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<h3>Frontiers | Innovative Production of Bioproducts From Organic Waste </h3>

Frontiers | Innovative Production of Bioproducts From Organic Waste

2019/8/9/ · Solid-state fermentation (SSF) is, by definition, a technology carried out in absence or near absence of free water. Therefore, it allows the use of solid materials as substrates for further biotransformation. SSF has gained attention in the last years being reported as a promising eco-technology that allows obtaining bioproducts of industrial

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<h3>A Dual Fermentation Process for the Production of </h3>

A Dual Fermentation Process for the Production of

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<h3>Production of Ethanol from Agro Waste by dual fermentation system</h3>

Production of Ethanol from Agro Waste by dual fermentation system

2017/8/1/ · Production of Et hanol from Agro Waste by dual fermentation sys tem. 1 Nikhilesh Kulkarni, 2 Amol Begadwad, 3 Rachana Pachori , 4 Prithviraj Sadar, 1,2,3,4 Post graduate department of Microbiology

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<h3>Aged Refuse Enhances Anaerobic Fermentation of Food Waste </h3>

Aged Refuse Enhances Anaerobic Fermentation of Food Waste

2019/5/1/ · Recently, the strategy of obtaining hydrogen from organic solid waste through dark fermentation has attracted attention, because anaerobic fermentation can reduce the volume of organic matter and

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<h3>Dual enzymatic saccharification of food waste for ethanol fermentation </h3>

Dual enzymatic saccharification of food waste for ethanol fermentation

Lower efficiency serves as limiting factor in the enzymatic saccharification of food waste (FW) for ethanol fermentation. We investigated the effects of temperature, tetracycline; the optimization of dual enzymatic inoculation using simplex lattice design; as well as batch ethanol fermentation based on optimized FW saccharification.

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<h3>VTT EXPLAINS: THE SYNGAS PROCESS AND ITS </h3>

VTT EXPLAINS: THE SYNGAS PROCESS AND ITS

2022/5/30/ · The integration between the syngas and fermentation units allows to join the best characteristics of each technology in the right combination in a single process. The thermochemical and biochemical approaches offset each other in some steps, reducing costs and enhancing the efficiency of the overall process. For example, the costs of sulfur

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<h3>Production of bioethanol from food waste: Status and perspectives</h3>

Production of bioethanol from food waste: Status and perspectives

2022/9/1/ · Food waste conversion to bioethanol could lead to a sustainable process having the dual advantage of resolving the issue of food waste disposal as well as meeting the energy requirements of the increasing population. Food waste is increasing at the rate of 1.3 billion tonnes per year, considered to be one-third of global food production.

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<h3>Novel dual extraction process for acetone–butanol–ethanol fermentation </h3>

Novel dual extraction process for acetone–butanol–ethanol fermentation

2014/3/1/ · For liquid-liquid extraction a novel dual extraction/distillation (from 2.2 wt% ABE to 92 wt% ABE) process has been presented in which the energy consumption for the production of an ABE product

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<h3>Waste-to-Energy Pipeline through Consolidated </h3>

Waste-to-Energy Pipeline through Consolidated

2023/8/15/ · Bioenergy production involves feedstock deconstruction and the conversion of platform chemicals to energy products. This review provides a detailed overview of waste sources, biofuel, and bioelectricity production from fermentation and

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<h3>Fermentation of Agri-Food Waste: A Promising Route for the </h3>

Fermentation of Agri-Food Waste: A Promising Route for the

2021/3/26/ · Repurposing Agri-Food Waste by Solid-State Fermentation for the Production of Aroma Compounds. Fermentation is a well-known technique dating back to ancient civilizations for the production of food commodities such as bread, wine, and fermented milk. Microbial transformation made the products particularly appreciated for

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<h3>Current perspectives on acidogenic fermentation to produce</h3>

Current perspectives on acidogenic fermentation to produce

2021/2/13/ · Volatile fatty acids (VFAs) are key platform chemicals used in a multitude of industries including chemicals, pharmaceuticals, food and agriculture. The current route for VFA production is petrochemical based. VFAs can be biologically produced using organic wastes as substrate, therefore directly contributing to a sustainable economy. This

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<h3>Coupling dark fermentation and microbial electrolysis to enhance </h3>

Coupling dark fermentation and microbial electrolysis to enhance

2017/1/19/ · The aim of this work is to evaluate biohydrogen production from agro-industrial wastewaters and by-products, by combining dark fermentation and microbial electrolysis in a two-step cascade process. Such coupling of both technologies constitutes a technological building block within a concept of environmental biorefinery where

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<h3>Article: Matching of an anaerobic animal waste digester with a dual </h3>

Article: Matching of an anaerobic animal waste digester with a dual

2003/8/13/ · Abstract: This paper describes a scientific method for matching an anaerobic fermentation digester using animal dung with a diesel engine power-generating unit, in such a way as to specify the digester capacity to be suitable for various specific energy needs. An experimental model consisting of an Indian-type digester connected to …

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<h3>A dual fermentation process for the production of aliphatic acids</h3>

A dual fermentation process for the production of aliphatic acids

The organism used in Fermentation 2 should be able to tolerate the high levels of organic acids produced in Fermentation 1. RESULTS To test the feasibility of the Dual Fermentation process, a number of lactic acid-producing organisms were tested for their ability to acidify culture medium containing increasing

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<h3>Fermentation | Free Full-Text | Hydrolase Production …</h3>

Fermentation | Free Full-Text | Hydrolase Production …

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