Background: Volatile fatty acids (VFA) are building blocks for the chemical industry. Sustainable, biological production is constrained by production and recovery costs, including the need for intensive pH correction. Membrane electrolysis has been developed as an in situ extraction technology tailored to the direct recovery of VFA from fermentation while stabilizing acidogenesis without caustic addition. A current applied across an anion exchange membrane reduces the fermentation broth (catholyte, water reduction: H2O + e(-) -> H-1/2(2) + OH-) and drives carboxylate ions into a clean, concentrated VFA stream (anolyte, water oxidation: H2O -> 2e + 2 H-1 + O-2). Results: In this study, we fermented thin stillage to generate a mixed VFA extr...
Gas fermentation has rapidly emerged as a commercial technology for the production of low-carbon fue...
Carboxylic acids obtained via the microbial electrochemical conversion of waste gases containing car...
The production of renewable fuels and chemicals reduces the dependency on fossil fuels and limits th...
Background: Volatile fatty acids (VFA) are building blocks for the chemical industry. Sustainable, b...
To decrease our society’s dependence on polluting fossil resources, alternative sources for chemical...
Short-chain carboxylates such as acetate are easily produced through mixed culture fermentation of m...
Electrolytic extraction drives volatile fatty acid chain elongation through lactic acid and replaces...
Short-chain carboxylates such as acetate are easily produced through mixed culture fermentation of m...
This study presents a processing pipeline for extracting and upgrading short chain carboxylates from...
Microbial chain elongation enables the conversion of organic wastes and agroindustrial sidestreams i...
Volatile fatty acids (VFAs) are key platform chemicals used in a multitude of industries including c...
Microbial electrosynthesis (MES) has emerged as a new bioreactor technology for the production of or...
This research investigated the use of an innovative polytetrafluoroethylene (PTFE) membrane configur...
Anaerobic digestion (AD) is a widely used biowaste conversion method. Recent studies have explored a...
Production of volatile fatty acids (VFAs), fundamental building blocks for the chemical industry, de...
Gas fermentation has rapidly emerged as a commercial technology for the production of low-carbon fue...
Carboxylic acids obtained via the microbial electrochemical conversion of waste gases containing car...
The production of renewable fuels and chemicals reduces the dependency on fossil fuels and limits th...
Background: Volatile fatty acids (VFA) are building blocks for the chemical industry. Sustainable, b...
To decrease our society’s dependence on polluting fossil resources, alternative sources for chemical...
Short-chain carboxylates such as acetate are easily produced through mixed culture fermentation of m...
Electrolytic extraction drives volatile fatty acid chain elongation through lactic acid and replaces...
Short-chain carboxylates such as acetate are easily produced through mixed culture fermentation of m...
This study presents a processing pipeline for extracting and upgrading short chain carboxylates from...
Microbial chain elongation enables the conversion of organic wastes and agroindustrial sidestreams i...
Volatile fatty acids (VFAs) are key platform chemicals used in a multitude of industries including c...
Microbial electrosynthesis (MES) has emerged as a new bioreactor technology for the production of or...
This research investigated the use of an innovative polytetrafluoroethylene (PTFE) membrane configur...
Anaerobic digestion (AD) is a widely used biowaste conversion method. Recent studies have explored a...
Production of volatile fatty acids (VFAs), fundamental building blocks for the chemical industry, de...
Gas fermentation has rapidly emerged as a commercial technology for the production of low-carbon fue...
Carboxylic acids obtained via the microbial electrochemical conversion of waste gases containing car...
The production of renewable fuels and chemicals reduces the dependency on fossil fuels and limits th...