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Rapport Bilan Carbone de l'université Paris Diderot.

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Annexe 7.1 : Données <strong>de</strong> ventilation pour les types <strong>de</strong> DEEE<br />

(sources : voir Annexe 7.2 : Répartition <strong>de</strong>s DEEE en fonction <strong>de</strong>s<br />

matériaux <strong>de</strong> l’outil <strong>Bilan</strong> <strong>Carbone</strong>®)<br />

Year<br />

Réfrigérateur<br />

1997<br />

Weight<br />

kg %<br />

Average 84.46<br />

Steel 47.55 56,3<br />

Iron 4.56 5,4<br />

Sub-Total: Ferrous Metal 52.11 61,7<br />

Aluminum 2.11 2,5<br />

Copper 2.70 3,2<br />

Brass 0.17 0,2<br />

Other Metal 0.25 0,3<br />

SubTotal: Non-Ferrous Metal 5.24 6,2<br />

Rubber 0.17 0,2<br />

Fiber & paper 0.08 0,1<br />

Polypropylene 0.51 0,6<br />

PS&HIPS 6.25 7,4<br />

ABS 5.07 6<br />

PVC 1.01 1,2<br />

Polyurethane 5.57 6,6<br />

Other Plastics 3.63 4,3<br />

Asst. Mixed Plastics 1.44 1,7<br />

SubTotal Plastics 23.48 27,8<br />

Fiberglass 0.08 0,1<br />

Glass 2.87 3,4<br />

SubTotal Glass 2.96 3,5<br />

Refrigerant 0.08 0,1<br />

Oil 0.17 0,2<br />

Other 0.08 0,1<br />

TOTAL 84.37 99,9<br />

Source : Life Cycle Optimization of Household Refrigerator-Freezer<br />

Replacement by Yuhta Alan Horie<br />

Unité Centrale<br />

Masse moyenne par unité<br />

Matériau Ordinateur %<br />

ferreux 10,3 36,79%<br />

autres métaux 4,4 15,71%<br />

plastiques 4,3 15,36%<br />

tubes cathodiques 6,5 23,21%<br />

cartes électroniques 2,5 8,93%<br />

Poids total 28 100,00%<br />

Source : <strong>Bilan</strong> <strong>Carbone</strong> ADEME explication facteurs d'émission<br />

Ecran cathodique standard<br />

Matériau Teneur Poids (kg)<br />

Plastiques 22,99% 6,26<br />

Plomb 6,30% 1,72<br />

Aluminium 14,17% 3,86<br />

Germanium 0,16% 0,1<br />

Gallium 0,13% 0,58<br />

Fer 20,47% 5,27<br />

Etain 1,78% 0,91<br />

Cuivre 6,93% 1,1<br />

Baryum 0,32% 0,23<br />

Nickel 0,85% 0,6<br />

Zinc 2,20% 0,1<br />

Tantale 0,16% 0,1<br />

Indium 0,16% 0,1<br />

Vanadium 0,20% 0,1<br />

Terbium 0,00% 0,1<br />

Béryllium 0,16% 0,1<br />

Or 0,16% 0,1<br />

Europium 0,20% 0,1<br />

Titane 0,16% 0,1<br />

Ruthénium 0,16% 0,1<br />

Cobalt 0,16% 0,1<br />

Palladium 0,30% 0,1<br />

M anganèse 0,32% 0,1<br />

Argent 0,19% 0,1<br />

Antimoine 0,94% 0,1<br />

Bismuth 0,63% 0,1<br />

Chrome 0,63% 0,1<br />

Cadmium 0,94% 0,1<br />

Sélénium 0,16% 44,1<br />

Niobium 0,20% 0,1<br />

Yttrium 0,20% 0,1<br />

Rhodium 0,10% 0,1<br />

Platine 0,10% 0,1<br />

M ercure 0,22% 0,1<br />

Arsenic 0,13% 0,1<br />

Silice 24,88% 8<br />

Source: Microelectronics and Computer<br />

Technology Corporation (MCC). 1996<br />

Imprimante<br />

Objet Masse (g) Total (g) %<br />

Metals (total) 910 24,3%<br />

Steel 696 18,6%<br />

Aluminum 165 4,4%<br />

Copper 49 1,3%<br />

Plastics (total) 2179 58,3%<br />

Recyclable 1887 50,5%<br />

Non-recyclable 292 7,8%<br />

ABS 163 4,4%<br />

HIPS 1472 39,4%<br />

Other Plastics 544 14,5%<br />

Other, General (total) 144 3,9%<br />

Electronics (total) 507 13,6%<br />

Printer (total) 3740 100,0%<br />

Recyclable Materials (total) 2947 79,0%<br />

Source : Life Cycle Inventory for an InkJet Printer by Jason OrdTom<br />

DiCordia<br />

2013 <strong>Rapport</strong> Méthodologique <strong>de</strong> Documentation <strong>de</strong> l’Outil <strong>Bilan</strong> <strong>Carbone</strong> 145

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