Co-Fermentation of Municipal Waste Streams: Effect of Pretreatment Methods on Volatile Fatty Acids Production

2020 ◽  
Author(s):  
Isaac Owusu-Agyeman ◽  
Srija Balachandran ◽  
Elzbieta Plaza ◽  
Zeynep Cetecioglu
2021 ◽  
Vol 145 ◽  
pp. 105950
Author(s):  
Isaac Owusu-Agyeman ◽  
Srija Balachandran ◽  
Elzbieta Plaza ◽  
Zeynep Cetecioglu

2021 ◽  
Author(s):  
Matthew Donald Hinnecke

Due to the exponential growth of the human population and declining environmental quality in the world, waste derived volatile fatty acids (VFAs) have been identified as a source for the production of value-added products. Throughout this paper, different technologies for the production of value-added products from VFAs, various high content VFA waste streams and value-added products from each process will be discussed. Additionally, an in-depth literature review will be conducted on 5 value added products from VFAs. Highlights of various experiments will be identified as well as common trends in experiments to date. Some considerations will also be given to particular strategies and methods which may enhance the production of a value-added product in the future. Even through the uncertainty it has been proven that waste derived VFAs are a major candidate in contributing to a more environmentally and sustainable society in the immediate future.


2021 ◽  
Author(s):  
Matthew Donald Hinnecke

Due to the exponential growth of the human population and declining environmental quality in the world, waste derived volatile fatty acids (VFAs) have been identified as a source for the production of value-added products. Throughout this paper, different technologies for the production of value-added products from VFAs, various high content VFA waste streams and value-added products from each process will be discussed. Additionally, an in-depth literature review will be conducted on 5 value added products from VFAs. Highlights of various experiments will be identified as well as common trends in experiments to date. Some considerations will also be given to particular strategies and methods which may enhance the production of a value-added product in the future. Even through the uncertainty it has been proven that waste derived VFAs are a major candidate in contributing to a more environmentally and sustainable society in the immediate future.


2020 ◽  
Vol 22 (10) ◽  
pp. 3229-3238
Author(s):  
Egor V. Fufachev ◽  
Bert M. Weckhuysen ◽  
Pieter C. A. Bruijnincx

The transition towards a circular economy requires closing the carbon loop, e.g. by the development of new synthesis routes to valuable intermediates and products from organic-rich waste streams.


2019 ◽  
Vol 52 (26) ◽  
pp. 175-180
Author(s):  
A. Regueira ◽  
R. Bevilacqua ◽  
J.M. Lema ◽  
M. Carballa ◽  
M. Mauricio-Iglesias

2021 ◽  
Vol 143 ◽  
pp. 110971
Author(s):  
Patrick T. Sekoai ◽  
Anish Ghimire ◽  
Obinna T. Ezeokoli ◽  
Subramanya Rao ◽  
Wing Y. Ngan ◽  
...  

2021 ◽  
Vol 323 ◽  
pp. 124604
Author(s):  
Mariel Perez-Zabaleta ◽  
Merve Atasoy ◽  
Kasra Khatami ◽  
Elsa Eriksson ◽  
Zeynep Cetecioglu

2019 ◽  
Vol 26 (2) ◽  
pp. 63-71
Author(s):  
Ling Leng ◽  
Ying Wang ◽  
Peixian Yang ◽  
Takashi Narihiro ◽  
Masaru Konishi Nobu ◽  
...  

Chain elongation of volatile fatty acids for medium chain fatty acids production (e.g. caproate) is an attractive approach to treat wastewater anaerobically and recover resource simultaneously. Undefined microbial consortia can be tailored to achieve chain elongation process with selective enrichment from anaerobic digestion sludge, which has advantages over pure culture approach for cost-efficient application. Whilst the metabolic pathway of the dominant caproate producer, Clostridium kluyveri, has been annotated, the role of other coexisting abundant microbiomes remained unclear. To this end, an ethanol-acetate fermentation inoculated with fresh digestion sludge at optimal conditions was conducted. Also, physiological study, thermodynamics and 16 S rRNA gene sequencing to elucidate the biological process by linking the system performance and dominant microbiomes were integrated. Results revealed a possible synergistic network in which C. kluyveri and three co-dominant species, Desulfovibrio vulgaris, Fusobacterium varium and Acetoanaerobium sticklandii coexisted. D. vulgaris and A. sticklandii (F. varium) were likely to boost the carboxylates chain elongation by stimulating ethanol oxidation and butyrate production through a syntrophic partnership with hydrogen (H2) serving as an electron messenger. This study unveils a synergistic microbial network to boost caproate production in mixed culture carboxylates chain elongation.


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