Results 151 to 160 of about 58,359 (301)

Use of bioethanol for sustainable electrical energy production

open access: yes, 2009
Nowadays, the climatic change has addressed the research targets to find renewable energy sources and in order to develop more efficient technologies in a simultaneous way, with the object of promoting a rational use of the energy in the frame of the ...
Hernández, Liliana   +1 more
core   +1 more source

Perspectives for the production of bioethanol from macroalgae biomass

open access: yes, 2018
Ethanol is currently produced on large scale from sugarcane, corn (first-generationethanol) and lignocellulosic materials (second-generation-ethanol), which results in a competition for space for growing food products.
de Oliveira, Levi Ezequiel   +5 more
core   +1 more source

Research of bioethanol production devices [PDF]

open access: yes, 2015
Bakalaureusetöö eesmärgiks on uurida bioetanooli tootmiseks vajaminevaid seadmeid. Selle tarbeks on leitud vajalikud seadmed, mida on tarvis esimese põlvkonna bioetanooli tootmiseks, kirjeldatud nende olemasolu olulisust ja tööpõhimõtteid.
Palok, Artur
core   +1 more source

Harnessing plant‐based platform for low‐cost cellulosic sugar recovery from bioenergy crops

open access: yesBiofuels, Bioproducts and Biorefining, Volume 20, Issue 5, Page 2106-2121, September/October 2026.
Abstract The price of pure cellulase enzyme for the recovery of fermentable cellulosic sugars is one of the major challenges that limit the commercialization of second‐generation biofuels and bio‐based products. This work shows a means to greatly reduce the cost of cellulases. The abundant capacity of plants to synthesize and hyperaccumulate transgenic
Shraddha Maitra   +4 more
wiley   +1 more source

Conversion of spent mushroom sawdust substrate to simple sugars for bioethanol production / Soo Ching Siew [PDF]

open access: yes, 2011
Spent Mushroom Sawdust Substrate (SMSS) was appraised for its potential as a lignocellulosic waste source for conversion of to bioethanol. Aqueous perchloric acid is used to hydrolyze the lignocellulosic waste feedstock to simple sugars which are then
Soo, Ching Siew
core  

Digital innovation for a greener future: the role of artificial intelligence in Europe's biofuel transition

open access: yesBiofuels, Bioproducts and Biorefining, Volume 20, Issue 5, Page 2122-2140, September/October 2026.
Abstract This study investigates the relationship between artificial intelligence (AI) development and biofuel production using a balanced panel dataset of 12 European Union (EU) countries over the 2008–2024 period. Employing feasible generalized least squares (FGLS) estimation with distributed lag specifications, the analysis controls for Renewable ...
Tufan Sarıtaş   +3 more
wiley   +1 more source

Biotechnological approaches for the conversion of agricultural residues into bioethanol

open access: yes
reservedLa crescente consapevolezza riguardo le problematiche ambientali legate all'aumento del consumo di petrolio ha spinto verso alternative più green e sostenibili. Infatti, la crescente richiesta di energia sostenibile ha spinto verso la ricerca di
PAULON, VIVIANA
core  

Valorization of Textile Waste Into Bioenergy and Carbon‐Based Functional Materials

open access: yescScience, Volume 2, Issue 3, September 2026.
ABSTRACT The global textile industry’s rapid growth has accumulated vast, heterogeneous textile waste, posing environmental challenges while offering abundant, underutilized, carbon‐rich resources. This review comprehensively assesses recent advances in textile‐waste valorization for sustainable bioenergy production and synthesis of carbon‐based ...
Selim Reza   +4 more
wiley   +1 more source

Bioethanol: Moving into the Marketplace [PDF]

open access: yes, 2000
In the last 10 years advances in biotechnology have reduced the cost of bioethanol by almost 25%. The DOE bioethanol program targets process improvements intended to allow bioethanol to compete with gasoline in the marketplace.
Sheehan, J.
core  

Hydrogen‐Enriched Tri‐Fuel Combustion for Low‐Carbon Engines at Medium Engine Load: A Comprehensive CFD Analysis

open access: yesEnergy Science &Engineering, Volume 14, Issue 9, Page 4130-4151, September 2026.
CFD analysis of a diesel–CH4–H2 tri‐fuel engine shows that increasing hydrogen energy share (HES) enhances mixing and accelerates combustion, improving pressure, efficiency, and reducing CO and soot. At 60% HES, ISFC improves 26.2%, soot drops 95%, while NOx increases due to higher temperatures. ABSTRACT The global commitment to achieve net‐zero carbon
Md. Ifthaker Alam   +4 more
wiley   +1 more source

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