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 incorporates  gas collection, storage and compressor system  leachate collection, storage and treatment facilities.  prevent leachate leakage into.

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Presentation on theme: " incorporates  gas collection, storage and compressor system  leachate collection, storage and treatment facilities.  prevent leachate leakage into."— Presentation transcript:

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2  incorporates  gas collection, storage and compressor system  leachate collection, storage and treatment facilities.  prevent leachate leakage into ground water

3  gas leakage detection p robes.  leachate monitoring well and ground water monitoring well

4  Design & operation SLF  Several important factors must be considered:  land area  cover material  cell design and construction  equipment requirement  personnel requirement  finance  drainage

5  spread and compaction  water supply  fire prevention facilities  fencing -  gatehouse  operation time  land use after completion of landfill  wheel cleaning  notice board

6  Population protection  site location  rainfall  temperature  Soil type  wind  Hydrological properties and water table

7  compaction landfill  essential to reduce settlement  take about 2 years  prevent fire  eliminates odour, flies & vermin  for building structure – 10 – 12 years

8  ideally compacted fill should have density of 900 – 950 kg/m 3  densities are measure by using backhoe method and auger method.  the values depend on:

9  Type of waste  Pretreatment  Composting of waste  Time of landfill  Moisture content  Type of landfill  Stage of compaction

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15  Leachate  define as liquid that has percolated through solid waste and has extracted Dissolved or suspended material

16  average amount of leachate generated is 150L//tonne  contain organic matter, nitrogen (ammoniacal), suspended solid salts & colouring matter.  constration of eluted matters will be highest the first 3 – 8 years.

17  quantity of leachate produced depend on factors:  Soil type  Waste composition  Degree of composition  Rainfall  Evaporation  Landfill type and age

18  incorporates  gas collection, storage and compressor system  leachate collection, storage and treatment facilities.  prevent leachate leakage into ground water

19  gas leakage detection p robes.  leachate monitoring well and ground water monitoring well

20  Design & operation SLF  Several important factors must be considered:  land area  cover material  cell design and construction  equipment requirement  personnel requirement  finance  drainage

21  spread and compaction  water supply  fire prevention facilities  fencing -  gatehouse  operation time  land use after completion of landfill  wheel cleaning  notice board

22  Population protection  site location  rainfall  temperature  Soil type  wind  Hydrological properties and water table

23  compaction landfill  essential to reduce settlement  take about 2 years  prevent fire  eliminates odour, flies & vermin  for building structure – 10 – 12 years

24  ideally compacted fill should have density of 900 – 950 kg/m 3  densities are measure by using backhoe method and auger method.  the values depend on:

25  Type of waste  Pretreatment  Composting of waste  Time of landfill  Moisture content  Type of landfill  Stage of compaction

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31  Leachate  define as liquid that has percolated through solid waste and has extracted Dissolved or suspended material

32  average amount of leachate generated is 150L//tonne  contain organic matter, nitrogen (ammoniacal), suspended solid salts & colouring matter.  constration of eluted matters will be highest the first 3 – 8 years.

33  quantity of leachate produced depend on factors:  Soil type  Waste composition  Degree of composition  Rainfall  Evaporation  Landfill type and age


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