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    • 6. 发明申请
    • A METHOD FOR PRODUCING A CARBON CONTAINING PRODUCT FROM A GASEOUS CARBON CONTAINING EDUCT USING MICROORGANISMS IN A REACTION VESSEL
    • 用反应容器中的微生物从含气体碳化合物产生含碳产物的方法
    • WO2018015393A1
    • 2018-01-25
    • PCT/EP2017/068139
    • 2017-07-18
    • KRAJETE GMBH
    • KRAJETE, AlexanderHERWIG, ChristophSEIFERT, ArneBERNACCHI, Sébastien
    • C12P5/02
    • C12P5/023Y02E50/343Y02P20/134Y02P20/582
    • The present invention provides a method for producing a carbon containing product from a gaseous carbon containing educt using microorganisms in a reaction vessel comprising determining the biomass production rate of the microorganisms inside the reaction vessel, applying a feed rate of a phosphorous containing compound into the reaction vessel so that the ratio of the feed rate of the phosphorous containing compound into the reaction vessel to the biomass production rate is in the range of 0.001 to 0.5 mol phosphorous · mol carbon -1 . Further provided is a system suitable for said method. Also provided is a method for producing a carbon containing product from a gaseous carbon containing educt using microbial biomass comprising microorganisms in a reaction vessel comprising applying a feed rate of an essential compound into the reaction vessel so that the ratio of the feed rate of the essential compound into the reaction vessel to the biomass production rate is in a range of 20 times below to 50 times above the molar ratio of the essential compound of the microorganisms to the carbon content of the microorganisms.
    • 本发明提供了一种用于在反应容器中使用微生物从含气态碳的离析物生产含碳产物的方法,该方法包括确定反应容器内微生物的生物质生产速率,将进料速率 的含磷化合物加入到反应容器中,使得含磷化合物进入反应容器的进料速率与生物质生产速率的比率在0.001-0.5mol%磷<! - SIPO -1 。 还提供了适用于所述方法的系统。 还提供了一种用于在反应容器中使用包含微生物的微生物生物质从含气态碳的离析物生产含碳产物的方法,所述反应容器包括将必需化合物的进料速率施加到反应容器中,使得基本进料的进料速率 化合物进入反应容器的生物量产生速率在微生物的必需化合物与微生物的碳含量的摩尔比以上20倍以下至50倍的范围内。
    • 9. 发明申请
    • PROCESS FOR PRODUCING ALTERNATIVE SOIL AND THEREBY OPTIMISING OF PRODUCING BIOGAS
    • 生产替代土壤并由此优化生产沼气的方法
    • WO2017153792A1
    • 2017-09-14
    • PCT/HU2017/000017
    • 2017-03-09
    • LACZIKÓ Aranka
    • LACZIKÓ Aranka
    • C12P1/00C12P5/02C05F1/00C05F5/00
    • C05F1/00C05F3/00C05F5/00C05F17/0027C12P5/023Y02A40/201Y02A40/205Y02A40/209Y02E50/343Y02P20/129Y02P20/145Y02P20/582Y02W30/43Y02W30/47
    • A process is provided to produce alternative'substrate or soil by converting waste materials and for biogas production. The biogas yield is optimised. Communal and agricultural waste is pretreated by ultrasound digestion or wetting, or particle size optimisation, or microbiological treatment, etc. The proposed solution is characterised by six interventions in the known biogas production technology to increase efficiency and optimise the biogas process as follows: • - The first intervention is the selection and grouping of the raw materials to ensure the formation of identical volumes of biogas and wettability. • - The second intervention is the treatment of waste feedstock with microbiological and/or physical methods. • - The third intervention is the preparation of waste feedstock. • - The fourth intervention is the optimisation of biogas production by utilising waste heat. • - The fifth intervention is gas cleaning, the reduction of gas dioxin and hydrogen sulfide contamination and, at the same time, the microbiological production of product(s), moreover, the burning of inadequate gas on the flare. • - The sixth intervention is the microbiological production of new product(s).
