REMOTE RESEARCH SYSTEM
    1.
    发明专利

    公开(公告)号:JP2004005412A

    公开(公告)日:2004-01-08

    申请号:JP2003020751

    申请日:2003-01-29

    Applicant: BASF AG

    Abstract: PROBLEM TO BE SOLVED: To provide a remote research system providing a possibility of remote research. SOLUTION: The remote research system comprises a central laboratory site for carrying out chemical research tests, a laboratory robot for carrying out the chemical research tests, a central processing unit (CPU), a workstation 10 linked to the central processing unit for controlling the laboratory robot, a camera detecting actions of the laboratory robot when a chemical research test is being carried out and linked to the central processing unit via the workstation, and a workstation 20 for a remote user linked to the central processing unit 12 via a computer network 22 to allow remote user access to the chemical research test carried out in the central laboratory site. Execution states of the test are sent to the workstation 20 for the remote user by the camera via the central processing unit 12 and the computer network 22. COPYRIGHT: (C)2004,JPO

    METHOD AND DEVICE FOR ANALYZING THE HARDENING OF HARDENABLE FORMULATIONS
    2.
    发明申请
    METHOD AND DEVICE FOR ANALYZING THE HARDENING OF HARDENABLE FORMULATIONS 审中-公开
    方法和设备进行调查固化固化配方

    公开(公告)号:WO03029784A2

    公开(公告)日:2003-04-10

    申请号:PCT/EP0210910

    申请日:2002-09-27

    CPC classification number: G01N3/42 G01N2203/0092 G01N2203/0682

    Abstract: The invention relates to a method for combined analysis of the hardening of hardenable liquid or viscous formulations, wherein (a) n hardenable formulations are provided in parallel in n containers, and (b) at least one degree of hardening is determined for each of the n formulations, wherein a measuring tip is inserted into the formulation with a determined amount of force and the maximum penetration depth thus obtained is taken as a measure of the degree of hardening of said formulations, and (c) one or several parameters characterizing the hardening kinetics are determined for a respective composition of the formulations from the measured values for the depths of penetration at various times after the production of the formulations . Preferably, steps (a) - (c) are carried out on several occasions and by analyzing the large number of individual values of the parameters characterizing the hardening characteristics thus obtained, it is possible to ascertain the dependency of the characteristic parameter(s) in relation to the composition of the formulations, whereupon the composition of the formulations can be optimized with regard to the hardening behavior thereof.

    Abstract translation: 本发明涉及一种方法,用于在其中设置在平行于正固化配方可固化液体或粘性制剂的固化的组合研究ÑBehäitern的(a)和(b)固化的程度anjeder所述n制剂至少一次测定, 通过测量末端以一定的力刺穿制剂和达到制剂的固化度的最大穿透深度AIS度量被测量,和制备所述制剂的后(c)对于每个由用于在不同时间的穿透深度的测量值的制剂的组合物的 或固化参数的动力学的多个特征被确定第二十 根据所述步骤(a)(c)是优选进行多次,它是由这样获得的大量的一种或硬化参数的动力学特性的个体值的分析来确定是的函数,或制剂的组合物的特征参数 由此制剂的组合物可以相对于它们的固化行为进行优化。

    NANOPARTICULATE ACTIVE SUBSTANCE FORMULATIONS

    公开(公告)号:CA2543553A1

    公开(公告)日:2005-05-26

    申请号:CA2543553

    申请日:2004-10-19

    Applicant: BASF AG

    Abstract: New active agent formulations contain active agent(s) (A); random radical copolymer(s) (B), derived from sulfoalkyl (meth)acrylate or N-sulfoalkyl-(meth)acrylamide monomer(s) (I) (and/or their salts), (meth)acrylate ester or N-substituted (meth)acrylamide monomer(s) (II) and optionally further monomers; and optionally further additives (C). New active agent formulations contain active agent(s) (A); random radical copolymer(s) (B), derived from olefinically unsaturated sulfonic acid(s) of formula (I) (and/or their salts), monomer(s) of formula H 2C=C(R 4>)-CO-YR 6> (II) and optionally further monomers; and optionally further additives (C). n : 0-10; X, Y : O or NR 5>; R 1>, R 4>H or Me; R 2>, R 3>H or 1-6C alkyl; R 5>, R 6>H, alkyl, aryl, alkylaryl, alkoxyalkyl, aryloxyalkyl, alkoxyaryl, hydroxyalkyl, (di)alkylaminoalkyl, (di)arylaminoalkyl, alkylarylaminoalkyl or alkylarylaminoaryl (where aryl groups are optionally substituted). Independent claims are included for: (1) the preparation of aqueous dispersions, by contacting the formulations with aqueous systems (optionally in presence of additives) and dispersion conventionally; (2) the preparation of the formulations, by dissolving (A) - (C) and optionally further additives in an organic solvent (or dissolving the components separately in organic solvents then mixing the solutions), then conventionally removing the solvent; and (3) an alternative preparation of the formulations, by forming an aqueous solution of (B); dissolving (A), (C) (if present) and optionally further additives in water-miscible organic solvent(s); mixing the solutions; applying energy to form a dispersion; and conventionally removing the solvent. [Image].

