LANDFILL GAS in Visual C#.NET

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LANDFILL GAS
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lifetime of the barriers One method to reduce this effect, by enhancing and accelerating waste stabilization, is to operate the landfill as a bioreactor The bioreactor landfill attempts to control, monitor, and optimize the waste stabilization process rather than contain the wastes as prescribed by most regulations (Reinhart et al, 2002) This is carried out in an aerobic environment as opposed to the normal situation in landfill sites, where conditions within the wastes are commonly anaerobic Reinhart et al (2002) has described the potential positive and negative effects that this type of landfill can pose (Table 124)
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TABLE 124 Advantages and Disadvantages of the Landfill Bioreactor Potential advantages Rapid waste stabilisation aerobic waste decomposition has been cited as a more rapid means of waste stabilisation Improved gaseous emissions methane is not a by-product of aerobic decomposition Other odourcausing chemicals are also reduced Degradation of recalcitrant chemicals may offer greater treatment for organic wastes and ammonia (which do not degrade or transform under anaerobic conditions) Removal of moisture the aerobic conditions act to strip moisture from the landfill, reducing the chance of leachate production Potential disadvantages Risk of fire and explosive gas mixtures addition of air to landfills poses an increased potential for landfill fires Cost increased costs may be incurred as a result of the requirement to pump air into the landfill, as well as the monitoring processes Unknown gaseous emissions although gaseous emissions such as methane may be reduced other hazardous chemicals may still be released Also, nitrous oxide, a more potent greenhouse gas than methane, may be emitted
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Source: Reinhart, D R, P T McCreanor, and T Townsend: The Bioreactor Landfill: Its Status and Future, Waste Management and Research, 20, 2002, pp 172 86
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The future of the bioreactor may well be found in its use with an anaerobic system that is, a hybrid arrangement For example, air could be added to the anaerobic processes after the degradation of waste has occurred, thus removing excess moisture from the landfill and fully composting the waste The cycling of both conditions (aerobic and anaerobic) also offers the possibility of treating a greater range of chemicals such as the nitrification and denitrification of ammonia
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127 GASIFICATION OF LANDFILL WASTE
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There is also the potential for the gasification (Chap 8) of any organic waste material that is mined from the landfill as a solid or semisolid A waste gasification facility coverts the waste into a pressurized gas mixture which is then passed through a cleanup system to remove particulate matter and tar vapor, and finally used to turn turbines in a power plant The remaining gas is a mixture of carbon monoxide, hydrogen, water vapor, and carbon dioxide Finally, the particulates and tar are thermally treated (pyrolyzed) to produce carbon monoxide
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CHAPTER TWELVE
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Any hydrogen produced that is not used as a constituents of synthesis gas (Chap 7) can be removed and stored for use in hydrogen fuel cells Waste gasification does produce some carbon dioxide that needs attention Although there is the thought that although the carbon dioxide is produced from a renewable organic source, it has a short atmospheric residence time and therefore does not contribute to global warming On this basis, carbon dioxide from biomass is acceptable but carbon dioxide from a fossil fuel is unacceptable The goal of using fuels from alternative sources is not only to supplement the dwindling supplies of fossil fuels but also to reduce the emissions of greenhouse gases Carbon dioxide is a greenhouse gas no matter what the source To consider the carbon dioxide allowable because it is from a biomass-based process is, in any sense, playing with numbers and using a statistical means to justify the end Such thinking is not only irrational but is more than suspect it is twisted logic!
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