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CARBON NEUTRAL, ENERGY EFFICIENT METHOD FOR GAS PRODUCTION FROM METHANE HYDRATES

机译:碳中性,甲烷水合物天然气生产的节能方法

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As global energy demands increase, there will be a critical need to employ fuels that have minimal environmental impacts. While hydrogen is considered the ultimate fuel for that purpose, hydrocarbon based fuels will be in use for a considerable time and will probably be the first major source of hydrogen for next generation power systems. The best fuel for this transition will be natural gas because of the high hydrogen to carbon ratio. Natural gas hydrates have the potential to meet the global energy needs for the foreseeable future. The amount of energy stored in natural gas hydrates is significantly more than that of all the other fossil fuels combined. However, most proposed techniques for recovering the natural gas from the hydrate require too much energy input, raise safety concerns or can only recover a fraction of the gas. This paper discusses the technical feasibility of a novel method of gas production in hydrate reservoirs. The method is an in-situ process that creates a point heat source in the hydrate formation. This method not only significantly reduces the energy input, but also has the potential to sequester as much or more CO_2 than would be produced from combustion of the natural gas produced, thus making this in-situ methane production technique virtually carbon neutral. Simulations using FEMLAB? show that the method offers an energy efficient and environmentally friendly way to produce natural gas from hydrate reservoirs. Preliminary results indicate that it is possible to have an energy efficiency of nearly 90% for land based reservoirs for hydrate loadings of 20%. The simulation results also suggest that alternatives to a point source can be employed which may improve the process efficiency.
机译:随着全球能源需求的增加,将有一个迫切需要具有最小的环境影响聘用的燃料。而氢气被认为是用于此目的的最终燃料,烃燃料将在使用相当长的时间,而且可能是氢的下一代电力系统的第一主要来源。这一过渡最好燃料会因为高氢碳比的天然气。天然气水合物必须满足可预见的未来全球能源需求的潜力。存储在天然气水合物的能量的量显著超过所有其他化石燃料组合的是。然而,从水合物回收天然气最提议的技术需要太多的能量输入,引发安全问题或只能收回气体的一小部分。本文讨论天然气生产水合物油气藏的新方法的技术可行性。该方法是一种在原位工艺创建在水合物形成的点热源。这种方法不仅减少了显著的能量输入,还具有螯合尽可能多或更多CO_2比从生产的天然气的燃烧产生的电势,从而使这一原位甲烷的生产工艺几乎碳中性。使用模拟FEMLAB?表明,该方法提供了一种高效节能和环保的方式从水合物储层生产天然气。初步结果表明,它可能有近90%的土地为基础水库的20%水合物负载的能源效率。仿真结果还表明,替代一个点源,可以采用这可以提高处理效率。

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