首页> 外文会议>International Conference on Greenhouse Gas Control Technologies; 20040905-09; Vancouver(CA) >ENITECNOLOGIE RD PROJECT ON MICROALGAE BIOFIXATION OF CO_2: OUTDOOR COMPARATIVE TESTS OF BIOMASS PRODUCTIVITY USING FLUE GAS CO_2 FROM A NGCC POWER PLANT
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ENITECNOLOGIE RD PROJECT ON MICROALGAE BIOFIXATION OF CO_2: OUTDOOR COMPARATIVE TESTS OF BIOMASS PRODUCTIVITY USING FLUE GAS CO_2 FROM A NGCC POWER PLANT

机译:CO_2微藻生物固定化的内科学研发项目:NGCC电厂利用烟气CO_2生产生物质的室外比较试验

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Microalgae mass cultures could contribute to the mitigation of greenhouse gas (GHG) emissions by enabling the direct utilization of fossil CO_2 streams from concentrated sources and the production from algal biomass of renewable biofuels and fossil fuel-sparing products. EniTecnologie, the R&D arm of the Italian oil & gas company Eni, is focused on demonstrating and improving the achievable biomass productivities of outdoor microalgal mass cultures. We evaluated the feasibility of fixing flue gas CO_2 from a natural gas combined cycle (NGCC) power plant to produce renewable methane fuel to replace a fraction of the input fossil methane. Initial experiments compared the productivity of the marine microalga, Tetraselmis suecica, mass cultured in an outdoor scale-down system that simulates large-scale production systems and comprises both open ponds and closed photobioreactors. Results indicated that closed and open systems have similar productivities, and that in open ponds the areal values are close to the maximal productivities so far reported under outdoor operating conditions and significantly higher than those using flue gas CO_2 in similar scale-down systems. This activity is a constituent project of the International Network on Biofixation of CO_2 and GHG Abatement with Microalgae, an initiative that operates under the auspices of the IEA GHG R&D Programme.
机译:微藻大规模培养可通过直接利用集中来源的化石CO_2流以及可再生生物燃料和化石燃料节省产品的藻类生物质生产,从而有助于减少温室气体(GHG)排放。意大利石油和天然气公司Eni的研发部门EniTecnologie致力于展示和提高户外微藻大规模培养的可实现生物量生产力。我们评估了固定天然气联合循环(NGCC)发电厂的烟气CO_2的可行性,以生产可再生甲烷燃料来替代一部分输入的化石甲烷。最初的实验比较了在室外按比例缩小系统中大规模培养的海洋微藻Tetraselmis suecica的生产力,该系统模拟了大规模生产系统,包括开放式池塘和封闭式光生物反应器。结果表明,封闭和开放系统的生产率相似,在露天池塘中,面积值接近迄今为止在室外操作条件下报告的最大生产率,并且显着高于在类似规模的缩小系统中使用烟气CO_2的面积。这项活动是国际有机碳固定和利用微藻消除温室气体的国际网络的组成项目,该网络是在IEA温室气体研发计划的主持下开展的一项行动。

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