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    • 1. 发明授权
    • Process for the production of ethanol and butanol
    • 生产乙醇和丁醇的方法
    • US08697405B2
    • 2014-04-15
    • US12736102
    • 2009-02-19
    • Peter Simpson BellStephen John BensteadNeil Turnbull
    • Peter Simpson BellStephen John BensteadNeil Turnbull
    • C12P7/06C12P39/00C12P7/54C12P7/52C12P7/14C12P7/08
    • C12P7/08C12P7/14Y02E50/17Y02E50/346
    • The present invention relates to a process for the production of ethanol comprising both gasification and fermentation of feedstocks, and, in particular to a process for the production of ethanol comprising: a) passing a biomass feedstock to a first fermentation step wherein it is subjected to anaerobic fermentation at a pH below 6.0 and at a temperature in the range 20 to 700C to convert the biomass to a solution comprising acetic acid as the predominant product, b) passing a gasifiable feedstock to a gasification step wherein it is subjected to gasification to produce a gaseous mixture comprising carbon monoxide and hydrogen, and c) passing the solution comprising acetic acid from step (a) and the gaseous mixture from step (b) to one or more further fermentation steps wherein they are subject to fermentation to produce ethanol.
    • 本发明涉及一种生产乙醇的方法,其包括原料的气化和发酵,特别是涉及一种生产乙醇的方法,包括:a)将生物质原料通过第一发酵步骤,其中其经受 在pH低于6.0且在20至70℃的温度下进行厌氧发酵,以将生物质转化为包含乙酸作为主要产物的溶液,b)将可气化原料通入气化步骤,其中其进行气化以产生 包含一氧化碳和氢气的气态混合物,和c)使来自步骤(a)的乙酸溶液和来自步骤(b)的气态混合物的溶液通入一个或多个进一步的发酵步骤,其中它们进行发酵以产生乙醇。
    • 2. 发明申请
    • Process for the production of ethanol and butanol
    • 生产乙醇和丁醇的方法
    • US20120040427A1
    • 2012-02-16
    • US12736101
    • 2009-02-19
    • Peter Simpson BellStephen John BensteadNeil Turnbull
    • Peter Simpson BellStephen John BensteadNeil Turnbull
    • C12P7/16C12P7/14
    • C12P7/14C12P7/065C12P7/08C12P7/16Y02E50/10Y02E50/17
    • The present invention relates to a process for the production of ethanol and butanol from biomass, and in particular to a process for the production of ethanol and butanol using two separate fermentation steps, said process comprising: a) passing a biomass feedstock to a first fermentation step, b) in said first fermentation step subjecting the biomass feedstock to anaerobic fermentation at a pH below 6.0 and at a temperature in the range 20 to 700° C. and so as to convert the biomass to a product predominantly comprising acetic acid and butyric acid with at least a 2:1 ratio by weight of acetic acid to butyric acid, c) treating the product stream of step (b) to separate a solution comprising the acetic acid and butyric acid by: (i) separating a solution comprising the acetic acid and butyric acid from any residual solids and (ii) separating bacteria and/or pasteurising or sterilising the solution from the first fermentation step, and d) in a second fermentation step fermenting the solution comprising the acetic acid and butyric acid from step (c) to form ethanol and butanol.
    • 本发明涉及从生物质生产乙醇和丁醇的方法,特别涉及使用两个单独的发酵步骤生产乙醇和丁醇的方法,所述方法包括:a)将生物质原料送入第一次发酵 步骤,b)在所述第一发酵步骤中,使生物质原料进行厌氧发酵,pH低于6.0,温度范围为20至700℃,以便将生物质转化成主要包含乙酸和丁酸的产物 酸与乙酸至丁酸的重量比至少为2:1,c)处理步骤(b)的产物流以通过以下方式分离包含乙酸和丁酸的溶液:(i)将包含 任何残留固体的乙酸和丁酸,和(ii)从第一发酵步骤分离细菌和/或将溶液灭菌或灭菌,以及d)在第二发酵步骤中发酵 包含来自步骤(c)的乙酸和丁酸以形成乙醇和丁醇。
    • 3. 发明申请
    • Process
    • 处理
    • US20100330640A1
    • 2010-12-30
    • US12736102
    • 2009-02-19
    • Peter Simpson BellStephen John BensteadNeil Turnbull
    • Peter Simpson BellStephen John BensteadNeil Turnbull
    • C12P7/14
    • C12P7/08C12P7/14Y02E50/17Y02E50/346
    • The present invention relates to a process for the production of ethanol comprising both gasification and fermentation of feedstocks, and, in particular to a process for the production of ethanol comprising: a) passing a biomass feedstock to a first fermentation step wherein it is subjected to anaerobic fermentation at a pH below 6.0 and at a temperature in the range 20 to to convert the biomass to a solution comprising acetic acid as the predominant product, b) passing a gasifiable feedstock to a gasification step wherein it is subjected to gasification to produce a gaseous mixture comprising carbon monoxide and hydrogen, and c) passing the solution comprising acetic acid from step (a) and the gaseous mixture from step (b) to one or more further fermentation steps wherein they are subject to fermentation to produce ethanol.