    Nanoparticulate active substance formulations

    公开(公告)号:AU2004289034A1

    公开(公告)日:2005-05-26

    申请号:AU2004289034

    申请日:2004-10-19

    Applicant: BASF AG

    Abstract: New active agent formulations contain active agent(s) (A); random radical copolymer(s) (B), derived from sulfoalkyl (meth)acrylate or N-sulfoalkyl-(meth)acrylamide monomer(s) (I) (and/or their salts), (meth)acrylate ester or N-substituted (meth)acrylamide monomer(s) (II) and optionally further monomers; and optionally further additives (C). New active agent formulations contain active agent(s) (A); random radical copolymer(s) (B), derived from olefinically unsaturated sulfonic acid(s) of formula (I) (and/or their salts), monomer(s) of formula H 2C=C(R 4>)-CO-YR 6> (II) and optionally further monomers; and optionally further additives (C). n : 0-10; X, Y : O or NR 5>; R 1>, R 4>H or Me; R 2>, R 3>H or 1-6C alkyl; R 5>, R 6>H, alkyl, aryl, alkylaryl, alkoxyalkyl, aryloxyalkyl, alkoxyaryl, hydroxyalkyl, (di)alkylaminoalkyl, (di)arylaminoalkyl, alkylarylaminoalkyl or alkylarylaminoaryl (where aryl groups are optionally substituted). Independent claims are included for: (1) the preparation of aqueous dispersions, by contacting the formulations with aqueous systems (optionally in presence of additives) and dispersion conventionally; (2) the preparation of the formulations, by dissolving (A) - (C) and optionally further additives in an organic solvent (or dissolving the components separately in organic solvents then mixing the solutions), then conventionally removing the solvent; and (3) an alternative preparation of the formulations, by forming an aqueous solution of (B); dissolving (A), (C) (if present) and optionally further additives in water-miscible organic solvent(s); mixing the solutions; applying energy to form a dispersion; and conventionally removing the solvent. [Image].

    8.
    发明专利
    未知

    公开(公告)号:DE10148567A1

    公开(公告)日:2003-07-31

    申请号:DE10148567

    申请日:2001-10-01

    Applicant: BASF AG

    Abstract: The invention relates to a process for the combinatorial investigation of the hardening of hardenable liquid or viscous formulations (a) in which n hardenable formulations are prepared in parallel in n containers, and (b) the degree of hardening is determined at least once on each of the n formulations by inserting a measurement tip into the formulation with a certain force and measuring the maximum penetration depth achieved as a measure of the degree of hardening of this formulation, and (c) for in each case one composition of the formulations, one or more parameters that are characteristic of the kinetics of hardening are determined from the measurement values for the penetration depth at various times after preparation of the formulations. Steps (a) to (c) are preferably carried out a number of times, and a dependence of the characteristic parameter(s) on the composition of the formulations is determined by analysis of the large number of individual values obtained in this way for the parameter(s) that is (are) characteristic of the kinetics of hardening, enabling the composition of the formulations to be optimized with respect to its hardening behavior.

    9.
    发明专利
    未知

    公开(公告)号:BRPI0415902A

    公开(公告)日:2007-01-16

    申请号:BRPI0415902

    申请日:2004-10-19

    Applicant: BASF AG

    Abstract: New active agent formulations contain active agent(s) (A); random radical copolymer(s) (B), derived from sulfoalkyl (meth)acrylate or N-sulfoalkyl-(meth)acrylamide monomer(s) (I) (and/or their salts), (meth)acrylate ester or N-substituted (meth)acrylamide monomer(s) (II) and optionally further monomers; and optionally further additives (C). New active agent formulations contain active agent(s) (A); random radical copolymer(s) (B), derived from olefinically unsaturated sulfonic acid(s) of formula (I) (and/or their salts), monomer(s) of formula H 2C=C(R 4>)-CO-YR 6> (II) and optionally further monomers; and optionally further additives (C). n : 0-10; X, Y : O or NR 5>; R 1>, R 4>H or Me; R 2>, R 3>H or 1-6C alkyl; R 5>, R 6>H, alkyl, aryl, alkylaryl, alkoxyalkyl, aryloxyalkyl, alkoxyaryl, hydroxyalkyl, (di)alkylaminoalkyl, (di)arylaminoalkyl, alkylarylaminoalkyl or alkylarylaminoaryl (where aryl groups are optionally substituted). Independent claims are included for: (1) the preparation of aqueous dispersions, by contacting the formulations with aqueous systems (optionally in presence of additives) and dispersion conventionally; (2) the preparation of the formulations, by dissolving (A) - (C) and optionally further additives in an organic solvent (or dissolving the components separately in organic solvents then mixing the solutions), then conventionally removing the solvent; and (3) an alternative preparation of the formulations, by forming an aqueous solution of (B); dissolving (A), (C) (if present) and optionally further additives in water-miscible organic solvent(s); mixing the solutions; applying energy to form a dispersion; and conventionally removing the solvent. [Image].

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