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    • 1. 发明申请
    • 미세조류 세포 자극 장치 및 이를 이용한 미세조류의 지질 생산 증대 방법
    • 微藻细胞刺激装置及使用其的微藻的脂质产生增强方法
    • WO2018043904A1
    • 2018-03-08
    • PCT/KR2017/007298
    • 2017-07-07
    • 인하대학교 산학협력단
    • 신화성민슬기조명권
    • C12M1/42C12P7/64C12N1/12
    • C12M1/42C12N1/12C12P7/64Y02E50/13
    • 본 발명은 미세조류 세포 자극 장치 및 상기 미세조류 세포 자극 장치를 이용한 미세조류의 지질 생산 증대 방법에 관한 것이다. 본 발명에 따른 미세조류 세포 자극 장치를 이용하여 상기 미세조류 세포 자극 장치 내 폴리우레탄 비드에 압력을 가하면, 상기 폴리우레탄 비드의 복원력 및 인접한 폴리우레탄 비드 간의 접촉으로 인하여 힘의 분산이 연쇄적으로 발생하여 지속적으로 장치 내 미세조류 세포에 기계적 자극을 가하게 된다. 따라서, 다른 외부 자극을 요구하지 않아 에너지 측면에서 매우 효율적이고, 화학적 자극을 주지 않아 미세조류 세포에 안정적으로 작용한다. 특히, 본 발명의 미세조류 세포 자극 장치로 기계적 자극을 받은 미세조류 세포의 지질 생산이 증대되는 효과가 있어, 친환경 바이오 디젤 생산 방법에 유용하게 이용될 수 있다.
    • 本发明涉及一种使用微藻细胞刺激微藻的脂质产量增加和所述藻类细胞刺激方法。 使用微藻细胞刺激了根据本发明中的聚氨酯珠聚压力微藻细胞刺激,产生的力的分布由于聚氨酯珠级联的恢复力和相邻的聚氨酯珠之间的接触 从而不断对设备中的微藻细胞施加机械刺激。 因此,它不需要任何其他外部刺激,因此它在能量方面非常有效,不会给予化学刺激,并且稳定地作用于微藻细胞。 特别地,存在的脂质生产本发明的细胞的作用接收所述机械刺激的生长装置的刺激微藻微藻细胞,可以是在该方法中环保生产生物柴油的是有用的。

    • 5. 发明申请
    • SITE SELECTION FOR LARGE-SCALE ALGAE CULTIVATION TOWARDS BIODIESEL PRODUCTION
    • 大规模海藻培养对生物柴油生产的选址
    • WO2017168402A1
    • 2017-10-05
    • PCT/IB2017/052830
    • 2017-05-13
    • TACHOTH, Vasudevan
    • TACHOTH, Vasudevan
    • C12N1/12C10L1/00
    • C10L1/026C12N1/12Y02E50/13
    • Fuel deficiency is one of the severe threats confronted by the whole world. This foreshadows about a situation where the resources would be insufficient to meet the energy requirements of industries, automobiles, and household equipments. Biofuels have been attracting the scientific world with its properties similar to that of fossil fuels and the capability to get renewed. Alga is widely studied owing to its high lipid content and potential to produce larger quantity of oil than other crops. When compared to food crops and other raw materials, alga is the best feedstock for biodiesel. The requisites for algae cultivation can be met easily which are fewer than that for food crops. But some hurdles are inhibiting the high productivity of algae and profitable algae farming. Lack of suitable sites is the major sticking point that hauls the production of biodiesel to the lowest. This report discusses the survey conducted for the selection of sites pertinent for large-scale algae growth aiming at a high yield of biodiesel. Maps of surveyed locations and charts showing the importance of algae cultivation have been included. The manuscript elaborates the geographical features of each location and shows their aptness to be selected as algae farming sites. Comparison of oil yield from different crops has been shown through graphs. Information regarding algae, similarity of biodiesel to petroleum products, implementation of algae as the feedstock for biodiesel, different processing techniques available for biodiesel production via extraction of oil from algae etc is also comprised in this report.
