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Calcium-Deficient and Stoichiometric Hydroxyapatites Promoted by Cobalt for the Catalytic Removal of Oxygenated Volatile Organic Compounds

Identifieur interne : 000199 ( PascalFrancis/Curation ); précédent : 000198; suivant : 000200

Calcium-Deficient and Stoichiometric Hydroxyapatites Promoted by Cobalt for the Catalytic Removal of Oxygenated Volatile Organic Compounds

Auteurs : Belaïd Aellach [Maroc] ; Aziz Ezzamarty [Maroc] ; Jacques Leglise [France] ; Carole Lamonier [France] ; Jean-François Lamonier [France]

Source :

RBID : Pascal:10-0221526

Descripteurs français

English descriptors

Abstract

Three series of hydroxyapatites (Hap) promoted by cobalt, have been synthesized using co-precipitation or impregnation methods, characterized by various techniques (XRD, UV-visible, Raman, and H2-TPR), and their catalytic properties were tested in the total oxidation of methanol. Characterization of the Co-promoted Hap solids showed that some Co2+ ions could incorporate the apatite structure and that bulk Co3O4 entities could be formed outside the apatite grains. The activity for methanol oxidation of the cobalt-coprecipitated samples was low because structural cobalt ions are difficult to reduce, whereas the activity of the Co-impregnated samples was found to be very high since the methanol was totally converted at low temperature. This was related to the presence of Co3O4 entities that are more easily reducible than structural Co ions and are found in higher quantity in the impregnated solids. This catalytic effect was highlighted using an Ca-deficient Hap as a support: cooperation of redox properties of Co3O4 and acid properties of the apatite support led to a very efficient catalyst since the corresponding light-off temperature was lowered by 50 °C with a catalyst containing 5 wt% of cobalt.
pA  
A01 01  1    @0 1011-372X
A03   1    @0 Catal. lett.
A05       @2 135
A06       @2 3-4
A08 01  1  ENG  @1 Calcium-Deficient and Stoichiometric Hydroxyapatites Promoted by Cobalt for the Catalytic Removal of Oxygenated Volatile Organic Compounds
A11 01  1    @1 AELLACH (Belaïd)
A11 02  1    @1 EZZAMARTY (Aziz)
A11 03  1    @1 LEGLISE (Jacques)
A11 04  1    @1 LAMONIER (Carole)
A11 05  1    @1 LAMONIER (Jean-François)
A14 01      @1 Laboratoire de Catalyse Hétérogène, Faculté des sciences Aïn Chock, BP. 5366, MAARIF @2 Casablanca @3 MAR @Z 1 aut. @Z 2 aut.
A14 02      @1 Ministère de l'Enseignement supérieur et de la recherche, 1 rue Descartes @2 75005 Paris @3 FRA @Z 3 aut.
A14 03      @1 Unité de Catalyse et de Chimie du Solide, UMR CNRS 8181, Bâtiment C3, Université des Sciences et Technologies de Lille @2 59655 Villeneuve d'Ascq @3 FRA @Z 4 aut. @Z 5 aut.
A20       @1 197-206
A21       @1 2010
A23 01      @0 ENG
A43 01      @1 INIST @2 21739 @5 354000181923110070
A44       @0 0000 @1 © 2010 INIST-CNRS. All rights reserved.
A45       @0 40 ref.
A47 01  1    @0 10-0221526
A60       @1 P
A61       @0 A
A64 01  1    @0 Catalysis letters
A66 01      @0 NLD
C01 01    ENG  @0 Three series of hydroxyapatites (Hap) promoted by cobalt, have been synthesized using co-precipitation or impregnation methods, characterized by various techniques (XRD, UV-visible, Raman, and H2-TPR), and their catalytic properties were tested in the total oxidation of methanol. Characterization of the Co-promoted Hap solids showed that some Co2+ ions could incorporate the apatite structure and that bulk Co3O4 entities could be formed outside the apatite grains. The activity for methanol oxidation of the cobalt-coprecipitated samples was low because structural