PRODUCTION OF PYRIPYROPENES FROM DRY BIOMASS
    2.
    发明公开
    PRODUCTION OF PYRIPYROPENES FROM DRY BIOMASS 审中-公开
    HERSTELLUNG VON PYRIPYROPENEN AUS TROCKENER BIOMASSE

    公开(公告)号:EP2978852A4

    公开(公告)日:2016-10-26

    申请号:EP14774843

    申请日:2014-03-03

    Applicant: BASF SE

    CPC classification number: C07D493/04 A01N43/40 C12P17/181

    Abstract: The invention pertains to processes to produce dry biomass of pyripyropene producer organisms, processes to obtain pyripyropenes from such dry biomass, as well as to processes to produce compounds of Formula III and/or Formula IV and/or Formula V from the pyripyropenes obtained from the dry biomass. The invention does further pertain to the dry biomass itself, as well as processes using said dry biomass to obtain pyripyropenes for the production of compounds of Formula III and/or Formula IV and/or Formula V, including processes using said dry biomass to obtain pyripyropenes or compounds of Formula III and/or Formula IV and/or Formula V in order to produce pest control compositions, in particular insecticides, comprising such compounds.

    Abstract translation: 本发明涉及产生拟南芥生产生物体的干燥生物质的方法,从这种干燥生物质中获得拟南芥的方法,以及从得自二氯苯的方法得到式III和/或式IV和/或式V化合物的方法 干生物量。 本发明进一步涉及干生物质本身,以及使用所述干生物质获得用于生产式III和/或式IV和/或式V化合物的吡啶并入的方法,包括使用所述干生物质获得吡啶并吡喃 或式III和/或式IV和/或式V的化合物,以便制备包含这些化合物的害虫控制组合物,特别是杀虫剂。

    A PROCESS FOR THE PRODUCTION OF A CARBON SUPPORTED CATALYST

    公开(公告)号:CA2943287C

    公开(公告)日:2022-06-07

    申请号:CA2943287

    申请日:2015-03-17

    Applicant: BASF SE

    Abstract: A process for the production of a carbon supported catalyst, which comprises the following steps: (a) precipitation of at least one metal oxide onto a surface of a carbon-comprising sup¬ port by preparing an initial mixture, comprising the carbon-comprising support, at least one metal oxide precursor and an organic solvent, and spray-drying of the ini¬ tial mixture to obtain an intermediate product, (b) loading of noble-metal-comprising particles onto the surface of the intermediate product in a liquid medium by deposition, precipitation and/or reduction of a noble- metal-comprising precursor with a reducing agent, (c) heat treatment of the catalyst precursor resulting from step (b) at a temperature higher than 400°C.

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