Patents Assigned to Synfuels China Technology Co., Ltd.
  • Patent number: 11426712
    Abstract: Disclosed are a Fischer-Tropsch synthesis catalyst, a preparation method therefor and use thereof in a Fischer-Tropsch synthesis reaction. Wherein the catalyst comprises: an active component, being at least one selected from VIIIB transition metals; an optional auxiliary metal; and a nitride carrier having a high specific surface area. The catalyst is characterized in that the active metal is supported on the nitride carrier having the high specific surface, such that the active component in the catalyst is highly dispersed. The catalyst has a high hydrothermal stability, an excellent mechanical wear resistance, a high Fischer-Tropsch synthesis activity and an excellent high-temperature stability.
    Type: Grant
    Filed: April 10, 2018
    Date of Patent: August 30, 2022
    Assignee: SYNFUELS CHINA TECHNOLOGY CO., LTD.
    Inventors: Chenghua Zhang, Yongwang Li, Yong Yang, Hulin Wang, Xianzhou Wang, Hongwei Xiang
  • Patent number: 9550181
    Abstract: A micro-spherical iron-based catalyst and a preparation method thereof are disclosed. The catalyst contains a potassium promoter, and at least one transitional metal promoter M which is one or more kinds of metals selected from Cr, Cu, Mn and Zn. It also contains a structure promoter S, which is SiO2 and/or Al2O3, wherein both of SiO2 and Al2O3 are modified by MoO3, TiO2 and/or ZrO2. The weight ratio of components is Fe:M:K:S=100:3-50:1-8:3-50, in which the metal components are calculated based on metal elements, the structure promoter is calculated based on oxides. The catalyst is prepared by co-precipitation method.
    Type: Grant
    Filed: March 11, 2010
    Date of Patent: January 24, 2017
    Assignee: SYNFUELS CHINA TECHNOLOGY CO., LTD.
    Inventors: Yong Yang, Baoshan Wu, Yongwang Li, Hongwei Xiang
  • Patent number: 9012351
    Abstract: A method for continuously preparing a metal oxides catalyst comprises the following steps: dissolving metal materials using nitric acid solution to produce a metal nitrate solution, and also to produce NOx and water vapor; hydrolyzing the metal nitrate solution by introducing pressurized superheated water vapor into the metal nitrate solution to obtain a slurry of the hydrates of metal oxides as well as acidic gas, the main components of the acidic gas are NO2, NO, O2 and water vapor; filtrating and drying the slurry to obtain the hydrates of metal oxides and/or metal oxides; and then utilizing the obtained hydrates of metal oxides and/or metal oxides as raw materials and preparing the metal oxides catalyst by the conventional method for preparing a catalyst. The NOx gas produced can be absorbed to produce nitric acid which can be reused.
    Type: Grant
    Filed: June 29, 2009
    Date of Patent: April 21, 2015
    Assignee: SynFuels China Technology Co., Ltd.
    Inventors: Yong Yang, Baoshan Wu, Jian Xu, Hongwei Xiang, Yongwang Li
  • Patent number: 8784650
    Abstract: A method for multistage transforming carbonaceous solid fuel to oil, includes mixing solid fuel (17) with heavy oil (40) to obtain fuel-oil slurry; heating and dehydrating of the slurry; liquefying of the slurry by hydrogenation under a low-medium pressure to obtain light oil (25) and heavy oil-residue slurry; hydrorefining the light oil (25) to obtain refined oil; gasifying the heavy oil-residue slurry in a gasifier (11) to obtain syngas (47); producing F-T synthesis oil (52) with the syngas (47); hydrorefining and hydrocracking the F-T synthesis oil (52) to obtain refined oil; mixing the refined oil from the F-T synthesis oil with the refined oil from liquefying by hydrogenation for producing high quality oil with low sulfur and low ammonia, and other chemical product. The method can be applied to various kinds of coals and biomass, especially applied to lignite and biomass. A suspended bed reactor for liquefying of carbonaceous solid fuel by hydrogenation is also disclosed.
    Type: Grant
    Filed: July 1, 2009
    Date of Patent: July 22, 2014
    Assignee: Synfuels China Technology Co., Ltd
    Inventors: Minli Cui, Jianwei Huang, Xu Hao, Liren Cao, Yongwang Li
  • Patent number: 8506895
    Abstract: A Fischer-Tropsch synthesis three-phase suspension bed reactor (“suspension bed” also called “slurry bed”) and its supplemental systems, may include: 1) structure and dimension design of F-T synthesis reactor, 2) a gas distributor located at the bottom of the reactor, 3) structure and arrangement of a heat exchanger members inside the reactor, 4) a liquid-solid filtration separation device inside reactor, 5) a flow guidance device inside reactor, 6) a condensate flux and separation member located in the gas phase space at the top of reactor, 7) a pressure stabilizer, a cleaning system for the separation device; an online cleaning system for the gas distributor; an ancillary system for slurry deposition and a pre-condensate and mist separation system located at the outlet of upper reactor. This reactor is suitable for industrial scale application of Fischer-Tropsch synthesis.
    Type: Grant
    Filed: October 12, 2007
    Date of Patent: August 13, 2013
    Assignee: Synfuels China Technology Co. Ltd.
    Inventors: Jinsheng Wang, Xu Hao, Dongxun Liu, Liang Bai, Liren Cao, Yongwang Li
  • Publication number: 20100179234
    Abstract: The present invention discloses a transition metal nano-catalyst, a method for preparing the same, and a process for Fischer-Tropsch synthesis using the catalyst. The transition metal nano-catalyst comprises transition metal nanoparticles and polymer stabilizers, and the transition metal nanoparticles are dispersed in liquid media to form stable colloids. The transition metal nano-catalyst can be prepared by mixing and dispersing transition metal salts and polymer stabilizers in liquid media, and then reducing the transition metal salts with hydrogen at 100-200° C. The nano-catalyst can be used for F-T synthesis reaction. The process for F-T synthesis using the nano-catalyst comprises contacting a reactant gas mixture comprising carbon monoxide and hydrogen with the catalyst and reacting. The catalyst can rotate freely in three-dimensional space under reaction conditions, and have excellent catalystic activity at a low temperature of 100-200° C.
    Type: Application
    Filed: April 30, 2008
    Publication date: July 15, 2010
    Applicant: Synfuels China Technology Co., Ltd.
    Inventors: Yuan Kou, Ning Yan, Chaoxian Xiao, Zhipeng Cai, Yongwang Li