cobalt ions are difficult to reduce, whereas the activity of the Co-impregnated samples was found to be very high since the methanol was totally converted at low temperature. This was related to the presence of Co3O4 entities that are more easily reducible than structural Co ions and are found in higher quantity in the impregnated solids. This catalytic effect was highlighted using an Ca-deficient Hap as a support: cooperation of redox properties of Co3O4 and acid properties of the apatite support led to a very efficient catalyst since the corresponding light-off temperature was lowered by 50 °C with a catalyst containing 5 wt% of cobalt.
C02 01  X    @0 001C01A03
C03 01  X  FRE  @0 Calcium @2 NC @2 FR @5 01
C03 01  X  ENG  @0 Calcium @2 NC @2 FR @5 01
C03 01  X  SPA  @0 Calcio @2 NC @2 FR @5 01
C03 02  X  FRE  @0 Apatite hydroxylée @5 02
C03 02  X  ENG  @0 Hydroxyapatite @5 02
C03 02  X  SPA  @0 Hidroxiapatito @5 02
C03 03  X  FRE  @0 Cobalt @2 NC @5 03
C03 03  X  ENG  @0 Cobalt @2 NC @5 03
C03 03  X  SPA  @0 Cobalto @2 NC @5 03
C03 04  X  FRE  @0 Réaction catalytique @5 04
C03 04  X  ENG  @0 Catalytic reaction @5 04
C03 04  X  SPA  @0 Reacción catalítica @5 04
C03 05  X  FRE  @0 Composé organique volatil @5 05
C03 05  X  ENG  @0 Volatile organic compound @5 05
C03 05  X  SPA  @0 Compuesto orgánico volátil @5 05
C03 06  X  FRE  @0 Oxydation @5 06
C03 06  X  ENG  @0 Oxidation @5 06
C03 06  X  SPA  @0 Oxidación @5 06
C03 07  X  FRE  @0 Catalyse hétérogène @5 07
C03 07  X  ENG  @0 Heterogeneous catalysis @5 07
C03 07  X  SPA  @0 Catálisis heterogénea @5 07
C03 08  X  FRE  @0 Précipitation @5 09
C03 08  X  ENG  @0 Precipitation @5 09
C03 08  X  SPA  @0 Precipitación @5 09
C03 09  X  FRE  @0 Imprégnation @5 10
C03 09  X  ENG  @0 Impregnation @5 10
C03 09  X  SPA  @0 Impregnación @5 10
C03 10  X  FRE  @0 Diffraction RX @5 11
C03 10  X  ENG  @0 X ray diffraction @5 11
C03 10  X  SPA  @0 Difracción RX @5 11
C03 11  X  FRE  @0 Méthanol @2 NK @2 FX @5 12
C03 11  X  ENG  @0 Methanol @2 NK @2 FX @5 12
C03 11  X  SPA  @0 Metanol @2 NK @2 FX @5 12
C03 12  X  FRE  @0 Caractérisation @5 13
C03 12  X  ENG  @0 Characterization @5 13
C03 12  X  SPA  @0 Caracterización @5 13
C03 13  X  FRE  @0 Solide @5 14
C03 13  X  ENG  @0 Solid @5 14
C03 13  X  SPA  @0 Sólido @5 14
C03 14  X  FRE  @0 Ion cobalt @5 15
C03 14  X  ENG  @0 Cobalt ion @5 15
C03 14  X  SPA  @0 Cobalto ión @5 15
C03 15  X  FRE  @0 Structure @5 16
C03 15  X  ENG  @0 Structure @5 16
C03 15  X  SPA  @0 Estructura @5 16
C03 16  X  FRE  @0 Composé binaire @5 17
C03 16  X  ENG  @0 Binary compound @5 17
C03 16  X  SPA  @0 Compuesto binario @5 17
C03 17  X  FRE  @0 Coprécipitation @5 18
C03 17  X  ENG  @0 Coprecipitation @5 18
C03 17  X  SPA  @0 Coprecipitación @5 18
C03 18  X  FRE  @0 Basse température @5 19
C03 18  X  ENG  @0 Low temperature @5 19
C03 18  X  SPA  @0 Baja temperatura @5 19
C03 19  X  FRE  @0 Support @5 20
C03 19  X  ENG  @0 Support @5 20
C03 19  X  SPA  @0 Soporte @5 20
C03 20  X  FRE  @0 Acide @5 21
C03 20  X  ENG  @0 Acids @5 21
C03 20  X  SPA  @0 Acido @5 21
C03 21  X  FRE  @0 Catalyseur @5 22
C03 21  X  ENG  @0 Catalyst @5 22
C03 21  X  SPA  @0 Catalizador @5 22
C03 22  X  FRE  @0 Co3O4 @4 INC @5 32
C03 23  X  FRE  @0 Co O @4 INC @5 33
C07 01  X  FRE  @0 Métal transition @2 NC @5 08
C07 01  X  ENG  @0 Transition metal @2 NC @5 08
C07 01  X  SPA  @0 Metal transición @2 NC @5 08
C07 02  X  FRE  @0 Alcanol @5 23
C07 02  X  ENG  @0 Alkanol @5 23
C07 02  X  SPA  @0 Alcanol @5 23
C07 03  X  FRE  @0 Alcool @5 24
C07 03  X  ENG  @0 Alcohol @5 24
C07 03  X  SPA  @0 Alcohol @5 24
N21       @1 151
N44 01      @1 OTO
N82       @1 OTO

