Synergetic anaerobic digestion of food waste for enhanced production of biogas and value-added products: strategies, challenges, and techno-economic analysis

被引:4
|
作者
Sharma, Pooja [1 ,2 ]
Parakh, Sheetal Kishor [1 ,2 ]
Tsui, To Hung [1 ,2 ]
Bano, Ambreen [3 ]
Singh, Surendra Pratap [4 ]
Singh, Vijay Pratap [5 ]
Lam, Su Shiung [6 ]
Nadda, Ashok Kumar [7 ,9 ]
Tong, Yen Wah [1 ,2 ,8 ,10 ,11 ,12 ]
机构
[1] Natl Univ Singapore, NUS Environm Res Inst, Singapore, Singapore
[2] Energy & Environm Sustainabil Megac E2S2 Phase II, Campus Res Excellence & Technol Enterprise CREATE, Singapore, Singapore
[3] Integral Univ, Fac Sci, Dept Biosci, Plant Microbe Interact & Mol Immunol Lab,IIRC 3, Lucknow, India
[4] Chhatrapati Shahu Ji Maharaj Univ, Dayanand Anglo Ved PG Coll, Dept Bot, Plant Mol Biol Lab, Kanpur, India
[5] Constituent Post Grad Coll Univ Allahabad, Dept Bot, Plant Physiol Lab, CMP Degree Coll, Prayagraj, India
[6] Univ Malaysia Terengganu, Higher Inst Ctr Excellence HICoE, Inst Trop Aquaculture & Fisheries AKUATROP, Kuala Nerus, Terengganu, Malaysia
[7] Jaypee Univ Informat Technol, Dept Biotechnol & Bioinformat, Waknaghat, India
[8] Natl Univ Singapore, Dept Chem & Biomol Engn, Singapore, Singapore
[9] Jaypee Univ informat Technol, Dept Biotechnol & Bioinformat, waknaghat, Solan 173234, India
[10] Natl Univ singapore, NUS Environm Res Inst, 02-01,T-Lab Bldg,5A Engn Dr 1, Singapore 117411, Singapore
[11] Energy & Environm Sustainabil Megac E2S2, Phase II,Campus Res excellence & Technol Enterpri, Singapore 138602, Singapore
[12] Natl Univ singapore, Dept Chem & Biomol Engn, 4 Engn Dr, Singapore 117585, Singapore
基金
新加坡国家研究基金会;
关键词
Food waste; digestate; multistage system; organic fertilizer; anaerobic digestion; composting; bioenergy; ECONOMIC-ANALYSIS; VALORIZATION; BIOMETHANE; BIOCHAR; ENERGY; ACID; BIOCONVERSION; PERFORMANCE; INHIBITION; BIOENERGY;
D O I
10.1080/07388551.2023.2241112
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
\The generation of food waste (FW) is increasing at an alarming rate, contributing to a total of 32% of all the waste produced globally. Anaerobic digestion (AD) is an effective method for dealing with organic wastes of various compositions, like FW. Waste valorization into value-added products has increased due to the conversion of FW into biogas using AD technology. A variety of pathways are adopted by microbes to avoid unfavorable conditions in AD, including competition between sulfate-reducing bacteria and methane (CH4)-forming bacteria. Anaerobic bacteria decompose organic matter to produce biogas, a digester gas. The composition depends on the type of raw material and the method by which the digestion process is conducted. Studies have shown that the biogas produced by AD contains 65-75% CH4 and 35-45% carbon dioxide (CO2). Methanothrix soehngenii and Methanosaeta concilii are examples of species that convert acetate to CH4 and CO2. Methanobacterium bryantii, Methanobacterium thermoautotrophicum, and Methanobrevibacter arboriphilus are examples of species that produce CH4 from hydrogen and CO2. Methanobacterium formicicum, Methanobrevibacter smithii, and Methanococcus voltae are examples of species that consume formate, hydrogen, and CO2 and produce CH4. The popularity of AD has increased for the development of biorefinery because it is seen as a more environmentally acceptable alternative in comparison to physico-chemical techniques for resource and energy recovery. The review examines the possibility of using accessible FW to produce important value-added products such as organic acids (acetate/butyrate), biopolymers, and other essential value-added products. Highlights center dot Population growth globally increases the generation of FW. center dot FW generation, recycling, and reuse have been discussed. center dot Biogas and bio-fertilizers can be recovered from FW through AD.
引用
收藏
页码:1040 / 1060
页数:21
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