<?xml version="1.0" encoding="UTF-8"?><lom xmlns="http://ltsc.ieee.org/xsd/LOM" xmlns:lomfr="http://www.lom-fr.fr/xsd/LOMFR" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://ltsc.ieee.org/xsd/LOM http://www.lom-fr.fr/xsd/lomfrv1.0/std/lomfr.xsd">
<general>
<identifier>
<catalog>Canal-U_Ocms</catalog>
<entry>62453</entry>
</identifier>
<title><string language="fre"><![CDATA[Beatriz Avila - CO2 electroreduction to formate on Sn, Bi and Sb nanostructured electrodes: from fundamental studies to practical devices]]></string></title>
<language>ENG</language>
<description>
<string language="fre"><![CDATA[The electrochemical reduction of CO2
into chemical products of interest has been considered as an interesting route
not only to mitigate climate change but also to store renewable energy in the
form of value-added chemicals. Among other possible chemicals, formic acid
(HCOOH) or formate (HCOO?) (depending on pH value) is one of the
most attractive carbon-based products due to its potential uses and its high
world demand including its use as a fuel for low-temperature fuel cells and as
a renewable hydrogen carrier molecule. In this contribution, we will summarize
our most recent and relevant results on the use of Tin (Sn), Bismuth (Bi), and
Antimony (Sb) nanostructured based electrocatalysts for the selective
conversion of CO2 into formic acid/ formate. This summary will cover
from fundamental studies, including the synthesis, characterization and
electrochemical behaviour of these nanostructured materials on conventional
H-type electrochemical cells, to practical applications, focused on the
development and testing of a process for the electrocatalytic reduction of CO2
to formate (HCOO?) operating in a continuous way, with different
electrochemical reactor configurations, such as Gas Diffusion Electrodes (GDE),
or Catalyst Coated Membrane Electrodes (CCME), and under different operating
conditions. The results obtained will demonstrate the potentialities of this
electrochemical technology for the valorisation of CO2 into formic
acid/ formate.
 ]]></string></description>
<keyword><string language="fre"><![CDATA[Solar driven energy conversion]]></string></keyword><keyword><string language="fre"><![CDATA[Photoelectrochemical water splitting]]></string></keyword><keyword><string language="fre"><![CDATA[Green processes for H2 production]]></string></keyword>
<lomfr:documentType>
<lomfr:source>LOMFRv1.0</lomfr:source>
<lomfr:value>image en mouvement</lomfr:value>
</lomfr:documentType>
</general><lifeCycle>
<contribute>
<role>
<source>LOMv1.0</source>
<value>author</value>
</role> 
<date><dateTime>2021-06-15</dateTime></date>
</contribute>
</lifeCycle>
<metaMetadata>
<metadataSchema>LOMv1.0</metadataSchema>
<metadataSchema>LOMFRv1.0</metadataSchema>
</metaMetadata>
<technical>
<format>video/mp4</format>
<location><![CDATA[https://www.canal-u.tv/video/le_studium/beatriz_avila_co2_electroreduction_to_formate_on_sn_bi_and_sb_nanostructured_electrodes_from_fundamental_studies_to_practical_devices.62453]]></location>
<location><![CDATA[https://streaming-canal-u.fmsh.fr/vod/media/canalu/videos/le_studium/beatriz.avila.co2.electroreduction.to.formate.on.sn.bi.and.sb.nanostructured.electrodes.from.fundamental.studies.to.practical.devices_62453/beatriz_avila_co2_electroreduction_to_formate_on_sn_bi_and_sb_nanostructured_electrodes_from_fundamental_studies_to_pratical_devices.mp4]]></location>
<size>113080713</size>
<duration><duration>PT0H27M19S</duration></duration>
</technical>
<educational>
<learningResourceType>
<source>LOMv1.0</source>
<value>lecture</value>
</learningResourceType>
<context>
<source>LOMv1.0</source>
<value>higher education</value>
</context>
</educational>
<rights>
<cost>
<source>LOMv1.0</source>
<value>no</value>
</cost>
<copyrightAndOtherRestrictions>
<source>LOMv1.0</source>
<value>no</value>
</copyrightAndOtherRestrictions>
<description>
<string language="fre"><![CDATA[Droits réservés à l'éditeur et aux auteurs. 
]]></string>
</description>
</rights>
<relation>
<kind>
<source>LOMv1.0</source>
<value>ispartof</value>
</kind>
<resource>
<identifier>
<catalog>URI</catalog>
<entry>https://www.canal-u.tv/producteurs/le_studium/le_studium_conferences</entry>
</identifier>
<description>
<string language="fre"><![CDATA[LE STUDIUM Conferences]]></string>
</description>
</resource>
</relation>
<relation>
<kind>
<source>LOMv1.0</source>
<value>ispartof</value>
</kind>
<resource>
<identifier>
<catalog>URI</catalog>
<entry>https://www.canal-u.tv/producteurs/le_studium/le_studium_conferences/challenges_and_opportunities_in_materials_for_green_energy_production_and_conversion</entry>
</identifier>
<description>
<string language="fre"><![CDATA[Challenges and opportunities in materials for green energy production and conversion]]></string>
</description>
</resource>
</relation>
<classification>
<purpose>
<source>LOMv1.0</source>
<value>discipline</value>
</purpose>
<taxonPath>
<source>
<string language="fre"><![CDATA[Universités Numériques Thématiques 2009 http://www.universites-numeriques.fr]]></string>
</source>
<taxon>
<id/>
<entry>
<string language="fre"/>
</entry>
</taxon>
</taxonPath>
</classification>
<classification>
<purpose>
<source>LOMv1.0</source>
<value>discipline</value>
</purpose>
<taxonPath>
<source>
<string language="fre">CDD 22e éd.</string>
<string language="eng">DDC 22nd ed.</string>
</source>
<taxon>
<id>540</id>
<entry>
<string language="fre"><![CDATA[Chimie et sciences connexes]]></string>
</entry>
</taxon>
</taxonPath>
</classification> </lom>