fermentation process treating food wastes [J].
Kobayashi, Takuro ;
Xu, Kai-Qin ;
Li, Yu-You ;
Inamori, Yuhei .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (07) :5602-5611
[75]   Co-digestion of food waste in municipal wastewater treatment plants: Effect of different mixtures on methane yield and hydrolysis rate constant [J].
Koch, Konrad ;
Helmreich, Brigitte ;
Drewes, Joerg E. .
APPLIED ENERGY, 2015, 137 :250-255
[76]   Inhibiting excessive acidification using zero-valent iron in anaerobic digestion of food waste at high organic load rates [J].
Kong, Xin ;
Wei, Yonghong ;
Xu, Shuang ;
Liu, Jianguo ;
Li, Huan ;
Liu, Yili ;
Yu, Shuyao .
BIORESOURCE TECHNOLOGY, 2016, 211 :65-71
[77]   Co-composting of green waste and food waste at low C/N ratio [J].
Kumar, Mathava ;
Ou, Yan-Liang ;
Lin, Jih-Gaw .
WASTE MANAGEMENT, 2010, 30 (04) :602-609
[78]  
Kuo-Dahab WC, 2014, P WATER ENV FEDERATI, V2014, P1, DOI DOI 10.2175/193864714815941018
[79]   Biochemical methane potential and biodegradability of complex organic substrates [J].
Labatut, Rodrigo A. ;
Angenent, Largus T. ;
Scott, Norman R. .
BIORESOURCE TECHNOLOGY, 2011, 102 (03) :2255-2264
[80]   Mixing strategies of high solids anaerobic co-digestion using food waste with sewage sludge for enhanced biogas production [J].
Latha, K. ;
Velraj, R. ;
Shanmugam, P. ;
Sivanesan, S. .
JOURNAL OF CLEANER PRODUCTION, 2019, 210 :388-400