2023/1/18/ · Yeasts utilize cheap feedstock (e.g., carbonaceous waste), which results in lowering the production cost plus yielding useful by-products. Among microbes, yeast carotenoid biosynthesis has attracted commercial interest compared to algae or fungi, as yeasts are unicellular and exhibit a high growth rate to facilitate large-scale fermentation
2022/8/20/ · Oily wastes have been widely used to produce lipases, but there is insufficient knowledge on their use to efficiently produce cell-bound lipases (CBLs). This research aimed to optimize yeast–bacterium CBLs production using blended oily wastes by statistical optimization and their potential applications in biodiesel production and
2023/8/17/ · Lactic acid plays an important role in industrial applications ranging from the food industry to life sciences. The growing demand for lactic acid creates an urgent need to find economical and sustainable substrates for lactic acid production. Agricultural waste is rich in nutrients needed for microbial growth. Fermentative production of lactic acid from
2022/9/12/ · During the anaerobic fermentation process, the organic loading rate is defined as the quantity of the material fed to the reactor per day per unit operating volume. Municipal waste fermentation plants generally operate at loading rates of 1.2–12.0 kg VS or 2.2–33.7 kg COD per cubic meter per day [58, 76,77,78]. During the entire anaerobic
2023/2/2/ · obtained from waste feedstock e.g., agro-waste, mill effluent, whey/pineapple cannery waste–water, etc. [10–12]. Agro-industrial waste is a rich source for carbon, nitrogen, including minerals/salts necessary for microbial metabolism, slashing down production cost and mitigating environ-mental problems resulting from such wastes.
2015/11/1/ · Hygienic design considerations are critical to the reliable operation of these facilities, and implementation of hygienic design in a cost-effective manner will be a major factor in ensuring success of industrial-scale fermentation for the production of biobased chemicals. Edited by Suzanne Shelley . References. 1.
2023/3/30/ · Raw materials originating from industrial waste include many suitable alternatives as a low-cost substrate for biosurfactant production processes. Wastes from the dairy industry [ 113 , 122 ], molasses, cooking oil wastes [ 14 ], corn steep liquor [ 87 ], vegetable oils [ 103 ], animal fat [ 70 , 102 ], vegetable fat [ 48 ], and starchy
2016/10/1/ · Request PDF | Cost-effective simultaneous saccharification and fermentation of L-lactic acid from bagasse sulfite pulp by Bacillus coagulans CC17 | The main barriers to cost-effective lactic acid
2015/7/17/ · The simultaneous production of hydrogen and ethanol by microorganisms from waste materials in a bioreactor system would establish cost-effective and time-saving biofuel production. This review aims to present the current status of fermentation processes producing hydrogen accompanied by ethanol as a co-product. We outlined the microbes
2020/2/11/ · The food waste composition is illustrated in Figure 2, and the fermentation process was modeled in an open anaerobic condition with ethanol yield as 2.2% (w/w) wet basis without any enzymes. The FW conversion and ethanol yield were taken from the experimental study done by Muhammad [ 8 ].
2023/1/1/ · The total capital investment of $583,092 and the total production cost of $88,298.1/year are calculated, respectively. Total revenue was $234,71.7/year, including sales of 42,858 m 3 of H 2 /year, 547,500 kg of solid biomass/year, and waste disposal charges received ($17,644/year).
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Thermochemical and biochemical treatment strategies for resource recovery from agri-food industry wastes. Tharaka Rama Krishna C. Doddapaneni, Timo Kikas, in Valorization of Agri-Food Wastes and By-Products, 2021. 39.4.2 Fermentation of agri-food waste. Fermentation is a process of converting the organic material into various products using