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Pascal:10-0221526

Le document en format XML

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<title xml:lang="en" level="a">Calcium-Deficient and Stoichiometric Hydroxyapatites Promoted by Cobalt for the Catalytic Removal of Oxygenated Volatile Organic Compounds</title>
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<name sortKey="Aellach, Belaid" sort="Aellach, Belaid" uniqKey="Aellach B" first="Belaïd" last="Aellach">Belaïd Aellach</name>
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<name sortKey="Ezzamarty, Aziz" sort="Ezzamarty, Aziz" uniqKey="Ezzamarty A" first="Aziz" last="Ezzamarty">Aziz Ezzamarty</name>
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<s1>Laboratoire de Catalyse Hétérogène, Faculté des sciences Aïn Chock, BP. 5366, MAARIF</s1>
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<sZ>1 aut.</sZ>
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<author>
<name sortKey="Leglise, Jacques" sort="Leglise, Jacques" uniqKey="Leglise J" first="Jacques" last="Leglise">Jacques Leglise</name>
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<s1>Ministère de l'Enseignement supérieur et de la recherche, 1 rue Descartes</s1>
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<name sortKey="Lamonier, Carole" sort="Lamonier, Carole" uniqKey="Lamonier C" first="Carole" last="Lamonier">Carole Lamonier</name>
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<s3>FRA</s3>
<sZ>4 aut.</sZ>
<sZ>5 aut.</sZ>
</inist:fA14>
<country>France</country>
</affiliation>
</author>
<author>
<name sortKey="Lamonier, Jean Francois" sort="Lamonier, Jean Francois" uniqKey="Lamonier J" first="Jean-François" last="Lamonier">Jean-François Lamonier</name>
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<s1>Unité de Catalyse et de Chimie du Solide, UMR CNRS 8181, Bâtiment C3, Université des Sciences et Technologies de Lille</s1>
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<s3>FRA</s3>
<sZ>4 aut.</sZ>
<sZ>5 aut.</sZ>
</inist:fA14>
<country>France</country>
</affiliation>
</author>
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<title level="j" type="abbreviated">Catal. lett.</title>
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<imprint>
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<term>Acids</term>
<term>Binary compound</term>
<term>Calcium</term>
<term>Catalyst</term>
<term>Catalytic reaction</term>
<term>Characterization</term>
<term>Cobalt</term>
<term>Cobalt ion</term>
<term>Coprecipitation</term>
<term>Heterogeneous catalysis</term>
<term>Hydroxyapatite</term>
<term>Impregnation</term>
<term>Low temperature</term>
<term>Methanol</term>
<term>Oxidation</term>
<term>Precipitation</term>
<term>Solid</term>
<term>Structure</term>
<term>Support</term>
<term>Volatile organic compound</term>
<term>X ray diffraction</term>
</keywords>
<keywords scheme="Pascal" xml:lang="fr">
<term>Calcium</term>
<term>Apatite hydroxylée</term>
<term>Cobalt</term>
<term>Réaction catalytique</term>
<term>Composé organique volatil</term>
