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Landfill Gas Energy Technologies

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Landfill Gas Energy Technologies ( landfill-gas-energy-technologies )

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expensive. Infrared heater Limited condensate removal and filtration treatment is required. Relatively inexpensive. Easy to install. Does not require large amount of gas. Can be coupled with another energy project. Reasonable payback. Low sophistication - simple to operate. Simple controls. Construction short time. Seasonal use may limit LFG utilization. Small quantities of gas Leachate evaporation Good option for landfill where leachate disposal is expensive. Proven technology that meets local air quality requirements. For landfills with limited leachate treatment options and high leachate disposal costs. High capital costs. More expensive than traditional landfill leachate treatment options. Generally for larger landfills. 3 0,53 m /h is necessary to treat 1 litre leachate Internal combustion engine High efficiency compared to gas turbines and microturbines. Good size match with the gas output of many landfills. Relatively low cost on a per kW installed capacity basis when compared to gas turbines and microturbines. Efficiency increases when waste heat is recovered. Can add/remove engines to follow gas recovery trends. Relatively high maintenance costs. Relatively high air emissions. 30 to 2000 3 m /h per engine; multiple engines can be combined for larger projects Gas Turbine Economies of scale, since the cost of kW generating capacity drops as gas turbine size increases and the efficiency improves as well. Efficiency increases when heat is recovered. More resistant to corrosion Efficiencies drop when the unit is running at partial load. Require high gas compression. High parasitic loads. Capacity and efficiency depend on ambient factors, chiefly temperature. Relatively low electrical efficiency. Exceeds minimum of 3 2,200 m /h; typically exceeds 3,600 m /h 3 75

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Landfill Gas Energy Technologies

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1022_LFG-Handbook.pdf

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