Area of research
Biomedical Engineering · Agronomy and Crop Science
Research interest
Research focused on Lignocellulosic biomass and Lignin, with related work in Biomass (ecology), Raw material, Curing (chemistry). Notable publications include 'Increasing the revenue from lignocellulosic biomass: Maximizing feedstock utilization', 'Synthesis of Biobased Novolac Phenol–Formaldehyde Wood Adhesives from Biorefinery-Derived Lignocellulosic Biomass', and 'Blended Feedstocks for Thermochemical Conversion: Biomass Characterization and Bio-Oil Production From Switchgrass-Pine Residues Blends'.
Silylation of Lignins for Amphiphobic Coating and Enhanced Mechanical Properties in Thermoformed Products
Silanization of technical lignins for amphiphobic coating and enhanced mechanical properties of thermoformed products
A Non-isothermal Curing Kinetic Studies of Novolac Type Phenol-Formaldehyde Resin for 3D Printing of Sustainable Building Design
Wood properties of mature loblolly pine grown in Hawaii, North Carolina, and Mississippi: impacts of climate conditions on specific gravity and chemical composition
Synthesis of Biobased Novolac Phenol–Formaldehyde Wood Adhesives from Biorefinery-Derived Lignocellulosic Biomass
Understanding the<i>in situ</i>state of lignocellulosic biomass during ionic liquids-based engineering of renewable materials and chemicals
Fast pyrolysis bio-oil from lignocellulosic biomass for the development of bio-based cyanate esters and cross-linked networks
Blended Feedstocks for Thermochemical Conversion: Biomass Characterization and Bio-Oil Production From Switchgrass-Pine Residues Blends
Cross-Linked Acrylic Polymers from the Aqueous Phase of Biomass Pyrolysis Oil and Acrylated Epoxidized Soybean Oil
Hot water extraction as a pretreatment for reducing syngas inorganics impurities – A parametric investigation on switchgrass and loblolly pine bark
Increasing the revenue from lignocellulosic biomass: Maximizing feedstock utilization