[HTML][HTML] Metabolic engineering for the utilization of carbohydrate portions of lignocellulosic biomass

J Kim, S Hwang, SM Lee - Metabolic Engineering, 2022 - Elsevier
The petrochemical industry has grown to meet the need for massive production of energy
and commodities along with an explosive population growth; however, serious side effects …

[HTML][HTML] Bioprospecting of microbial strains for biofuel production: metabolic engineering, applications, and challenges

MF Adegboye, OB Ojuederie, PM Talia… - Biotechnology for …, 2021 - Springer
The issues of global warming, coupled with fossil fuel depletion, have undoubtedly led to
renewed interest in other sources of commercial fuels. The search for renewable fuels has …

Metabolic engineering and enzyme-mediated processing: a biotechnological venture towards biofuel production–a review

M Bilal, HMN Iqbal, H Hu, W Wang, X Zhang - Renewable and Sustainable …, 2018 - Elsevier
Increasing concerns over the unstable and uncertain petro-based reserves, global warming
and energy insecurity have led to a resurgence in the development of an environmentally …

Current status and future prospects of conversion of lignocellulosic resources to biofuels using yeasts and bacteria

S Alfenore, C Molina-Jouve - Process Biochemistry, 2016 - Elsevier
Generating bioenergy is a significant challenge in reducing the environmental impact of
fossil fuel combustion and in sustaining energy and energy independence. This study …

Biofuels and bioproducts produced through microbial conversion of biomass

TC Yang, J Kumaran, S Amartey, M Maki, X Li… - … research: Advances and …, 2014 - Elsevier
Lignocellulose is a complex polymer composed of intertwined cellulose, hemicelluloses and
lignin substances. Research on conversion of lignocellulosic biomass into biofuels and …

Recent advances in biofuel production through metabolic engineering

S Joshi, SD Mishra - Bioresource technology, 2022 - Elsevier
Rising global energy demands and climate crisis has created an unprecedented need for
the bio-based circular economy to ensure sustainable development with the minimized …

Engineering new metabolic capabilities in bacteria: lessons from recombinant cellulolytic strategies

R Mazzoli, C Lamberti, E Pessione - Trends in biotechnology, 2012 - cell.com
Cellulose waste biomass is the most attractive substrate for 'biorefinery strategies' producing
high-value products (eg fuels or plastics) by fermentation. However, traditional biomass …

Weedy lignocellulosic feedstock and microbial metabolic engineering: advancing the generation of 'Biofuel'

AK Chandel, OV Singh - Applied microbiology and biotechnology, 2011 - Springer
Lignocellulosic materials are the most abundant renewable organic resources (~ 200 billion
tons annually) on earth that are readily available for conversion to ethanol and other value …

Recent advances in consolidated bioprocessing for microbe-assisted biofuel production

PK Sarangi, S Nanda - Fuel processing and energy utilization, 2019 - taylorfrancis.com
There is the need of implementation of green, sustainable, and renewable technologies to
avoid much dependency on petroleum products for future energy and materials. Fossil fuels …

Consolidated bioprocessing systems for cellulosic biofuel production

U Abrego, Z Chen, C Wan - Advances in bioenergy, 2017 - Elsevier
Biofuel production from lignocellulosic biomass helps to mitigate climate change and
alleviate our reliance on fossil fuels. Great efforts have been made to produce biofuels in an …