<term>Oxydation</term>
<term>Catalyse hétérogène</term>
<term>Précipitation</term>
<term>Imprégnation</term>
<term>Diffraction RX</term>
<term>Méthanol</term>
<term>Caractérisation</term>
<term>Solide</term>
<term>Ion cobalt</term>
<term>Structure</term>
<term>Composé binaire</term>
<term>Coprécipitation</term>
<term>Basse température</term>
<term>Support</term>
<term>Acide</term>
<term>Catalyseur</term>
<term>Co3O4</term>
<term>Co O</term>
</keywords>
<keywords scheme="Wicri" type="topic" xml:lang="fr">
<term>Calcium</term>
<term>Cobalt</term>
<term>Méthanol</term>
<term>Acide</term>
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<front>
<div type="abstract" xml:lang="en">Three series of hydroxyapatites (Hap) promoted by cobalt, have been synthesized using co-precipitation or impregnation methods, characterized by various techniques (XRD, UV-visible, Raman, and H
<sub>2</sub>
-TPR), and their catalytic properties were tested in the total oxidation of methanol. Characterization of the Co-promoted Hap solids showed that some Co
<sup>2+</sup>
ions could incorporate the apatite structure and that bulk Co
<sub>3</sub>
O
<sub>4</sub>
entities could be formed outside the apatite grains. The activity for methanol oxidation of the cobalt-coprecipitated samples was low because structural cobalt ions are difficult to reduce, whereas the activity of the Co-impregnated samples was found to be very high since the methanol was totally converted at low temperature. This was related to the presence of Co
<sub>3</sub>
O
<sub>4</sub>
entities that are more easily reducible than structural Co ions and are found in higher quantity in the impregnated solids. This catalytic effect was highlighted using an Ca-deficient Hap as a support: cooperation of redox properties of Co
<sub>3</sub>
O
<sub>4</sub>
and acid properties of the apatite support led to a very efficient catalyst since the corresponding light-off temperature was lowered by 50 °C with a catalyst containing 5 wt% of cobalt.</div>
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<fC01 i1="01" l="ENG">
<s0>Three series of hydroxyapatites (Hap) promoted by cobalt, have been synthesized using co-precipitation or impregnation methods, characterized by various techniques (XRD, UV-visible, Raman, and H
<sub>2</sub>
-TPR), and their catalytic properties were tested in the total oxidation of methanol. Characterization of the Co-promoted Hap solids showed that some Co
<sup>2+</sup>
ions could incorporate the apatite structure and that bulk Co
<sub>3</sub>
O
<sub>4</sub>
entities could be formed outside the apatite grains. The activity for methanol oxidation of the cobalt-coprecipitated samples was low because structural cobalt ions are difficult to reduce, whereas the activity of the Co-impregnated samples was found to be very high since the methanol was totally converted at low temperature. This was related to the presence of Co
<sub>3</sub>
O
<sub>4</sub>
