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    • 7. 发明授权
    • Biomass heating system
    • 生物质加热系统
    • US07744671B1
    • 2010-06-29
    • US11529589
    • 2006-09-28
    • Joseph P. Ouellette
    • Joseph P. Ouellette
    • C05F17/00C05F17/02
    • C05F17/0258C05F17/0063C05F17/0235F24V99/00F28D15/0275Y02P20/136Y02P20/145Y02W30/43
    • Improved systems, methods, apparatus and compositions for generating, extracting and distributing the renewable heat energy produced by microbial decomposition of organic biomass within a contained and controlled environment. This heat energy is preferably transferred and distributed, preferably by the use of heat pipes, to the interior of a greenhouse or other structure to be heated, either directly or via heat exchange apparatus such as hot water heating systems. In one embodiment heat transfer and distribution mechanism customized to the application requirements of a greenhouse heating batch-type process is disclosed, along with a recipe for a readily available biomass material composition. Additional continuous and batch process embodiments of biomass heating systems are also disclosed that extract heat energy from decomposing biomass for heating uses. In some embodiments gaseous products generated in a biological decomposition process, primarily CO2, are utilized to enhance plant growth in the greenhouse environment.
    • 改进的系统,方法,设备和组合物,用于生成,提取和分配由含有和受控环境中的有机生物质的微生物分解产生的可再生热能。 该热能优选通过直接或通过热交换装置如热水加热系统转移和分配,优选通过使用热管,分配到温室或其他被加热结构的内部。 在一个实施例中,公开了根据温室加热间歇式方法的应用要求定制的传热和分配机构,以及用于容易获得的生物质材料组成的配方。 还公开了生物质加热系统的附加连续和间歇方法实施方案,其从用于加热用途的分解生物质中提取热能。 在一些实施方案中,利用在生物分解过程(主要是CO 2)中产生的气体产物来增强温室环境中的植物生长。