Catalytic Enhancement of Inductively Heated Fe 3 O 4 Nanoparticles by Removal of Surface Ligands

Author:

Moura Natalia S.1ORCID,Bajgiran Khashayar R.1,Roman Cameron L.1,Daemen Luke2,Cheng Yongqiang2ORCID,Lawrence Jimmy1,Melvin Adam T.1,Dooley Kerry M.1,Dorman James A.1ORCID

Affiliation:

1. Department of Chemical Engineering Louisiana State University 3307 Patrick F. Taylor Hall Baton Rouge LA 70803 USA

2. Spallation Neutron Source Oak Ridge National Lab PO. Box 2008 Oak Ridge TN 37831 USA

Funder

U.S. Department of Energy

Louisiana Board of Regents

Oak Ridge National Laboratory

Publisher

Wiley

Subject

General Energy,General Materials Science,General Chemical Engineering,Environmental Chemistry

Reference108 articles.

1. S. Brueske C. Kramer A. Fisher U. S. Department of Energy – Advanced Manufacturing Office Bandwidth Study on Energy Use and Potential Energy Saving Opportunities in US Pulp and Paper Manufacturing 2015.

2. U. S. Department of Energy – Office of Energy Efficiency & Renewable Energy Manufacturing Energy and Carbon Footprint-Sector: Chemicals 2014.

3. C. A. Koval J. Lercher S. L. Scott G. W. Coates E. Iglesia R. M. Bullock T. F. Jaramillo M. Flytzani-Stephanopoulos D. Resasco C. L. Tway Basic Research Needs for Catalysis Science to Transform Energy Technologies: Report from the U. S. Department of Energy Office of Basic Energy Sciences Workshop 2017.

4.  

5. Induction Heating: An Enabling Technology for the Heat Management in Catalytic Processes

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