entities that are more easily reducible than structural Co ions and are found in higher quantity in the impregnated solids. This catalytic effect was highlighted using an Ca-deficient Hap as a support: cooperation of redox properties of Co
<sub>3</sub>
O
<sub>4</sub>
and acid properties of the apatite support led to a very efficient catalyst since the corresponding light-off temperature was lowered by 50 °C with a catalyst containing 5 wt% of cobalt.</s0>
</fC01>
<fC02 i1="01" i2="X">
<s0>001C01A03</s0>
</fC02>
<fC03 i1="01" i2="X" l="FRE">
<s0>Calcium</s0>
<s2>NC</s2>
<s2>FR</s2>
<s5>01</s5>
</fC03>
<fC03 i1="01" i2="X" l="ENG">
<s0>Calcium</s0>
<s2>NC</s2>
<s2>FR</s2>
<s5>01</s5>
</fC03>
<fC03 i1="01" i2="X" l="SPA">
<s0>Calcio</s0>
<s2>NC</s2>
<s2>FR</s2>
<s5>01</s5>
</fC03>
<fC03 i1="02" i2="X" l="FRE">
<s0>Apatite hydroxylée</s0>
<s5>02</s5>
</fC03>
<fC03 i1="02" i2="X" l="ENG">
<s0>Hydroxyapatite</s0>
<s5>02</s5>
</fC03>
<fC03 i1="02" i2="X" l="SPA">
<s0>Hidroxiapatito</s0>
<s5>02</s5>
</fC03>
<fC03 i1="03" i2="X" l="FRE">
<s0>Cobalt</s0>
<s2>NC</s2>
<s5>03</s5>
</fC03>
<fC03 i1="03" i2="X" l="ENG">
<s0>Cobalt</s0>
<s2>NC</s2>
<s5>03</s5>
</fC03>
<fC03 i1="03" i2="X" l="SPA">
<s0>Cobalto</s0>
<s2>NC</s2>
<s5>03</s5>
</fC03>
<fC03 i1="04" i2="X" l="FRE">
<s0>Réaction catalytique</s0>
<s5>04</s5>
</fC03>
<fC03 i1="04" i2="X" l="ENG">
<s0>Catalytic reaction</s0>
<s5>04</s5>
</fC03>
<fC03 i1="04" i2="X" l="SPA">
<s0>Reacción catalítica</s0>
<s5>04</s5>
</fC03>
<fC03 i1="05" i2="X" l="FRE">
<s0>Composé organique volatil</s0>
<s5>05</s5>
</fC03>
<fC03 i1="05" i2="X" l="ENG">
<s0>Volatile organic compound</s0>
<s5>05</s5>
</fC03>
<fC03 i1="05" i2="X" l="SPA">
<s0>Compuesto orgánico volátil</s0>
<s5>05</s5>
</fC03>
<fC03 i1="06" i2="X" l="FRE">
<s0>Oxydation</s0>
<s5>06</s5>
</fC03>
<fC03 i1="06" i2="X" l="ENG">
<s0>Oxidation</s0>
<s5>06</s5>
</fC03>
<fC03 i1="06" i2="X" l="SPA">
<s0>Oxidación</s0>
<s5>06</s5>
</fC03>
<fC03 i1="07" i2="X" l="FRE">
<s0>Catalyse hétérogène</s0>
<s5>07</s5>
</fC03>
<fC03 i1="07" i2="X" l="ENG">
<s0>Heterogeneous catalysis</s0>
<s5>07</s5>
</fC03>
<fC03 i1="07" i2="X" l="SPA">
<s0>Catálisis heterogénea</s0>
<s5>07</s5>
</fC03>
<fC03 i1="08" i2="X" l="FRE">
<s0>Précipitation</s0>
<s5>09</s5>
</fC03>
<fC03 i1="08" i2="X" l="ENG">
<s0>Precipitation</s0>
<s5>09</s5>
</fC03>
<fC03 i1="08" i2="X" l="SPA">
<s0>Precipitación</s0>
<s5>09</s5>
</fC03>
<fC03 i1="09" i2="X" l="FRE">
<s0>Imprégnation</s0>
<s5>10</s5>
</fC03>
<fC03 i1="09" i2="X" l="ENG">
<s0>Impregnation</s0>
<s5>10</s5>
</fC03>
<fC03 i1="09" i2="X" l="SPA">
<s0>Impregnación</s0>
<s5>10</s5>
</fC03>
<fC03 i1="10" i2="X" l="FRE">
<s0>Diffraction RX</s0>
<s5>11</s5>
</fC03>
<fC03 i1="10" i2="X" l="ENG">
<s0>X ray diffraction</s0>
<s5>11</s5>
</fC03>
<fC03 i1="10" i2="X" l="SPA">
<s0>Difracción RX</s0>
<s5>11</s5>
</fC03>
<fC03 i1="11" i2="X" l="FRE">
<s0>Méthanol</s0>
<s2>NK</s2>
<s2>FX</s2>
<s5>12</s5>
</fC03>
<fC03 i1="11" i2="X" l="ENG">
<s0>Methanol</s0>
<s2>NK</s2>
<s2>FX</s2>
<s5>12</s5>
</fC03>
<fC03 i1="11" i2="X" l="SPA">
<s0>Metanol</s0>
<s2>NK</s2>
<s2>FX</s2>
<s5>12</s5>
</fC03>
<fC03 i1="12" i2="X" l="FRE">
<s0>Caractérisation</s0>
