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    • 2. 发明申请
    • INTEGRATED SYSTEM FOR PRODUCTIOIN OF BIOFUEL FEEDSTOCK
    • 生物燃料原料生产综合系统
    • WO2010014797A3
    • 2010-04-29
    • PCT/US2009052234
    • 2009-07-30
    • UNIV WASHINGTONCHI ZHANYOUZHENG YUBINLUCKER BENCHEN SHULIN
    • CHI ZHANYOUZHENG YUBINLUCKER BENCHEN SHULIN
    • C12P7/00C02F3/32C12P1/00C12R1/89
    • C12P7/649C02F3/32C12M21/02C12M23/18C12M23/58C12M41/06C12M41/12C12M41/34C12M47/06C12N1/12C12P7/6463Y02E50/13Y02W10/37
    • Disclosed is a culture system for the production of algae biomass to obtain lipid, protein and carbohydrate. By integrating heterotrophic processes with a phototrophic process in parallel, this system provides year around production in colder climates. By integrating heterotrophic processes with a phototrophic process in series, this system creates a two-stage, separated mixed- trophic algal process that uses organic carbon and nutrients for the production of seed in the heterotrophic process, followed by release of cultured seed in large-scale phototrophic culture for cell biomass accumulation. Organic carbon source including waste materials can be used to feed the heterotrophic process. The production capacity ratio between the heterotrophic and the phototrophic processes can be adjusted according to season and according to the availability of related resources. The systems are used for producing and harvesting an algal biofuel feedstock as well as other potential high-value products. The sequence and approach enhances utilization of carbon and nutrient waste-streams, provides an effective method for controlling contamination, adds flexibility in regard to production and type of available products, and supplies greater economic viability due to maximized use of available growth surface areas.
    • 公开了用于生产藻类生物质以获得脂质,蛋白质和碳水化合物的培养系统。 通过将异养过程与光养过程并行整合,该系统在寒冷气候中提供了一年生产周期。 通过将异养过程与光养过程串联整合,该系统创建了一个两阶段,分离的混合营养藻类过程,利用有机碳和营养物质在异养过程中生产种子,然后在大规模培养基中释放培养的种子, 用于细胞生物量积累的大规模光养培养。 包括废物在内的有机碳源可以用来喂养异养过程。 异养和光养过程之间的生产能力比例可以根据季节和根据相关资源的可用性进行调整。 该系统用于生产和收获藻类生物燃料原料以及其他潜在的高价值产品。 序列和方法提高了碳和营养废物流的利用率,为控制污染提供了有效方法,增加了可用产品的生产和类型方面的灵活性,并由于最大限度地利用现有生长表面积而提供更大的经济可行性。