    • 本发明涉及一种生产乙醇的方法,其包括原料的气化和发酵,特别是涉及一种生产乙醇的方法,包括:a)将生物质原料通过第一发酵步骤,其中其经受 在pH低于6.0且在20℃的温度范围内的厌氧发酵以将生物质转化为包含乙酸作为主要产物的溶液,b)将可气化原料通入气化步骤,其中其进行气化以产生 包含一氧化碳和氢气的气态混合物,和c)将来自步骤(a)的乙酸溶液和来自步骤(b)的气态混合物的溶液通入一个或多个进一步的发酵步骤,其中它们进行发酵以产生乙醇。
    • 4. 发明授权
    • Process for the production of ethanol and butanol
    • 生产乙醇和丁醇的方法
    • US08586335B2
    • 2013-11-19
    • US12736101
    • 2009-02-19
    • Peter Simpson BellStephen John BensteadNeil Turnbull
    • Peter Simpson BellStephen John BensteadNeil Turnbull
    • C12P7/40
    • C12P7/14C12P7/065C12P7/08C12P7/16Y02E50/10Y02E50/17
    • The present invention relates to a process for the production of ethanol and butanol from biomass, and in particular to a process for the production of ethanol and butanol using two separate fermentation steps, said process comprising: a) passing a biomass feedstock to a first fermentation step, b) in said first fermentation step subjecting the biomass feedstock to anaerobic fermentation at a pH below 6.0 and at a temperature in the range 20 to 700° C. and so as to convert the biomass to a product predominantly comprising acetic acid and butyric acid with at least a 2:1 ratio by weight of acetic acid to butyric acid, c) treating the product stream of step (b) to separate a solution comprising the acetic acid and butyric acid by: (i) separating a solution comprising the acetic acid and butyric acid from any residual solids and (ii) separating bacteria and/or pasteurising or sterilising the solution from the first fermentation step, and d) in a second fermentation step fermenting the solution comprising the acetic acid and butyric acid from step (c) to form ethanol and butanol.
    • 本发明涉及从生物质生产乙醇和丁醇的方法,特别涉及使用两个单独的发酵步骤生产乙醇和丁醇的方法,所述方法包括:a)将生物质原料送入第一次发酵 步骤,b)在所述第一发酵步骤中,使生物质原料进行厌氧发酵,pH低于6.0,温度范围为20至700℃,以便将生物质转化成主要包含乙酸和丁酸的产物 酸与乙酸至丁酸的重量比至少为2:1,c)处理步骤(b)的产物流以通过以下方式分离包含乙酸和丁酸的溶液:(i)将包含 任何残留固体的乙酸和丁酸,和(ii)从第一发酵步骤分离细菌和/或将溶液灭菌或灭菌,以及d)在第二发酵步骤中发酵 包含来自步骤(c)的乙酸和丁酸以形成乙醇和丁醇。
    • 5. 发明申请
    • PROCESS AND APPARATUS FOR THE PRODUCTION OF ALCOHOLS
    • 用于生产醇的方法和装置
    • US20130252299A1
    • 2013-09-26
    • US13881101
    • 2011-11-02
    • Peter Simpson BellBrian Henry CookeNeil Turnbull
    • Peter Simpson BellBrian Henry CookeNeil Turnbull
    • C12P7/06
    • C12P7/065C12M21/12C12M43/00Y02E50/17Y02E50/343
    • A process for the production of C2− alcohols from a methane-containing feedstock which process comprises a) optionally reacting in a pre-reformer the methane-containing feedstock in the presence of steam, where the steam plus C02 to methane molar ratio is less than 5:1; b) reforming at least a portion of the methane-containing feedstock in a first reformer optionally in the presence of steam, where the steam plus C02 to methane molar ratio is less than 5:1 to produce a first product stream comprising CO, H2 and C02; c) optionally subjecting at least a portion of the first product stream and/or a portion of the methane containing feedstock to a reforming process in a second reformer in the presence of steam and oxygen to produce a second product stream comprising CO, H2 and C02 d) subjecting the product streams to a bacterial fermentation process in a fermenter to produce a third product stream comprising an aqueous solution of at least one C2− alcohol, nutrients and reaction intermediates and a fourth product stream comprising CO, H2 and C02 at least 60% of the CO being converted; e) recycling at least a portion of the fourth product stream to the methane-containing feedstock; f) recovering at least a part of the at least one C2− alcohols from the third product stream to leave a fifth product stream; and g) recycling at least a part of the fifth product stream to the fermenter.
