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Evaluation of Plastic Waste Management in Thailand Using Material ...

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Table E-7 Details <strong>of</strong> each flow <strong>of</strong> scenario 2A (cont<strong>in</strong>ued)<br />

No. Description<br />

Value<br />

(Tonnes/year)<br />

Assumption and Calculation<br />

44 Landfill<strong>in</strong>g (Thermoplastic) 704,209<br />

Assumed that 30% <strong>of</strong> municipal thermoplastic wastes will be disposed at landfills <strong>in</strong><br />

2016. (Not present <strong>in</strong> the material flow)<br />

45 Landfill<strong>in</strong>g 732,561<br />

The summary <strong>of</strong> landfill<strong>in</strong>g plastic wastes from each source. This amount is from<br />

municipal and <strong>in</strong>dustrial wastes for landfill<strong>in</strong>g.<br />

46 Stock <strong>in</strong> landfill 1,008,144 Stock = <strong>in</strong>put <strong>of</strong> process - output <strong>of</strong> process<br />

47 <strong>Plastic</strong> waste for recycl<strong>in</strong>g 1,341,389<br />

Assumed that 30% <strong>of</strong> municipal thermoplastic wastes will recycled <strong>in</strong> 2016. This amount<br />

is from municipal and <strong>in</strong>dustrial wastes for recycl<strong>in</strong>g.<br />

48<br />

Improper disposed waste<br />

(Thermosett<strong>in</strong>g) <strong>in</strong> MSW<br />

12,567<br />

Assumed that 53% <strong>of</strong> municipal thermosett<strong>in</strong>g wastes will not disposed properly (Not<br />

present <strong>in</strong> the material flow)<br />

49<br />

Improper disposed waste<br />

(Thermoplastic) <strong>in</strong> MSW<br />

187,789<br />

Assumed that 8% <strong>of</strong> municipal thermoplastic wastes will not disposed properly (Not<br />

present <strong>in</strong> the material flow)<br />

50 Improper disposed waste 200,356 The summary <strong>of</strong> undisposed municipal wastes from each source<br />

51 Stock <strong>in</strong> environment 463,808 Stock = Uncollected waste + Improper disposed waste<br />

Municipal <strong>in</strong>c<strong>in</strong>eration process<br />

52<br />

53<br />

Off-gas (1) from municipal<br />

<strong>in</strong>c<strong>in</strong>eration<br />

Residue waste (1) from<br />

municipal <strong>in</strong>c<strong>in</strong>eration<br />

Industrial <strong>in</strong>c<strong>in</strong>eration process<br />

Industrial <strong>in</strong>c<strong>in</strong>eration<br />

54<br />

(cement)<br />

55<br />

Off-gas (2) from <strong>in</strong>dustrial<br />

<strong>in</strong>c<strong>in</strong>eration<br />

37,937<br />

9,484<br />

Assumed that the amount <strong>of</strong> <strong>of</strong>f-gas generation from municipal <strong>in</strong>c<strong>in</strong>eration will not<br />

change <strong>in</strong> 2016, thus 80% <strong>of</strong> <strong>of</strong>f-gas generation will be generated <strong>in</strong> municipal<br />

<strong>in</strong>c<strong>in</strong>eration.<br />

Assumed that the amount <strong>of</strong> residue waste from municipal <strong>in</strong>c<strong>in</strong>eration will not change,<br />

so 20% <strong>of</strong> residue waste will be generated <strong>in</strong> municipal <strong>in</strong>c<strong>in</strong>eration.<br />

42,500 Assumed that the landfill excavation for RDF production will not change <strong>in</strong> 2016<br />

1,131,340<br />

Assumed that the amount <strong>of</strong> <strong>of</strong>f-gas generation from <strong>in</strong>dustrial <strong>in</strong>c<strong>in</strong>eration will not<br />

change <strong>in</strong> 2016, thus 80% <strong>of</strong> <strong>of</strong>f-gas generation will be generated <strong>in</strong> <strong>in</strong>dustrial<br />

<strong>in</strong>c<strong>in</strong>eration.<br />

219

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