Scott W. Pryor

Scott W. Pryor

North Dakota State University

H-index: 21

North America-United States

About Scott W. Pryor

Scott W. Pryor, With an exceptional h-index of 21 and a recent h-index of 13 (since 2020), a distinguished researcher at North Dakota State University, specializes in the field of Biological engineering, bioenergy, bioproducts, bioprocessing, agricultural engineering.

His recent articles reflect a diverse array of research interests and contributions to the field:

Supply Chain Model to Compare the Biorefinery Economics and Environmental Performance of Baled and Pelleted Biomass System

Tubular electrosynthesis of silica-coated magnetite and evaluation of magnetic nanobiocatalyst efficacy during biomass hydrolysis

Glucan Conversion and Membrane Recovery of Biomimetic Cellulosomes During Lignocellulosic Biomass Hydrolysis

Scalable and sustainable synthesis of superparamagnetic iron oxide nanoparticles using new tubular electrochemical system

Cost and environmental benefits of using pelleted corn stover for bioethanol production

Life cycle perspectives of using non-pelleted vs. pelleted corn stover in a cellulosic biorefinery

Biomimetic cellulosomes assembled on molecular brush scaffolds: random complexes vs enzyme mixtures

Scott W. Pryor Information

University

Position

___

Citations(all)

1272

Citations(since 2020)

528

Cited By

995

hIndex(all)

21

hIndex(since 2020)

13

i10Index(all)

38

i10Index(since 2020)

22

Email

University Profile Page

Google Scholar

Scott W. Pryor Skills & Research Interests

Biological engineering

bioenergy

bioproducts

bioprocessing

agricultural engineering

Top articles of Scott W. Pryor

Title

Journal

Author(s)

Publication Date

Supply Chain Model to Compare the Biorefinery Economics and Environmental Performance of Baled and Pelleted Biomass System

BioEnergy Research

Ramsharan Pandey

Oveis Hassanijalilian

Seyed Ali Esmaeili

Scott W Pryor

Ghasideh Pourhashem

2024/3

Tubular electrosynthesis of silica-coated magnetite and evaluation of magnetic nanobiocatalyst efficacy during biomass hydrolysis

Bioprocess and Biosystems Engineering

Ademola Hammed

Yehor Polunin

Andriy Voronov

Scott Pryor

2022/8

Glucan Conversion and Membrane Recovery of Biomimetic Cellulosomes During Lignocellulosic Biomass Hydrolysis

Applied Biochemistry and Biotechnology

Ademola Hammed

Yehor Polunin

Andriy Voronov

Scott W Pryor

2021/9

Scalable and sustainable synthesis of superparamagnetic iron oxide nanoparticles using new tubular electrochemical system

Journal of Applied Electrochemistry

Ademola Hammed

Andriy Voronov

Scott Pryor

2021/7

Cost and environmental benefits of using pelleted corn stover for bioethanol production

Energies

Ramsharan Pandey

Nurun Nahar

Scott W Pryor

Ghasideh Pourhashem

2021/4/28

Life cycle perspectives of using non-pelleted vs. pelleted corn stover in a cellulosic biorefinery

Energies

Nurun Nahar

Ramsharan Pandey

Ghasideh Pourhashem

David Ripplinger

Scott W Pryor

2021/4/27

Biomimetic cellulosomes assembled on molecular brush scaffolds: random complexes vs enzyme mixtures

ACS Applied Polymer Materials

Oksana Zholobko

Ademola Hammed

Andrey Zakharchenko

Nikolay Borodinov

Igor Luzinov

...

2021/3/16

See List of Professors in Scott W. Pryor University(North Dakota State University)