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(best examples and good practices) on household organic waste ...

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10.4.2.Susteren sewage treatment <str<strong>on</strong>g>and</str<strong>on</strong>g> drying plant .........................................................................................................191<br />

10.4.3. The Zeeasterweg Lelystad plant in Netherl<str<strong>on</strong>g>and</str<strong>on</strong>g>s......................................................................................................193<br />

10.4.4. The Moerdijk incinerati<strong>on</strong> plant in Netherl<str<strong>on</strong>g>and</str<strong>on</strong>g>s .....................................................................................................195<br />

11.Greece ............................................................................................................................................. 197<br />

11.1.Greek framework directive ................................................................................................................... 197<br />

11.2.Greece policy objectives ....................................................................................................................... 198<br />

11.3.Waste quantities .................................................................................................................................. 199<br />

11.4.Best <str<strong>on</strong>g>practices</str<strong>on</strong>g> ....................................................................................................................................... 200<br />

11.4.1. The Ano-Liosia plant in Greece ...............................................................................................................................200<br />

11.4.2.The MBT plant in Chania .........................................................................................................................................209<br />

11.4.3.Project LIFE03 ENV/GR/205 (Com<strong>waste</strong>) .................................................................................................................214<br />

11.4.4.Psitallia Sludge Drying Facility .................................................................................................................................216<br />

12.Internati<strong>on</strong>al <str<strong>on</strong>g>best</str<strong>on</strong>g> <str<strong>on</strong>g>practices</str<strong>on</strong>g> ............................................................................................................. 218<br />

12.1. The SUMTER plant in South Carolina, USA ............................................................................................ 218<br />

12.2.The ARTI Compact Biogas System used in Tanzania <str<strong>on</strong>g>and</str<strong>on</strong>g> Ug<str<strong>on</strong>g>and</str<strong>on</strong>g>a . ........................................................... 219<br />

12.3. Chinas <strong>household</strong> anaerobic digesters ................................................................................................. 221<br />

12.4.The Tel Aviv plant in Israel .................................................................................................................... 224<br />

12.5. The Rapid City, South Dakota plant in USA............................................................................................ 229<br />

Figures:<br />

Figure 1.: The Waste Hierarchy (ACM Waste Management. 2010) ........................................................... 3<br />

Figure 2.: Typical temperature curve observed during the various compost phases. ................................. 8<br />

Figure 3.: Typical Composting systems ................................................................................................... 10<br />

Figure 4.: Aerated piles diagram ............................................................................................................ 12<br />

Figure 5.: Static aerated compost pile .................................................................................................... 13<br />

Figure 6.: Typical system schematic of in-vessel systems (Odour Stop.,2009) .......................................... 14<br />

Figure 7.: Principal emissi<strong>on</strong>s from composting ...................................................................................... 18<br />

Figure 8.: Schematic diagram showing the main theoretical stages of the anaerobic digesti<strong>on</strong> process.<br />

(University of Strathclyde., 2009). .......................................................................................................... 22<br />

Figure 9.: Anaerobic digesti<strong>on</strong> biochemical c<strong>on</strong>versi<strong>on</strong> pathways ........................................................... 23<br />

Figure 10.: AD basic process descripti<strong>on</strong> ................................................................................................. 25<br />

Figure 11.: Two stage process ................................................................................................................ 28<br />

Figure 12.: The (3) types of batch reactors systems................................................................................. 29

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