<s5>13</s5>
</fC03>
<fC03 i1="12" i2="X" l="ENG">
<s0>Characterization</s0>
<s5>13</s5>
</fC03>
<fC03 i1="12" i2="X" l="SPA">
<s0>Caracterización</s0>
<s5>13</s5>
</fC03>
<fC03 i1="13" i2="X" l="FRE">
<s0>Solide</s0>
<s5>14</s5>
</fC03>
<fC03 i1="13" i2="X" l="ENG">
<s0>Solid</s0>
<s5>14</s5>
</fC03>
<fC03 i1="13" i2="X" l="SPA">
<s0>Sólido</s0>
<s5>14</s5>
</fC03>
<fC03 i1="14" i2="X" l="FRE">
<s0>Ion cobalt</s0>
<s5>15</s5>
</fC03>
<fC03 i1="14" i2="X" l="ENG">
<s0>Cobalt ion</s0>
<s5>15</s5>
</fC03>
<fC03 i1="14" i2="X" l="SPA">
<s0>Cobalto ión</s0>
<s5>15</s5>
</fC03>
<fC03 i1="15" i2="X" l="FRE">
<s0>Structure</s0>
<s5>16</s5>
</fC03>
<fC03 i1="15" i2="X" l="ENG">
<s0>Structure</s0>
<s5>16</s5>
</fC03>
<fC03 i1="15" i2="X" l="SPA">
<s0>Estructura</s0>
<s5>16</s5>
</fC03>
<fC03 i1="16" i2="X" l="FRE">
<s0>Composé binaire</s0>
<s5>17</s5>
</fC03>
<fC03 i1="16" i2="X" l="ENG">
<s0>Binary compound</s0>
<s5>17</s5>
</fC03>
<fC03 i1="16" i2="X" l="SPA">
<s0>Compuesto binario</s0>
<s5>17</s5>
</fC03>
<fC03 i1="17" i2="X" l="FRE">
<s0>Coprécipitation</s0>
<s5>18</s5>
</fC03>
<fC03 i1="17" i2="X" l="ENG">
<s0>Coprecipitation</s0>
<s5>18</s5>
</fC03>
<fC03 i1="17" i2="X" l="SPA">
<s0>Coprecipitación</s0>
<s5>18</s5>
</fC03>
<fC03 i1="18" i2="X" l="FRE">
<s0>Basse température</s0>
<s5>19</s5>
</fC03>
<fC03 i1="18" i2="X" l="ENG">
<s0>Low temperature</s0>
<s5>19</s5>
</fC03>
<fC03 i1="18" i2="X" l="SPA">
<s0>Baja temperatura</s0>
<s5>19</s5>
</fC03>
<fC03 i1="19" i2="X" l="FRE">
<s0>Support</s0>
<s5>20</s5>
</fC03>
<fC03 i1="19" i2="X" l="ENG">
<s0>Support</s0>
<s5>20</s5>
</fC03>
<fC03 i1="19" i2="X" l="SPA">
<s0>Soporte</s0>
<s5>20</s5>
</fC03>
<fC03 i1="20" i2="X" l="FRE">
<s0>Acide</s0>
<s5>21</s5>
</fC03>
<fC03 i1="20" i2="X" l="ENG">
<s0>Acids</s0>
<s5>21</s5>
</fC03>
<fC03 i1="20" i2="X" l="SPA">
<s0>Acido</s0>
<s5>21</s5>
</fC03>
<fC03 i1="21" i2="X" l="FRE">
<s0>Catalyseur</s0>
<s5>22</s5>
</fC03>
<fC03 i1="21" i2="X" l="ENG">
<s0>Catalyst</s0>
<s5>22</s5>
</fC03>
<fC03 i1="21" i2="X" l="SPA">
<s0>Catalizador</s0>
<s5>22</s5>
</fC03>
<fC03 i1="22" i2="X" l="FRE">
<s0>Co3O4</s0>
<s4>INC</s4>
<s5>32</s5>
</fC03>
<fC03 i1="23" i2="X" l="FRE">
<s0>Co O</s0>
<s4>INC</s4>
<s5>33</s5>
</fC03>
<fC07 i1="01" i2="X" l="FRE">
<s0>Métal transition</s0>
<s2>NC</s2>
<s5>08</s5>
</fC07>
<fC07 i1="01" i2="X" l="ENG">
<s0>Transition metal</s0>
<s2>NC</s2>
<s5>08</s5>
</fC07>
<fC07 i1="01" i2="X" l="SPA">
<s0>Metal transición</s0>
<s2>NC</s2>
<s5>08</s5>
</fC07>
<fC07 i1="02" i2="X" l="FRE">
<s0>Alcanol</s0>
<s5>23</s5>
</fC07>
<fC07 i1="02" i2="X" l="ENG">
<s0>Alkanol</s0>
<s5>23</s5>
</fC07>
<fC07 i1="02" i2="X" l="SPA">
<s0>Alcanol</s0>
<s5>23</s5>
</fC07>
<fC07 i1="03" i2="X" l="FRE">
<s0>Alcool</s0>
<s5>24</s5>
</fC07>
<fC07 i1="03" i2="X" l="ENG">
<s0>Alcohol</s0>
<s5>24</s5>
</fC07>
<fC07 i1="03" i2="X" l="SPA">
<s0>Alcohol</s0>
<s5>24</s5>
</fC07>
<fN21>
<s1>151</s1>
</fN21>
<fN44 i1="01">
<s1>OTO</s1>
</fN44>
<fN82>
<s1>OTO</s1>
</fN82>
</pA>
</standard>
</inist>
</record>

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