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Search Results - christopher+nomura
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Production of Biodegradable Co-Polymers from Biodiesel Glycerol and Levulinic Acid
This technology presents an innovative microbial fermentation process to produce biodegradable polyhydroxyalkanoates (PHAs) using biodiesel-derived glycerol as a cost-effective carbon source. Background: Traditional plastics pose significant environmental challenges due to their persistence and non-biodegradability. There has been increasing demand...
Published: 7/10/2026
|
Updated: 7/10/2026
|
Inventor(s):
James Nakas
,
Joseph Perrotta
,
Christopher Nomura
,
Chengjin Zhu
Keywords(s):
Category(s):
Campus > SUNY Environmental Science & Forestry
,
Technology Classifications > Environment
Click-Chemistry Enabled Polyhydroxyalkanoate Polymers
Synthesis of PHAs using a modified bacterial strain and click chemistry. Background: Polyhydroxyalkanoates (PHAs) are biodegradable plastics produced by microorganisms that can be used as substitutes for non-biodegradable, petroleum-based plastics. Because PHAs are produced by microorganisms, the monomer unit composition can’t always be controlled,...
Published: 1/30/2026
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Updated: 11/9/2021
|
Inventor(s):
Christopher Nomura
,
Atahualpa Pinto
Keywords(s):
3D printing
,
acute lung injury
,
TAF
,
Technologies
Category(s):
Campus > SUNY Environmental Science & Forestry
,
Technology Classifications > Environment
Molecular Roadblocks for RpoN Binding Sites
Novel synthetic peptides that inhibit genes responsible for virulence and biofilm formation. Background:The RNA polymerase sigma-54 factor (rpoN) gene is conserved across a wide number of bacterial species, and the RpoN protein has been shown to activate transcription of genes encoding proteins involved in nitrogen utilization, pilin, flagella, and...
Published: 1/30/2026
|
Updated: 11/9/2021
|
Inventor(s):
Christopher Nomura
,
Benjamin Lundgren
Keywords(s):
Category(s):
Campus > SUNY Environmental Science & Forestry
,
Technology Classifications > Environment