Grace Jones Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Researcher
unknown
Rice Research and Extension Center
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Grace Jones investigates processes related to cold plasma applications for gas reforming and membrane performance. Her recent work explores leveraging oxygen mobility with zirconia in low-temperature plasma to enhance methane reforming into syngas. Jones also studies the performance and efficiency of SAPO-34 membranes when subjected to cold plasma for separating CO2 and CH4 mixtures. Her research has resulted in five publications, with an h-index of 3 and 33 total citations. Jones collaborates with researchers at the University of Arkansas at Fayetteville, including Apolo Nambo, Fnu Gorky, Maria L. Carreon, and Levi Pile, with whom she shares multiple publications.
Metrics
- h-index: 3
- Publications: 5
- Citations: 33
Selected Publications
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Leveraging oxygen mobility with zirconia in low-temperature plasma for enhanced methane reforming to syngas (2025)
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Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures (2024)
Collaboration Network
Top Collaborators
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Leveraging oxygen mobility with zirconia in low-temperature plasma for enhanced methane reforming to syngas
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Leveraging oxygen mobility with zirconia in low-temperature plasma for enhanced methane reforming to syngas
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Leveraging oxygen mobility with zirconia in low-temperature plasma for enhanced methane reforming to syngas
- Leveraging oxygen mobility with zirconia in low-temperature plasma for enhanced methane reforming to syngas
- Leveraging oxygen mobility with zirconia in low-temperature plasma for enhanced methane reforming to syngas
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