J
Jesper Brask
Researcher at Novozymes
Publications - 88
Citations - 2021
Jesper Brask is an academic researcher from Novozymes. The author has contributed to research in topics: Lipase & Chemistry. The author has an hindex of 22, co-authored 78 publications receiving 1738 citations. Previous affiliations of Jesper Brask include Technical University of Denmark & University of Copenhagen.
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Enzymatic biodiesel production: Technical and economical considerations
TL;DR: In this article, the authors reviewed the enzymatic processing of oils and fats into biodiesel with focus on process design and economy, and showed that enzyme catalysts can become cost effective compared to chemical processing.
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Immobilization of laccase on epoxy-functionalized silica and its application in biodegradation of phenolic compounds.
Mehdi Mohammadi,Mohammad Ali As’habi,Peyman Salehi,Maryam Yousefi,Mahboobeh Nazari,Jesper Brask +5 more
TL;DR: The immobilized enzyme was found to be stabilized compared to the free enzyme, and the performance of the biocatalyst was evaluated by the degradation of phenolic compounds including phenol, p-chlorophenol and catechol.
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Enzymatic production of biodiesel using lipases immobilized on silica nanoparticles as highly reusable biocatalysts: effect of water, t-butanol and blue silica gel contents
Mohadese Babaki,Maryam Yousefi,Zohreh Habibi,Mehdi Mohammadi,Parisa Yousefi,Javad Mohammadi,Jesper Brask +6 more
TL;DR: In this paper, the effect of water, t-butanol and blue silica gel as water adsorbent on the yield of biodiesel by methanolysis of canola oil was studied using self-made biocatalysts.
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Understanding the plasticity of the alpha/beta hydrolase fold: lid swapping on the Candida antarctica lipase B results in chimeras with interesting biocatalytic properties.
Michael Skjøt,Leonardo De Maria,Robin Chatterjee,Allan Svendsen,Sharnkant A. Patkar,Peter Rahbek Østergaard,Jesper Brask +6 more
TL;DR: Replacement of the helix with corresponding lid regions from CALB homologues from Neurospora crassa and Gibberella zeae resulted in new CALB chimeras with novel biocatalytic properties.
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Fmoc solid-phase synthesis of peptide thioesters by masking as trithioortho esters.
TL;DR: A novel backbone amide linker (BAL) strategy is presented for peptide synthesis in which the thioester functionality is masked as a trithioortho ester throughout the synthesis.