In brewing and ethanol-based biofuel industries, high-gravity fermentation produces 10-15% (v/v) ethanol, resulting in improved overall productivity, reduced capital cost, and reduced energy input compared to processing at normal gravity. High-gravity technology ensures a successful implementation of cellulose to ethanol conversion as a cost-competitive process. Implementation of such technologies is possible if all process steps can be performed at high biomass concentrations. This review focuses on challenges and technological efforts in processing at high-gravity conditions and how these conditions influence the physiology and metabolism of fermenting microorganisms, the action of enzymes, and other process-related factors. Lignocellulos...
Production of lignocellulosic ethanol still suffers the drawback of high production cost. Methods fo...
The objective of this study is to evaluate and compare, both technically and economically, various g...
Abstract Background Applying very high gravity (VHG) fermentation conditions to the sugarcane juice ...
Abstract There have been numerous developments in ethanol fermentation technology since the beginnin...
Biofuel production processes at high gravity are currently under development. Most of these processe...
• Sustainable biofuel production processes are in development • Processes at high gravity conditions...
Biofuel production processes at high gravity are currently under development. Most of these processe...
Growth in population and thereby increased industrialization to meet its requirement, has elevated s...
Today, second generation bioethanol production is becoming established in production plants across t...
Bio-ethanol, as a clean and renewable fuel, is gaining increasing attention, mostly through its majo...
Nowadays, Very High Gravity (VHG) fermentation become an interesting subject to be studying as this ...
Very high gravity (VHG) ethanol fermentation has been remarkably developed in order to significantly...
High-gravity (HG) technology aims at generating final ethanol concentrations above 50 kg m(-3) in or...
Second generation bioethanol production is becoming established in production plants across the worl...
The realization of process solutions for a sustainable bioeconomy depends on the efficient processin...
Production of lignocellulosic ethanol still suffers the drawback of high production cost. Methods fo...
The objective of this study is to evaluate and compare, both technically and economically, various g...
Abstract Background Applying very high gravity (VHG) fermentation conditions to the sugarcane juice ...
Abstract There have been numerous developments in ethanol fermentation technology since the beginnin...
Biofuel production processes at high gravity are currently under development. Most of these processe...
• Sustainable biofuel production processes are in development • Processes at high gravity conditions...
Biofuel production processes at high gravity are currently under development. Most of these processe...
Growth in population and thereby increased industrialization to meet its requirement, has elevated s...
Today, second generation bioethanol production is becoming established in production plants across t...
Bio-ethanol, as a clean and renewable fuel, is gaining increasing attention, mostly through its majo...
Nowadays, Very High Gravity (VHG) fermentation become an interesting subject to be studying as this ...
Very high gravity (VHG) ethanol fermentation has been remarkably developed in order to significantly...
High-gravity (HG) technology aims at generating final ethanol concentrations above 50 kg m(-3) in or...
Second generation bioethanol production is becoming established in production plants across the worl...
The realization of process solutions for a sustainable bioeconomy depends on the efficient processin...
Production of lignocellulosic ethanol still suffers the drawback of high production cost. Methods fo...
The objective of this study is to evaluate and compare, both technically and economically, various g...
Abstract Background Applying very high gravity (VHG) fermentation conditions to the sugarcane juice ...