Recent Approaches for the Production of High Value-Added Biofuels from Gelatinous Wastewater

被引:18
作者
Tawfik, Ahmed [1 ]
Ni, Shou-Qing [2 ]
Awad, Hanem M. [3 ]
Ismail, Sherif [2 ,4 ]
Tyagi, Vinay Kumar [5 ]
Khan, Mohd Shariq [6 ]
Qyyum, Muhammad Abdul [7 ]
Lee, Moonyong [7 ]
机构
[1] Natl Res Ctr, Water Pollut Res Dept, Giza 12622, Egypt
[2] Shandong Univ, Sch Environm Sci & Engn, Shandong Prov Key Lab Water Pollut Control & Reso, Qingdao 266237, Peoples R China
[3] Natl Res Ctr, Ctr Excellence, Dept Tanning Mat & Leather Technol & Regulatory T, Giza 12622, Egypt
[4] Zagazig Univ, Environm Engn Dept, Zagazig 44519, Egypt
[5] Indian Inst Technol, Dept Civil Engn, Environm Biotechnol Grp EBiTG, Roorkee 247667, Uttar Pradesh, India
[6] Dhofar Univ, Dept Chem Engn, Salalah 211, Oman
[7] Yeungnam Univ, Sch Chem Engn, Gyongsan, South Korea
关键词
gelatinous wastewater; protein degradation; anaerobic digestion; energy recovery; biofuels; HYDROGEN GAS-PRODUCTION; MIXED CULTURE BACTERIA; PAPERBOARD MILL SLUDGE; VOLATILE FATTY-ACIDS; ACIDOGENIC FERMENTATION; ANAEROBIC-DIGESTION; ORGANIC FRACTION; CLOSTRIDIUM-COLLAGENOVORANS; DARK FERMENTATION; HEAVY-METALS;
D O I
10.3390/en14164936
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
Gelatin production is the most industry polluting process where huge amounts of raw organic materials and chemicals (HCl, NaOH, Ca2+) are utilized in the manufacturing accompanied by voluminous quantities of end-pipe effluent. The gelatinous wastewater (GWW) contains a large fraction of protein and lipids with biodegradability (BOD/COD ratio) exceeding 0.6. Thus, it represents a promising low-cost substrate for the generation of biofuels, i.e., H-2 and CH4, by the anaerobic digestion process. This review comprehensively describes the anaerobic technologies employed for simultaneous treatment and energy recovery from GWW. The emphasis was afforded on factors affecting the biofuels productivity from anaerobic digestion of GWW, i.e., protein concentration, organic loading rate (OLR), hydraulic retention time (HRT), the substrate to inoculum (S-0/X-0) ratio, type of mixed culture anaerobes, carbohydrates concentration, volatile fatty acids (VFAs), ammonia and alkalinity/VFA ratio, and reactor configurations. Economic values and future perspectives that require more attention are also outlined to facilitate further advancement and achieve practicality in this domain.
引用
收藏
页数:18
相关论文
共 50 条
[41]   Value-added bioproducts development through sustainable conversion and production routes [J].
Wang, Hao ;
Hu, Yulin ;
Bassi, Amarjeet ;
Zhang, Heng .
FRONTIERS IN CHEMISTRY, 2023, 11
[42]   Anaerobic digestion of organic waste: Recovery of value-added and inhibitory compounds from liquid fraction of digestate [J].
Lu, Fan ;
Wang, Zhijie ;
Zhang, Hua ;
Shao, Liming ;
He, Pinjing .
BIORESOURCE TECHNOLOGY, 2021, 333
[43]   Valorization of Agriculture Residues into Value-Added Products: A Comprehensive Review of Recent Studies [J].
Hoang, Tuan-Dung ;
Anh, Nguyen Van ;
Yusuf, Mohammad ;
Ali, S. A. Muhammed ;
Subramanian, Yathavan ;
Nam, Nguyen Hoang ;
Ky, Nguyen Minh ;
Le, Van-Giang ;
Huyen, Nguyen Thi Thanh ;
Bianasari, Alien Abi ;
Azad, Abul .
CHEMICAL RECORD, 2024, 24 (08)
[44]   Production of Value-Added Microbial Metabolites: Oleaginous Fungus as a Tool for Valorization of Dairy By-products [J].
Braz, Carolina A. ;
Carvalho, Ana K. F. ;
Bento, Heitor B. S. ;
Reis, Cristiano E. R. ;
De Castro, Heizir F. .
BIOENERGY RESEARCH, 2020, 13 (03) :963-973
[45]   Valorization of wastewater to recover value-added products: A comprehensive insight and perspective on different technologies [J].
Yadav, Ankush ;
Rene, Eldon R. ;
Sharma, Manisha ;
Jatain, Indu ;
Mandal, Mrinal Kanti ;
Dubey, Kashyap Kumar .
ENVIRONMENTAL RESEARCH, 2022, 214
[46]   Pre-treatment and bioconversion of wastewater sludge to value-added products-Fate of endocrine disrupting compounds [J].
Barnabe, S. ;
Brar, S. K. ;
Tyagi, R. D. ;
Beauchesne, I. ;
Surampalli, R. Y. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2009, 407 (05) :1471-1488
[47]   Production of biofuel precursors and value-added chemicals from hydrolysates resulting from hydrothermal processing biomass: A review [J].
Torres-Mayanga, Paulo C. ;
Lachos-Perez, Daniel ;
Mudhoo, Ackmez ;
Kumar, Sunil ;
Brown, Avery B. ;
Tyufekchiev, Maksim ;
Dragone, Giuliano ;
Mussatto, Solange, I ;
Rostagno, Mauricio A. ;
Timko, Michael ;
Forster-Carneiro, T. .
BIOMASS & BIOENERGY, 2019, 130
[48]   Valorization of spent coffee grounds into biofuels and value-added products: Pathway towards integrated bio-refinery [J].
Atabani, A. E. ;
Al-Muhtaseb, Ala'a H. ;
Kumar, Gopalakrishnan ;
Saratale, Ganesh Dattatraya ;
Aslam, Muhammad ;
Khan, Hassnain Abbas ;
Said, Zafar ;
Mahmoud, Eyas .
FUEL, 2019, 254
[49]   Editorial: Advances in the Bio- and Chemo-Catalytic Conversion of Biomass Components Into Biofuels and Value-Added Chemicals [J].
Yan, Kai ;
Xu, Chunbao Charles ;
Guan, Guoqing ;
Wu, Xu .
FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2021, 9
[50]   Bio-conversion of CO2 into biofuels and other value-added chemicals via metabolic engineering [J].
Nisar, Ayesha ;
Khan, Sawar ;
Hameed, Muddassar ;
Nisar, Alisha ;
Ahmad, Habib ;
Mehmood, Sardar Azhar .
MICROBIOLOGICAL RESEARCH, 2021, 251