    • 一种从含甲烷原料生产C2-醇的方法,该方法包括:a)在蒸汽存在下,任选地在预重整器中反应含甲烷的原料,其中蒸汽加CO 2与甲烷的摩尔比小于 5:1; b)任选地在蒸汽存在下任选地在第一重整器中重整至少一部分含甲烷原料,其中蒸汽加CO 2与甲烷的摩尔比小于5:1,以产生包含CO,H 2和 C02; c)在蒸汽和氧气的存在下,任选地使至少一部分第一产物流和/或含甲烷原料的一部分在第二重整器中进行重整过程,以产生包含CO,H 2和CO 2的第二产物流 d)使产物流在发酵罐中进行细菌发酵过程,以产生包含至少一种C 2醇,营养物和反应中间体的水溶液的第三产物流和包含CO,H 2和CO 2的第四产物流至少60 CO转化率的百分比; e)将第四产物流的至少一部分再循环到含甲烷的原料中; f)从第三产物流中回收至少一部分至少一种C 2醇以留下第五产物流; 和g)将第五产物流的至少一部分再循环到发酵罐中。
    • 7. 发明申请
    • Method for attenuating low frequency noise in a dual-sensor seismic streamer
    • 用于衰减双传感器地震拖缆中的低频噪声的方法
    • US20090281732A1
    • 2009-11-12
    • US12151488
    • 2008-05-07
    • Neil Turnbull
    • Neil Turnbull
    • G01V1/36
    • G01V1/3808
    • A calculated vertical velocity sensor signal is determined from a recorded pressure sensor signal. A constructed vertical velocity sensor signal is determined as a linear combination of the calculated vertical velocity sensor signal and a recorded vertical velocity sensor signal in dual-sensor seismic streamer data, using a mixture coefficient as a proportionality constant. An upgoing pressure wavefield component is determined as one half of a difference of the recorded pressure sensor signal and the constructed vertical velocity sensor signal, as a function of the mixture coefficient. An error in the upgoing pressure wavefield component is determined by propagating errors in the recorded pressure sensor signal and constructed vertical velocity sensor signal terms. A value of the mixture coefficient is determined that minimizes the error in the upgoing pressure wavefield component.
    • 从记录的压力传感器信号确定计算出的垂直速度传感器信号。 使用混合系数作为比例常数,构建的垂直速度传感器信号被确定为计算的垂直速度传感器信号和双传感器地震拖缆数据中记录的垂直速度传感器信号的线性组合。 作为混合系数的函数,上行压力波场分量被确定为记录的压力传感器信号和构造的垂直速度传感器信号的差的一半。 通过在记录的压力传感器信号中传播误差和构造的垂直速度传感器信号项来确定上行压力波场分量中的误差。 确定混合系数的值,其使上行压力波场分量中的误差最小化。
    • 10. 发明授权
    • Method for attenuating low frequency noise in a dual-sensor seismic streamer
    • 用于衰减双传感器地震拖缆中的低频噪声的方法
    • US07957906B2
    • 2011-06-07
    • US12151488
    • 2008-05-07
    • Neil Turnbull
    • Neil Turnbull
    • G01V1/36
    • G01V1/3808
    • A calculated vertical velocity sensor signal is determined from a recorded pressure sensor signal. A constructed vertical velocity sensor signal is determined as a linear combination of the calculated vertical velocity sensor signal and a recorded vertical velocity sensor signal in dual-sensor seismic streamer data, using a mixture coefficient as a proportionality constant. An upgoing pressure wavefield component is determined as one half of a difference of the recorded pressure sensor signal and the constructed vertical velocity sensor signal, as a function of the mixture coefficient. An error in the upgoing pressure wavefield component is determined by propagating errors in the recorded pressure sensor signal and constructed vertical velocity sensor signal terms. A value of the mixture coefficient is determined that minimizes the error in the upgoing pressure wavefield component.
    • 从记录的压力传感器信号确定计算出的垂直速度传感器信号。 使用混合系数作为比例常数,构建的垂直速度传感器信号被确定为计算的垂直速度传感器信号和双传感器地震拖缆数据中记录的垂直速度传感器信号的线性组合。 作为混合系数的函数,上行压力波场分量被确定为记录的压力传感器信号和构造的垂直速度传感器信号的差的一半。 通过在记录的压力传感器信号中传播误差和构造的垂直速度传感器信号项来确定上行压力波场分量中的误差。 确定混合系数的值,其使上行压力波场分量中的误差最小化。