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    • 5. 发明授权
    • Method for the production of fat
    • 生产脂肪的方法
    • US08900832B2
    • 2014-12-02
    • US12803350
    • 2010-06-24
    • Heidi KahelinSimo LaaksoOssi PastinenMiia MujunenTarja Suomalainen
    • Heidi KahelinSimo LaaksoOssi PastinenMiia MujunenTarja Suomalainen
    • C12M1/00
    • C12P7/6463A23K20/158A23L33/115C11B1/025C11B1/10C11C3/003Y02E50/13
    • The present invention relates to a method for the production of fat with a principal application as transportation biofuel or a component or raw material therefor. According to the method, cell masses, cell suspensions and/or liquid phases formed in the production of single cell oil, and/or biomass-containing side streams or microorganism cell masses for another purpose and/or originating from other sources, are contacted with a fat-production capable microorganism and the organism is allowed to produce fat. The resulting fat is recovered or the microorganism mass is passed to a single-cell oil production process. By means of the invention, the organic matter present in the cell mass and side streams of single-cell oil can be re-utilized for the production of the single-cell oil, thereby improving a total fat yield, as well as reducing an organic load of the side streams.
    • 本发明涉及作为运输生物燃料或其成分或原料的主要应用的脂肪生产方法。 根据该方法,在单细胞油生产中形成的细胞团,细胞悬浮液和/或液相,和/或用于另一目的和/或源自其它来源的含生物质的侧流或微生物细胞块与 生产能力的微生物和生物被允许产生脂肪。 将所得脂肪回收或将微生物物质转移至单细胞油生产过程。 通过本发明,存在于单细胞油的细胞质量和侧流中的有机物质可以再利用于单细胞油的生产,从而提高总脂肪产量,以及还原有机物 负载侧流。
    • 9. 发明授权
    • Process for producing enzymes
    • 生产酶的方法
    • US08870980B2
    • 2014-10-28
    • US13333188
    • 2011-12-21
    • Annika MalmSimo LaaksoOssi PastinenHeidi KahelinMiia Mujunen
    • Annika MalmSimo LaaksoOssi PastinenHeidi KahelinMiia Mujunen
    • C10L1/18C12N9/00C12N9/24C12P7/64C12N9/42
    • C12N9/00C12N9/2437C12N9/248C12P7/6463Y02E50/13Y02E50/16Y02E50/17Y02P20/582
    • The present invention relates to a process for producing enzymes and single cell oil. The process comprises that microorganisms capable of producing both single cell oil and enzymes are cultivated under conditions suitable for single cell oil production and enzyme production in a single cell oil production process. A microorganism culture comprising single cell oil and enzymes is obtained and at least part of the microorganism culture, of the supernatant and/or microorganism cells separated from the microorganism culture, of protein fraction enriched from the supernatant, and/or of protein fraction obtained from the cells is used as an enzyme preparation or as a source of enzymes. Single cell oil is recovered from the microorganism cells and used as biofuel, component of biofuel or as a starting material for biofuel production. Enzymes produced according to the process are used in the same or in another industrial process.
    • 本发明涉及一种生产酶和单细胞油的方法。 该方法包括在单细胞油生产过程中,能够产生单细胞油和酶的微生物在适于单细胞油生产和酶生产的条件下培养。 获得包含单细胞油和酶的微生物培养物,并且从微生物培养物分离的上清液和/或微生物细胞的微生物培养物的至少一部分,富含上清液的蛋白质级分和/或从上清液获得的蛋白质级分 细胞被用作酶制剂或酶的来源。 单细胞油从微生物细胞中回收并用作生物燃料,生物燃料的组分或作为生物燃料生产的起始材料。 根据该方法生产的酶在相同或另一工业过程中使用。
    • 10. 发明申请
    • Method for the treatment of vegetable material, product obtained by the method and use of the product
    • 用于处理植物材料的方法,通过该产品的方法和使用获得的产品
    • US20070128322A1
    • 2007-06-07
    • US10555387
    • 2004-05-06
    • Jenni HaapiainenOlavi MyllymakiPekka LehtinenIlkka LehtomakiSimo LaaksoMarkku Patajoki
    • Jenni HaapiainenOlavi MyllymakiPekka LehtinenIlkka LehtomakiSimo LaaksoMarkku Patajoki
    • A23P1/00
    • C08L5/14A23K20/163A23L7/115A23L33/22C08L3/02C08L99/00C08L2666/26
    • The invention relates to a method for improving the solubility of non-starch polysaccharides of a vegetable material. The products prepared by the method and the use of the products are also included in the scope of the invention. The method comprises crushing of the material by mechanical energy to form particles, with at least a major portion of the cells containing non-starch polysaccharides in the material being damaged. Preferably, the non-starch polysaccharides end up in particles as produced by crushing to form particles smaller than that of the initial cell containing these polysaccharides in the material. Disruption of the cells allows effective interaction between the dissolving medium and the polysaccharides to be dissolved, appearing as increased solubility. The material crushing can be performed under the joint effect of pressure, heat and shearing forces. Preferred embodiments include extrusion, expansion and homogenisation under pressure, preferred materials for these treatments comprising oat, rye and fractions of these. The solubility and dissolution circumstances of the product of the invention can be adjusted by mixing the material to be crushed with an ingredient rich in amylopectin.
    • 本发明涉及一种改善植物材料非淀粉多糖的溶解度的方法。 通过该方法制备的产品和产品的使用也包括在本发明的范围内。 该方法包括用机械能粉碎材料以形成颗粒,其中至少大部分的细胞含有非淀粉多糖被损坏。 优选地,非淀粉多糖最终以粉碎形成的颗粒形成小于在材料中含有这些多糖的初始细胞的颗粒。 细胞的破坏允许溶解介质和要溶解的多糖之间的有效相互作用,呈现出增加的溶解度。 材料破碎可以在压力,热量和剪切力的联合作用下进行。 优选的实施方案包括在压力下的挤出,膨胀和均化,用于这些处理的优选材料包括燕麦,黑麦及其部分。 通过将待粉碎的材料与富含支链淀粉的成分混合,可以调节本发明产品的溶解度和溶解情况。