Zobrazeno 1 - 10
of 31
pro vyhledávání: '"Juan A. Lopez-Ruiz"'
Publikováno v:
Molecules, Vol 26, Iss 18, p 5713 (2021)
Metal–organic-frameworks (MOFs) are emerging materials used in the environmental electrochemistry community for Faradaic and non-Faradaic water remediation technologies. It has been concluded that MOF-based materials show improvement in performance
Externí odkaz:
https://doaj.org/article/4cca505c9d5545968a84d71819779995
Cleanup and Conversion of Biomass Liquefaction Aqueous Phase to C3–C5 Olefins over ZnxZryOz Catalyst
Autor:
Stephen D. Davidson, Juan A. Lopez-Ruiz, Matthew Flake, Alan R. Cooper, Yaseen Elkasabi, Marco Tomasi Morgano, Vanessa Lebarbier Dagle, Karl O. Albrecht, Robert A. Dagle
Publikováno v:
Catalysts, Vol 9, Iss 11, p 923 (2019)
The viability of using a ZnxZryOz mixed oxide catalyst for the direct production of C4 olefins from the aqueous phase derived from three different bio-oils was explored. The aqueous phases derived from (i) hydrothermal liquefaction of corn stover, (i
Externí odkaz:
https://doaj.org/article/9b9d3e02a4174db6bb6dec60610b930a
Publikováno v:
Plants, Vol 13, Iss 10, p 1387 (2024)
Nitrogen (N) is the most important nutrient in coffee, with a direct impact on productivity, quality, and sustainability. N uptake by the roots is dominated by ammonium (NH4+) and nitrates (NO3−), along with some organic forms at a lower proportion
Externí odkaz:
https://doaj.org/article/72d7e2ab05bf460aaf06ba07fa3856ed
Autor:
Oliver Y. Gutiérrez, Katarzyna Grubel, Jotheeswari Kothandaraman, Juan A. Lopez-Ruiz, Kriston P. Brooks, Mark E. Bowden, Tom Autrey
Publikováno v:
Green Chemistry.
The HCO3−-HCO2− cycle, where aqueous solutions of formate salts are hydrogen and energy carriers, offers the opportunity of combining electrochemical and thermochemical operations, and of coupling CO2 capture with energy/hydrogen storage.
Autor:
Mengze Xu, Juan A. Lopez-Ruiz, Nickolas W. Riedel, Robert S. Weber, Mark E. Bowden, Libor Kovarik, Changle Jiang, Jianli Hu, Robert A. Dagle
Publikováno v:
Catalysis Science & Technology.
The addition of Cu to Ni inhibits catalyst deactivation and changes carbon co-product morphology during the thermocatalytic decomposition of methan.
Autor:
Jinyue Jiang, Juan A. Lopez-Ruiz, Yanhong Bian, Dongya Sun, Yuqing Yan, Xi Chen, Junjie Zhu, Harold D. May, Zhiyong Jason Ren
Publikováno v:
Water Research. :120139
Autor:
Jianli Hu, Lili Li, Juan A. Lopez-Ruiz, Robert A. Dagle, Libor Kovarik, Yuan Jiang, I.-Wen Wang, Changle Jiang, Yi Wang, Stephen D. Davidson, Tuhin Suvra Khan, Pedram Tavadze, Mengze Xu
Publikováno v:
Catalysis Science & Technology. 11:4911-4921
Thermocatalytic decomposition (TCD) of methane can produce hydrogen and valuable nanocarbon co-products with low to near-zero CO2 emission. In this study, a series of Pd promoted Ni catalysts, prepared with various Ni/Pd ratios on a CNT support, were
Autor:
Abhi Karkamkar, Difan Zhang, Mal Soon Lee, Laura C. Meyer, Katherine Koh, Simuck F. Yuk, Johannes A. Lercher, Juan A. Lopez-Ruiz, Kelsey A. Stoerzinger, Vassiliki Alexandra Glezakou, Donald M. Camaioni, Roger Rousseau, Oliver Y. Gutiérrez, Manh-Thuong Nguyen, Jamie D. Holladay, Udishnu Sanyal
Publikováno v:
Angewandte Chemie (International Ed. in English)
The hydrogenation of benzaldehyde to benzyl alcohol on carbon‐supported metals in water, enabled by an external potential, is markedly promoted by polarization of the functional groups. The presence of polar co‐adsorbates, such as substituted phe
Autor:
Roger Rousseau, Jamie D. Holladay, Yue Liu, Greg A. Whyatt, Jonathan L. Male, Sneha A. Akhade, Nirala Singh, Johannes A. Lercher, Oliver Y. Gutiérrez, Michael L. Elliott, Juan A. Lopez-Ruiz, Robert S. Weber, Vassiliki Alexandra Glezakou, Abhijeet J. Karkamkar, Asanga B. Padmaperuma, Mal Soon Lee, Huamin Wang, Johnathan E. Holladay
Publikováno v:
Chemical Reviews. 120:11370-11419
Sustainable energy generation calls for a shift away from centralized, high-temperature, energy-intensive processes to decentralized, low-temperature conversions that can be powered by electricity produced from renewable sources. Electrocatalytic con
Publikováno v:
Journal of Applied Electrochemistry. 51:107-118
Electrocatalytic oxidation is an attractive process for valorizing the organic compounds and removing the nitrogen in aqueous waste streams at ambient conditions. We evaluated the electrocatalytic oxidation reaction as a function of applied potential