    • 通过转化废料和沼气生产,提供了一种生产替代基质或土壤的方法。 沼气产量得到优化。 通过超声消化或润湿,粒度优化或微生物处理等预处理公共和农业废物。所提出的解决方案的特征在于对已知沼气生产技术的六种干预以提高效率并优化沼气过程如下: 第一种干预是选择和分组原料以确保形成相同体积的沼气和润湿性。 - 第二项干预措施是用微生物和/或物理方法处理废物原料。 • - 第三项干预措施是准备废物原料。 - 第四项干预措施是利用余热优化沼气生产。 •第五项干预措施是气体清洁,减少气体二恶英和硫化氢污染,同时减少产品的微生物生产,此外,燃烧火炬上的气体不足。 - 第六项干预是新产品的微生物生产。
    • 10. 发明申请
    • BIOCATALYTIC PROCESSES AND MATERIALS FOR ENHANCED CARBON UTILIZATION
    • 生物催化工艺和材料提高碳利用率
    • WO2017143194A2
    • 2017-08-24
    • PCT/US2017/018375
    • 2017-02-17
    • INVISTA NORTH AMERICA S.A.R.LINVISTA TECHNOLOGIES S.À.R.L.
    • SMITH, GaryCONRADIE, Alex, Van EckKIRBY, Gregory, S.PEARLMAN, Paul, S.
    • C12P5/00C12P5/02C12P7/24C12P13/00
    • C12P13/001C12M29/00C12M41/00C12N1/20C12P5/00C12P5/007C12P5/02C12P7/065C12P7/24C12P7/625C12P13/00C25B1/04F01D15/10F01K7/16F01K11/02F05D2220/31Y02E50/343Y02E60/366
    • The present disclosure describes biocatalytic processes for producing a product, comprising providing an aqueous stream (AS) comprising at least one fermentable substrate and a gaseous stream (GS) comprising at least one of CO 2 /H 2 , H 2 , methane, and/or CO to a fermentation zone, wherein the GS and AS stream are optionally contacted and/or mixed; the fermentation zone comprising at least one organism capable of metabolizing an AS substrate and a GS substrate, wherein the fermentation operates at conditions to mixotrophically metabolize at least one gaseous substrate in the GS and at least one substrate in the AS, producing the product. The present disclosure also describes compositions comprising an AS, a GS, and an organism, wherein the organism or an equivalent or engineered equivalent thereof is a methanotroph or a hydrogen-metabolizing or CO-metabolizing chemolithotrophic organism, and wherein the organism is capable of mixotrophic metabolism of at least one gaseous substrate in the GS and at least one substrate in the AS. The present disclosure also describes a process wherein said fermentation operates at conditions to mixotrophically metabolize at least H 2 in the gaseous stream and glycerol and lactic acid in the aqueous stream. The present disclosure also describes a system for producing a fermentation or bio-derived product.
    • 本公开描述了用于生产产物的生物催化方法,包括提供包含至少一种可发酵底物的水性流(AS)和包含CO 2中的至少一种的气态流(GS) 甲烷和/或CO到发酵区,其中所述GS和AS流任选地被接触和/或混合; 所述发酵区包含至少一种能够代谢AS底物和GS底物的生物体,其中所述发酵在使所述GS中的至少一种气态底物与所述AS中的至少一种底物混合营养代谢的条件下操作,产生所述产物。 本公开还描述了包含AS,GS和生物体的组合物,其中所述生物体或其等同物或工程等同物是甲烷氧化菌或氢代谢或CO代谢化学无机生物体,并且其中所述生物体能够混养 GS中的至少一种气态底物和AS中的至少一种底物的代谢。 本发明还描述了一种方法,其中所述发酵在使气态流中的至少H 2和甘油和水性流中的乳酸混合营养代谢的条件下操作。 本公开还描述了用于生产发酵或生物衍生产品的系统。