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    • 15. 发明申请
    • SCALING TOOL
    • WO2019154700A1
    • 2019-08-15
    • PCT/EP2019/052312
    • 2019-01-31
    • THE AUTOMATION PARTNERSHIP (CAMBRIDGE) LIMITED
    • STACEY, AdrianSCHOLZ, Jochen
    • G05B23/02G05B19/418
    • The present application generally pertains to scaling of a production process to produce a chemical, pharmaceutical and/or biotechnological product and/or of a production state of a respective production equipment. Particularly, there is provided a computer- implemented method of scaling a production process to produce a chemical, pharmaceutical and/or biotechnological product, the scaling being from a source scale to a target scale, wherein the production process is defined by a plurality of steps specified by one or more process parameters controlling an execution of the production process, the method comprising: (a) retrieving: parameter evolution information that describes the time evolution of the process parameter(s); a plurality of recipe templates, wherein a recipe comprises the plurality of steps defining the production process, and wherein a recipe template is a recipe in which at least one of the process parameters specifying the plurality of steps is a parameter being variable and having no predetermined value at the outset; (b) receiving: a source setup specification of a source setup to be used for executing the production process at the source scale, the source setup specification comprising the source scale value; a target setup specification of a target setup to be used for executing the production process at the target scale, the target setup specification comprising the target scale value; a source recipe defining the production process at the source scale; at least one acceptability function defining conditions for the values of the process parameter(s) at the source scale and/or at the target scale; (c) simulating the execution of the production process at the source scale using the source setup specification, the source recipe and the parameter evolution information; (d) determining, from the simulation, one or more source trajectories for the process parameters), wherein a trajectory corresponds to a time-based profile of values recordable during the simulated execution of the production process; (e) performing a target determination step comprising: selecting a recipe template pertinent to the production process out of the plurality of recipe templates; providing an input value for the at least one variable parameter in the selected recipe template; simulating the execution of the production process at the target scale using the target setup specification, the selected recipe template, the input value for the at least one variable parameter and the parameter evolution information; determining, from the simulation, one or more target trajectories for the process parameters; comparing the source trajectory(ies) and the target trajectory(ies); computing, based on the comparison and on the at least one acceptability function, an acceptability score for the selected recipe template; computing an optimal value for the at least one variable parameter in the selected recipe template by optimising the acceptability score and/or computing an acceptable range for the at least one variable parameter, wherein values within the acceptable range yield an acceptability score above a specific threshold; (f) if there is at least another pertinent recipe template, repeating the target determination step for at least another pertinent recipe template; (g) selecting at least one of the plurality of recipe templates and corresponding computed value(s) for variable parameters) as target recipe based on the acceptability scores computed for one or more recipe templates.
    • 17. 发明申请
    • LIQUID FILTRATION AND PUMP SYSTEM
    • 液体过滤和泵系统
    • WO2018015406A1
    • 2018-01-25
    • PCT/EP2017/068166
    • 2017-07-18
    • THE AUTOMATION PARTNERSHIP (CAMBRIDGE) LIMITED
    • GRANT, Paul
    • C12M1/26C12M1/12C12M1/00C12M1/34B01D63/02C12M1/36
    • C12M29/10B01D29/01B01D29/52B01D29/90C12M29/00C12M29/04C12M29/12C12M33/04C12M37/02C12M37/04C12M41/48C12M47/10
    • A liquid filtration system according to the present invention comprises a syringe pump comprising a gas chamber and a movable plunger, wherein the gas chamber has an aperture at a first end and the plunger forms a seal within the internal walls of the chamber; a liquid chamber having two openings, the openings positioned at opposite ends of the chamber and the first opening connected to the aperture of the gas chamber; a bioreactor in fluidic communication with the second opening of the liquid chamber; a filter arranged to filter liquid passing between the bioreactor and the liquid chamber, the filter comprising a permeate outlet for removing filtered liquid; wherein, in use, the plunger may be moved in a reciprocating motion causing a corresponding movement of gas which drives liquid alternately between the liquid chamber and the bioreactor such that liquid passes through the filter and filtered liquid may be removed via the permeate outlet.
    • 根据本发明的液体过滤系统包括注射泵,该注射泵包括气体腔室和可移动柱塞,其中气体腔室在第一端具有孔,并且柱塞在内部形成密封 房间的墙壁; 具有两个开口的液体腔室,所述开口位于所述腔室的相对端部处,并且所述第一开口连接至所述气体腔室的所述开口; 与液体腔室的第二开口流体连通的生物反应器; 布置成过滤在生物反应器和液体室之间通过的液体的过滤器,所述过滤器包括用于除去过滤液体的渗透物出口; 其中在使用中,柱塞可以以往复运动的方式运动,引起气体的相应运动,所述气体在液体室和生物反应器之间交替地驱动液体,使得液体通过过滤器,并且过滤后的液体可以通过渗透物出口移除。 / p>