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Chemistry

D-Index
67
Citations
14700
World Ranking
6978
National Ranking
2081

Overview

Basudeb Saha is affiliated with the University of Delaware in the United States. Their body of work spans several key areas within engineering and materials science, with a focus on biofuel production and thermochemical biomass conversion processes.

Their research includes topics such as:

  • Biodiesel Production and Applications
  • Thermochemical Biomass Conversion Processes
  • Lignin and Wood Chemistry
  • Polyoxometalates: Synthesis and Applications
  • Biofuel production and bioconversion
  • Catalysis and Hydrodesulfurization Studies
  • Carbon dioxide utilization in catalysis

The main fields of study for this researcher are Engineering and Materials Science. Within these broader disciplines, they have contributed to subfields including Biomedical Engineering, Materials Chemistry, Mechanical Engineering, Process Chemistry and Technology, and Organic Chemistry.

Frequent publication venues where Basudeb Saha's work appears include:

  • Energies
  • Renewable Energy
  • Catalysts
  • Reactions
  • Processes

Several co-authors have collaborated with this scientist repeatedly, notably:

  • Omar Aboelazayem
  • Mamdouh A. Gadalla
  • Zahra Echresh Zadeh
  • Ali Abdulkhani
  • Shahenda Mahran

Representative recent papers authored or co-authored by Basudeb Saha include:

  • Recent Insights into Lignocellulosic Biomass Pyrolysis: A Critical Review on Pretreatment, Characterization, and Products Upgrading, 2020, Processes
  • Advanced process integration for supercritical production of biodiesel: Residual waste heat recovery via organic Rankine cycle (ORC), 2020, Renewable Energy
  • A comparative production and characterisation of fast pyrolysis bio-oil from Populus and Spruce woods, 2020, Energy
  • Comparison of Catalytic Activity of ZIF-8 and Zr/ZIF-8 for Greener Synthesis of Chloromethyl Ethylene Carbonate by CO2 Utilization, 2020, Energies
  • Characterization of Fast Pyrolysis Bio-Oil from Hardwood and Softwood Lignin, 2020, Energies

Best Publications

  • Surface modification and characterisation of a coal-based activated carbon

    P. Chingombe;B. Saha;R.J. Wakeman

  • Advances in 5-hydroxymethylfurfural production from biomass in biphasic solvents

    Basudeb Saha;Mahdi M. Abu-Omar

  • Advances in conversion of hemicellulosic biomass to furfural and upgrading to biofuels

    Saikat Dutta;Sudipta De;Basudeb Saha;Md. Imteyaz Alam

  • A synergistic biorefinery based on catalytic conversion of lignin prior to cellulose starting from lignocellulosic biomass

    Trenton Parsell;Sara Yohe;John Degenstein;Tiffany Jarrell

  • Hydrodeoxygenation processes: advances on catalytic transformations of biomass-derived platform chemicals into hydrocarbon fuels.

    Sudipta De;Basudeb Saha;Rafael Luque

  • Upgrading Furfurals to Drop-in Biofuels: An Overview

    Ashish Bohre;Saikat Dutta;Basudeb Saha;Basudeb Saha;Mahdi M. Abu-Omar

  • Direct conversion of cellulose and lignocellulosic biomass into chemicals and biofuel with metal chloride catalysts

    Saikat Dutta;Sudipta De;Md. Imteyaz Alam;Mahdi M. Abu-Omar

  • Microwave assisted conversion of carbohydrates and biopolymers to 5-hydroxymethylfurfural with aluminium chloride catalyst in water

    Sudipta De;Saikat Dutta;Basudeb Saha

  • Adsorption of arsenic(V) by activated carbon prepared from oat hulls.

    C.L. Chuang;M. Fan;M. Xu;R.C. Brown

  • Evaluation of iron oxide and aluminum oxide as potential arsenic(V) adsorbents

    Youngran Jeong;Maohong Fan;Shilpi Singh;Chia-Line Chuang

  • Heterogeneous catalysed esterification of acetic acid with isoamyl alcohol: kinetic studies

    H.T.R. Teo;B. Saha

  • Sorption of atrazine on conventional and surface modified activated carbons

    P. Chingombe;B. Saha;R.J. Wakeman

  • Porphyrin-based porous organic polymer-supported iron(III) catalyst for efficient aerobic oxidation of 5-hydroxymethyl-furfural into 2,5-furandicarboxylic acid

    Basudeb Saha;Dinesh Gupta;Mahdi M. Abu-Omar;Arindam Modak

  • Zinc‐Assisted Hydrodeoxygenation of Biomass‐Derived 5‐Hydroxymethylfurfural to 2,5‐Dimethylfuran

    Basudeb Saha;Christine M. Bohn;Mahdi M. Abu-Omar

  • A Brief Summary of the Synthesis of Polyester Building‐Block Chemicals and Biofuels from 5‐Hydroxymethylfurfural

    Saikat Dutta;Sudipta De;Basudeb Saha

  • Aerobic oxidation of 5-hydroxylmethylfurfural with homogeneous and nanoparticulate catalysts

    Basudeb Saha;Saikat Dutta;Mahdi M. Abu-Omar

  • Lignin depolymerization over Ni/C catalyst in methanol, a continuation: effect of substrate and catalyst loading

    Ian Klein;Basudeb Saha;Mahdi M. Abu-Omar

  • Sorption of Cr(VI) from aqueous solution by Amberlite XAD-7 resin impregnated with Aliquat 336

    B Saha;R.J Gill;D.G Bailey;N Kabay

  • Recent Insights into Lignocellulosic Biomass Pyrolysis: A Critical Review on Pretreatment, Characterization, and Products Upgrading

    Zahra Echresh Zadeh;Ali Abdulkhani;Omar Aboelazayem;Basudeb Saha

  • One-Pot Conversions of Lignocellulosic and Algal Biomass into Liquid Fuels

    Sudipta De;Saikat Dutta;Basudeb Saha

  • Structural analysis of humins formed in the Brønsted acid catalyzed dehydration of fructose

    Ziwei Cheng;Jeffrey L. Everhart;George Tsilomelekis;Vladimiros Nikolakis

  • Removal of Cr(VI) by solvent impregnated resins (SIR) containing aliquat 336

    Nalan Kabay;Müşerref Arda;B Saha;M Streat

Frequent Co-Authors

Dionisios G. Vlachos
Dionisios G. Vlachos University of Delaware
Saikat Dutta
Saikat Dutta Amity University
Sudipta De
Sudipta De Jadavpur University
Mahdi M. Abu-Omar
Mahdi M. Abu-Omar University of California, Santa Barbara
Asim Bhaumik
Asim Bhaumik Indian Association for the Cultivation of Science
James H. Espenson
James H. Espenson Iowa State University
Marianthi G. Ierapetritou
Marianthi G. Ierapetritou University of Delaware
David C. Sherrington
David C. Sherrington University of Strathclyde
David J. Morgan
David J. Morgan Cardiff University
Goran T. Vladisavljevic
Goran T. Vladisavljevic Loughborough University

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