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    • 6. 发明申请
    • Preparation Comprising at Least One Conazole Fungicide
    • 包括最少一种针唑杀真菌剂的制备
    • US20080318785A1
    • 2008-12-25
    • US11918522
    • 2006-04-13
    • Sebastian KoltzenburgPeter DomboGunter OetterChristian KrugerWolfgang SchrofMatthias Bratz
    • Sebastian KoltzenburgPeter DomboGunter OetterChristian KrugerWolfgang SchrofMatthias Bratz
    • A01N43/653C08F228/02A01P3/00C08F26/06
    • C08F220/60A01N25/10A01N25/14A01N43/653C08F220/18C08F220/38A01N2300/00
    • The invention relates to preparations, in particular plant-protective preparations which contain a mixture of at least two different active plant-protective substances, wherein a) at least one active substance is selected from a conazole group (active substance 1) and b) another active plant-protective substance (active substance 2) whose water solubility at a temperature of 20° C. is less than 20 g/l, c) at least one type of copolymer CP consisting of M monomers comprising α) at least one type of monoethylenically unsaturated monomer M1 comprising at least one sulphonic acid group and β) at least one type of neutral monoethylenically unsaturated monomer M2, wherein the quantitative ratio between the active substance 1 and the other active plant-protective substance 2 ranges from 1:10 to 10:1. Said invention also relates to novel copolymers CP which are embodied in the form of polymers consisting of at least three types of different monoethylenically unsaturated monomers M and comprise, in the polymerisation incorporated form, α) at least one type of monoethylenically unsaturated monomer M1 comprising at least one sulphonic acid group, β1) at least one type of neutral monoethylenically unsaturated monomer M2 whose water solubility at a temperature of 20° C. is less than 30 g/l and β2) at least one type of neutral monoethylenically unsaturated monomer M2b whose water solubility at a temperature of 20° C. is greater than 50 g/l.
    • 本发明涉及制剂,特别是含有至少两种不同的活性植物保护物质的混合物的植物保护制剂,其中a)至少一种活性物质选自唑类(活性物质1)和b)另一种 在20℃温度下的水溶性小于20g / l的活性植物保护物质(活性物质2),c)由M单体组成的至少一种共聚物CP,包括α)至少一种类型的 包含至少一个磺酸基团的单烯属不饱和单体M1和β)至少一种中性单烯属不饱和单体M2,其中活性物质1与另一种活性植物保护物质2的定量比范围为1:10至10 :1。 所述发明还涉及新型共聚物CP,其以由至少三种不同单烯属不饱和单体M组成的聚合物的形式体现并且以聚合形式包含α)至少一种类型的单烯属不饱和单体M1,其包含在 至少一种磺酸基团,β1)至少一种类型的中和单烯属不饱和单体M2b,其在20℃温度下的水溶性小于30g / l和β2)至少一种中性单烯属不饱和单体M2b,其中 在20℃的温度下的水溶解度大于50g / l。
    • 7. 发明授权
    • Process and apparatus for the parallel analysis of colloidal particles using field-flow fractionation
    • 使用场流分级技术平行分析胶体颗粒的方法和装置
    • US06562307B1
    • 2003-05-13
    • US09610944
    • 2000-07-06
    • Horst SchuchWolfgang Schrof
    • Horst SchuchWolfgang Schrof
    • B01D1104
    • G01N30/0005G01N2030/628G01N30/466
    • The present invention relates to an apparatus for the simultaneous analysis of at least two samples by the field-flow fractionation method, where the apparatus has at least the following elements: a) a source of a defined liquid stream, preferably a pump, b) at least two separation channels, each with at least one inlet and each with at least one outlet for passing the at least two samples through in each case one of the at least two separation channels, c) at least one controllable unit which is connected to the at least two separation channels via their at least one outlet each, and which can pass on the at least two samples, which can be passed through in each case one of the at least two separation channels, separately from one another to at least one unit downstream of the controllable unit.
    • 本发明涉及一种用于通过场流分级方法同时分析至少两个样品的装置,其中所述装置至少具有以下元件:a)限定液流源,优选泵,b) 至少两个分离通道,每个具有至少一个入口,每个具有至少一个出口,用于使所述至少两个样品在每种情况下通过所述至少两个分离通道中的一个; c)至少一个可控单元,其连接到 所述至少两个分离通道经由其至少一个出口各自并且可以在所述至少两个样品上通过,所述至少两个样品可以在所述至少两个分离通道中的每一个彼此分开地通过至少一个 单元在可控单元的下游。
    • 9. 发明授权
    • Method and apparatus for Raman correlation spectroscopy
    • 拉曼相关光谱的方法和装置
    • US5949532A
    • 1999-09-07
    • US900714
    • 1997-07-28
    • Wolfgang SchrofJurgen KlinglerDieter Horn
    • Wolfgang SchrofJurgen KlinglerDieter Horn
    • G01N21/65G01J3/28G01J3/44G01J3/457G01N21/64
    • G01J3/457G01J3/44G01J2003/2866
    • A method and an apparatus for determining diffusion parameters, concentration, size or flow behavior of particles in a sample, exciting light of a light source being directed into the sample, Raman scattered light being collected from an observed volume of the sample and being passed on to a spectrograph where it is resolved into spectral lines, the intensity of at least one spectral line being measured at least 10 times per second by means of one photodetector each, and the measured intensity values for the respective spectral line being used, via a fluctuation analysis, preferably an autocorrelation or a frequency analysis, to calculate diffusion parameters, concentration, size or flow behavior of the particle to which the spectral line in question can be assigned. With this method, it is also possible for signals of different spectral lines or bands, or signals of Raman scattered light, quasi-elastically scattered light and fluorescence light to be correlated with one another.
    • 用于确定样品中颗粒的扩散参数,浓度,尺寸或流动行为的方法和装置,激发被引入样品的光源的激发光,从观察体积的样品中收集的拉曼散射光,并被传递 对于其被分解成谱线的光谱仪,通过一个光电检测器每秒至少测量10次光谱线的强度,以及通过波动测量各光谱线的测量强度值 分析,优选自相关或频率分析,以计算可以分配所讨论的谱线的粒子的扩散参数,浓度,尺寸或流动行为。 通过该方法,也可以使不同谱线或频带的信号,或拉曼散射光,准弹性散射光和荧光的信号彼此相关。