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CONCEPTION OF A NEW SYSTEM FOR POLLUTION ABATEMENT FOR SMALL SCALE WOOD APPLIANCE

机译:小规模木具污染减排系统的概念

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Increase the part of renewable energy in the primary energy consumption is an interesting resolution to lower CO_2 emissions of human activities. Utilization of wood for combustion represents an important contribution for this objective: in France the potential of 9,5MTep for energy is growing with the expansion of forest on the territory. To improve the environmental impact of wood combustion, some advance need to be achieved in term of undesirable emissions of carbon monoxide (CO), volatile organic compounds (VOC), polycyclic aromatic compounds (PAC), and particles. Emissions measurement on an old technology wood stove confirms no negligible emissions rates for CO, VOC and particles. The goal of this project is to create a new technology efficient for both gaseous and solid emissions abatement. This technology will also have to be affordable, compact and self generated to be of interest for consumers. Catalysis science can help to treat gaseous emissions. Some tests on catalyst with high redox properties showed promising results for CO and methane CH_4 total oxidation. Experiences on a very simple filtration technique indicate 50% abatement for particles smaller than 2.5μm (PM2.5). Regeneration and optimization of these different techniques are ongoing.
机译:增加初级能源消耗中可再生能源的部分是一个有趣的解决方案,以降低人类活动的汇率排放。用于燃烧的木材利用代表了这一目标的重要贡献:法国的潜力为9,5mtep的能源正在随着森林的扩张而延伸。为了改善木材燃烧的环境影响,需要在一氧化碳(CO),挥发性有机化合物(VOC),多环芳族化合物(PAC)和颗粒中的不希望的排放期间术语。旧技术木炉上的排放测量确认了CO,VOC和粒子的可忽略的排放率。该项目的目标是为气体和固体排放的新技术有效。这项技术也必须是负担得起的,紧凑,自我为消费者感兴趣。催化科学可以帮助治疗气体排放。催化剂具有高氧化还原性能的一些试验显示了CO和甲烷CH_4总氧化的有希望的结果。对非常简单的过滤技术的经验表示小于2.5μm的颗粒的50%减少(PM2.5)。对这些不同技术的再生和优化正在进行中。

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