    • 燃料不足是全球面临的严重威胁之一。 这预示着资源不足以满足工业,汽车和家用设备的能源需求的情况。 生物燃料已经吸引了科学界,其性质与化石燃料的性质相似,并且具有获得更新的能力。 由于其脂质含量高,并有可能比其他作物生产更多的油,因此藻类被广泛研究。 与粮食作物和其他原材料相比,藻类是生物柴油的最佳原料。 藻类培育的必要条件很容易满足,而且比粮食作物要少。 但是一些障碍阻碍了藻类的高生产力和有利可图的藻类养殖。 缺乏合适的地点是将生物柴油的生产拖到最低点的主要障碍。 本报告讨论了针对大规模藻类生长的有关地点的选择进行的调查,目标是生物柴油的高产量。 调查地点和图表显示了藻类培养重要性的地图。 手稿阐述了每个地点的地理特征,并显示了他们被选为藻类养殖场所的适宜性。 通过图表显示了不同作物产油量的比较。 有关藻类的信息,生物柴油与石油产品的相似性,作为生物柴油原料的藻类的实施,通过从藻类中提取石油生产生物柴油的不同处理技术等也包含在本报告中。
    • 6. 发明申请
    • SYSTEM AND METHOD FOR TREATMENT OF BIOMASS FOR THE PRODUCTION OF BIOFUELS AND BIOCHEMICALS
    • 处理生物质以生产生物燃料和生物化学品的系统和方法
    • WO2017093526A1
    • 2017-06-08
    • PCT/EP2016/079657
    • 2016-12-02
    • BIOMÉTHODES S.A.
    • MCDONALD, William F.KUMAR BATHULA, Naga VinodBOWYER, MichaelKISER, BrandonSRINIVASAN, VaishnaviTENLEP, LisetteWALKER, Brie-Anna
    • C10G3/00C12P19/00C12M1/00D21C1/04D21C3/04
    • C10G3/00C10G2300/1014C10G2400/04C10G2400/08C12M21/12C12M45/06C12M47/00C12M47/14C12P7/10C12P7/649C12P19/00C12P19/02C12P2203/00D21C1/04D21C3/04Y02E50/13Y02E50/16Y02P30/20
    • A system and method to treat biomass to make bioproducts such as biofuels and biochemical is disclosed. The systems are configured to treat a liquid component separated from biomass to yield sugars available to form a fermentation product or bio-product. The system and method comprises treatment and separation of process streams (e.g. liquids, solids, etc.) to produce bioproducts such as fuel and biochemical as well as to recover/reuse and utilize content of process streams. Lignin is separated from the bioproduct stream (e.g. a solids component) forming a recovered bioproducts; efficient removal of lignin facilitates productive operation of the system. The system disclosed is configured to recover and recycle acid (e.g. phosphoric acid) used as a concentrated acid in the process to pre-treat biomass (for bioprocessing). The acid used in the process is recycled and recovered in order to establish economically attractive biorefinery to make bio-products from biomass (e.g. to reduce the cost of operation such as from supply of fresh acid). Concentrated acid used to pre-treat biomass may comprise about 90 to over 98 percent recovered acid (and 10 to less than 2 percent fresh acid). The recovery and recycle process for the acid (e.g. acid used to pre-treat biomass) may comprise one or more of the inventive concepts and features shown and described in the FIGURES and specification.
    • 公开了一种处理生物质以制造生物产品例如生物燃料和生物化学品的系统和方法。 该系统构造成处理从生物质分离的液体组分以产生可用于形成发酵产物或生物产物的糖。 该系统和方法包括处理和分离工艺物流(例如液体,固体等)以产生生物产物例如燃料和生物化学品以及回收/再利用和利用工艺物流的含量。 木质素与生物产品流(例如固体组分)分离,形成回收的生物产品; 有效去除木质素有利于系统的生产性操作。 所公开的系统构造成回收和再循环用于预处理生物质(用于生物处理)的过程中用作浓酸的酸(例如磷酸)。 为了建立经济上有吸引力的生物炼制以由生物质制造生物产品(例如降低操作成本,例如由于供应新鲜酸),循环和回收在该过程中使用的酸。 用于预处理生物质的浓酸可以包含约90%至98%以上的回收酸(以及10%至少于2%的新鲜酸)。 酸(例如用于预处理生物质的酸)的回收和再循环过程可以包括在图和说明书中显示和描述的一个或多个发明构思和特征。