نتایج جستجو برای: enzymatic biofuel cell

تعداد نتایج: 1729460  

Journal: :Journal of the American Chemical Society 2003
Eugenii Katz Itamar Willner

An electroswitchable and tunable biofuel cell based on the biocatalyzed oxidation of glucose is described. The anode consists of a Cu(2+)-poly(acrylic acid) film on which the redox-relay pyrroloquinoline quinone (PQQ) and the flavin adenine dinucleotide (FAD) cofactor are covalently linked. Apo-glucose oxidase is reconstituted on the FAD sites to yield the glucose oxidase (GOx)-functionalized e...

2014
Ginette Doué Micaël Bédikou Gisèle Koua Rose-Monde Mégnanou Sébastien Niamké

The enzymatic and acid hydrolysis have converted eight new starches into a range of chain lengths mainly including glucose, maltose, and maltodextrins as observed on TLC plates, irrespective to the starch variety and treatment. Results of the enzymatic hydrolysis have highlighted the possibility of the use of V4 and V64, which can be labelled as "dietary fibres", to enhance the organoleptic qua...

2015
Josh V. Vermaas Loukas Petridis Xianghong Qi Roland Schulz Benjamin Lindner Jeremy. C. Smith

BACKGROUND The conversion of plant biomass to ethanol via enzymatic cellulose hydrolysis offers a potentially sustainable route to biofuel production. However, the inhibition of enzymatic activity in pretreated biomass by lignin severely limits the efficiency of this process. RESULTS By performing atomic-detail molecular dynamics simulation of a biomass model containing cellulose, lignin, and...

2014
Hideyo Inouye Yan Zhang Lin Yang Nagarajan Venugopalan Robert F. Fischetti S. Charlotte Gleber Stefan Vogt W. Fowle Bryan Makowski Melvin Tucker Peter Ciesielski Bryon Donohoe James Matthews Michael E. Himmel Lee Makowski

Lignocellulosic composite in corn stover is a candidate biofuel feedstock of substantial abundance and sustainability. Its utilization is hampered by resistance of constituent cellulose fibrils to deconstruction. Here we use multi-scale studies of pretreated corn stover to elucidate the molecular mechanism of deconstruction and investigate the basis of recalcitrance. Dilute acid pretreatment ha...

2006
G. Tayhas R. Palmore Steven H. Bergens George M. Whitesides

Diaphorase catalyzes efficiently the oxidation of NADH to NAD+ by benzylviologen. This reaction was used to regenerate the NADf required for the biocatalyzed oxidation of methanol to CO, using NADf-dependent dehydrogenases. A rnethanol/dioxygen biofuel cell was assembled using these bioreactions in the anode compartment. The open-circuit voltage of the cell was 0.8 V, and the maximum power outp...

2011
Mary J Dunlop

A major challenge when using microorganisms to produce bulk chemicals such as biofuels is that the production targets are often toxic to cells. Many biofuels are known to reduce cell viability through damage to the cell membrane and interference with essential physiological processes. Therefore, cells must trade off biofuel production and survival, reducing potential yields. Recently, there hav...

One of the main challenges of bioenergy sector development is the cost of biomass supply chain resulted from inefficient bioenergy production from low energy content biomass feedstocks, high logistics costs of biomass production, handling and transportation. Another main aspect to be considered is that the configuration of a biofuel supply chain can be dynamic which evolve over time. Growing de...

2016
Alina Sekretaryova

iv Overall, the results presented in this thesis contribute to the solution of the “electronic coupling problem”, arising when interfacing biomolecules with electronics and limiting the performance of bioelectrocatalytic systems in practical applications. The developed methods to facilitate electron transfer will hopefully promote future biosensing devices and biofuel cells. I believe that the ...

Journal: :Bioresource technology 2013
Aditya Bhalla Namita Bansal Sudhir Kumar Kenneth M Bischoff Rajesh K Sani

Second-generation feedstock, especially nonfood lignocellulosic biomass is a potential source for biofuel production. Cost-intensive physical, chemical, biological pretreatment operations and slow enzymatic hydrolysis make the overall process of lignocellulosic conversion into biofuels less economical than available fossil fuels. Lignocellulose conversions carried out at ≤ 50 °C have several li...

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