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    • 4. 发明申请
    • SYSTEMS AND METHODS FOR EXTRACTING LIPIDS FROM AND DEHYDRATING WET ALGAL BIOMASS
    • 提取脂肪和去除水分生物量的系统和方法
    • WO2011053867A1
    • 2011-05-05
    • PCT/US2010/054861
    • 2010-10-29
    • AURORA ALGAE, INC.FLEISCHER, DanielJUKIC, MarkoTHOMPSON, AndrewRADAELLI, Guido
    • FLEISCHER, DanielJUKIC, MarkoTHOMPSON, AndrewRADAELLI, Guido
    • C12N1/12B01D12/00
    • C11B1/10C11B1/106
    • Exemplary methods include centrifuging a wet algal biomass to increase a solid content of the wet algal biomass to between approximately 10% and 40% to result in a centrifuged algal biomass, mixing the centrifuged algal biomass with an amphiphilic solvent to result in a mixture, heating the mixture to result in a dehydrated, defatted algal biomass, separating the amphiphilic solvent from the dehydrated, defatted algal biomass to result in amphiphilic solvent, water and lipids, evaporating the amphiphilic solvent from the water and the lipids, and separating the water from the lipids. The amphiphilic solvent may be selected from a group consisting of acetone, methanol, ethanol, isopropanol, butanone, dimethyl ether, and propionaldehyde. Other exemplary methods include filtering a wet algal biomass through a membrane to increase a solid content of the wet algal biomass to between approximately 10% and 40% to result in a filtered algal biomass.
    • 示例性方法包括将湿藻类生物质离心以将湿藻类生物质的固体含量提高到约10%至40%之间,以产生离心的藻类生物质,将离心的藻类生物质与两亲溶剂混合以产生混合物,加热 混合物导致脱水的脱脂藻类生物质,将两亲溶剂与脱水的脱脂藻类生物质分离以产生两亲溶剂,水和脂质,从水和脂质中蒸发出两亲溶剂,并将水从 脂类。 两亲溶剂可以选自丙酮,甲醇,乙醇,异丙醇,丁酮,二甲醚和丙醛。 其他示例性方法包括通过膜过滤湿藻类生物质以将湿藻类生物质的固体含量增加至约10%至40%之间,以产生过滤的藻类生物质。
    • 6. 发明申请
    • OPTIMIZATION OF CIRCULATION OF FLUID IN AN ALGAE CULTIVATION POND
    • 流体在阿尔卑斯生殖池中的循环优化
    • WO2012149214A1
    • 2012-11-01
    • PCT/US2012/035290
    • 2012-04-26
    • AURORA ALGAE, INC.PARSHEH, MehranRADAELLI, Guido
    • PARSHEH, MehranRADAELLI, Guido
    • F04F5/54F04F5/46
    • A01G33/00Y02A40/88
    • Algae cultivation ponds having the circulation of fluid optimized for such factors as decreased energy consumption, decreased predators/competitors, decreased or eliminated flow deadzones (i.e. stagnant regions), and increased algae biomass production, such as for the production of biofuels and other algae-based products. A first pond bottom may underlie the expansion zone. An exterior wall may form an angle with the first pond bottom of approximately ninety to greater than one-hundred-sixty degrees. A second pond bottom adjacent to the first pond bottom may have an approximately consistent ground elevation, approximately matching a lowermost ground elevation of the first pond bottom. Additionally, the second pond bottom may extend outward from the first pond bottom. The vane in the expansion zone may extend to a point above the second pond bottom.
    • 藻类养殖池具有针对诸如能量消耗降低,捕食者/竞争对手减少或消除流动死区(即停滞区域)等因素优化的流体循环,以及增加的藻类生物量生产,例如用于生产生物燃料和其他藻类 - 基于产品。 第一个池底可能是膨胀区的底部。 外墙可以与第一池塘底部形成大约九十到一百六十度以上的角度。 与第一池塘底部相邻的第二池底可以具有近似一致的地面高度,大致匹配第一池塘​​底部的最低地面高度。 此外,第二池塘底部可以从第一池塘底部向外延伸。 膨胀区中的叶片可以延伸到第二池底部上方的一点。