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Application of Binary PdSb/C as an Anode in a Polymeric Electrolyte Reactor-Fuel Cell Type for Electrosynthesis of Methanol from Methane
PdSb catalyst prepared in different compositions were applied as an anode in a polymeric electrolyte reactor - fuel cell type (PER-FC) to convert methane into oxygenated products and energy in mild conditions. The PER-FC polarization curves for Pd90Sb10/C presented maximum current density about 0.92...
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Published in: | Materials research (São Carlos, São Paulo, Brazil) São Paulo, Brazil), 2022-01, Vol.25, p.1 |
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container_title | Materials research (São Carlos, São Paulo, Brazil) |
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creator | Godoi, Camila M. Santos, Monique C.L. Nunes, Livia C. Silva, Araceli J. Ramos, Andrezza S. Souza, Rodrigo F.B. de O. Neto, Almir |
description | PdSb catalyst prepared in different compositions were applied as an anode in a polymeric electrolyte reactor - fuel cell type (PER-FC) to convert methane into oxygenated products and energy in mild conditions. The PER-FC polarization curves for Pd90Sb10/C presented maximum current density about 0.92 mW cm-2 about 15% higher than PdSb materials. However, the material Pd50Sb50/C showed higher reaction rate for methanol generation than the other materials occurring close to the OCV (r ~ 7 mol L-1 h-1). The qualitative analyses of PER-FC effluent by FT-IR identified products as methanol, carbonate and formate ions from the partial oxidation of methane for all materials. |
doi_str_mv | 10.1590/1980-5373-mr-2021-0542 |
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Neto, Almir</creatorcontrib><title>Application of Binary PdSb/C as an Anode in a Polymeric Electrolyte Reactor-Fuel Cell Type for Electrosynthesis of Methanol from Methane</title><title>Materials research (São Carlos, São Paulo, Brazil)</title><addtitle>Mat. Res</addtitle><description>PdSb catalyst prepared in different compositions were applied as an anode in a polymeric electrolyte reactor - fuel cell type (PER-FC) to convert methane into oxygenated products and energy in mild conditions. The PER-FC polarization curves for Pd90Sb10/C presented maximum current density about 0.92 mW cm-2 about 15% higher than PdSb materials. However, the material Pd50Sb50/C showed higher reaction rate for methanol generation than the other materials occurring close to the OCV (r ~ 7 mol L-1 h-1). The qualitative analyses of PER-FC effluent by FT-IR identified products as methanol, carbonate and formate ions from the partial oxidation of methane for all materials.</description><subject>Anodes</subject><subject>chemical and energy co-generation</subject><subject>Electrode polarization</subject><subject>Electrolytes</subject><subject>ENGINEERING, CHEMICAL</subject><subject>Fuel cells</subject><subject>MATERIALS SCIENCE, MULTIDISCIPLINARY</subject><subject>METALLURGY & METALLURGICAL ENGINEERING</subject><subject>Methane</subject><subject>Methane into methanol</subject><subject>Methanol</subject><subject>Nuclear fuels</subject><subject>Oxidation</subject><subject>polymeric electrolyte reactor - fuel cell type</subject><subject>Qualitative analysis</subject><issn>1516-1439</issn><issn>1980-5373</issn><issn>1980-5373</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><sourceid>DOA</sourceid><recordid>eNpFkcFu1DAQhiMEEmXhFZAlzmlnYsdJjsuqhUqtqGg5W449pl45cbCzh32DPjYJW9qTPfb8v8f_VxSfEc6x7uACuxbKmje8HFJZQYUl1KJ6U5y9XLxd9jXKEgXv3hcfct4DVA2X_Kx42k5T8EbPPo4sOvbVjzod2Z297y92TGemR7YdoyXmR6bZXQzHgZI37DKQmdNSzsR-kjZzTOXVgQLbUQjs4TgRczH9b8vHcX6k7PP6xi3Nj3qMgbkUh-eKPhbvnA6ZPj2vm-LX1eXD7nt58-Pb9W57Uxou5Vx2ptEdR2jQul7YtgfDbdNKYUm0womqkU1bdbKnDnhPaFuNJBrkmoNDkHxTXJ98bdR7NSU_LP9VUXv17yCm30qn2ZtAyvX1Yo-WI3ZCuLbnLbd9K52w2Jsl101xfvLKxlOIah8PaVyGV_dr3GqNe-FRAQACcKwXwZeTYErxz4Hy_CqppJSdrKBZbeWpyyzB5UTuZUwEtSJXK1m1klVDUitytSLnfwHr55yS</recordid><startdate>20220101</startdate><enddate>20220101</enddate><creator>Godoi, Camila M.</creator><creator>Santos, Monique C.L.</creator><creator>Nunes, Livia C.</creator><creator>Silva, Araceli J.</creator><creator>Ramos, Andrezza S.</creator><creator>Souza, Rodrigo F.B. de</creator><creator>O. 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subjects | Anodes chemical and energy co-generation Electrode polarization Electrolytes ENGINEERING, CHEMICAL Fuel cells MATERIALS SCIENCE, MULTIDISCIPLINARY METALLURGY & METALLURGICAL ENGINEERING Methane Methane into methanol Methanol Nuclear fuels Oxidation polymeric electrolyte reactor - fuel cell type Qualitative analysis |
title | Application of Binary PdSb/C as an Anode in a Polymeric Electrolyte Reactor-Fuel Cell Type for Electrosynthesis of Methanol from Methane |
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