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    • 13. 发明申请
    • METHOD FOR MEASURING THE GERONTOLOGICAL VALUE OF BIOLOGICALLY ACTIVE SUBSTANCES AND COMPOSITIONS, MAINLY FOOD AND COSMETIC PRODUCTS
    • 生物活性物质和组合物的主要价值的测定方法,主要食品和化妆品
    • WO01001128A1
    • 2001-01-04
    • PCT/RU1999/000427
    • 1999-11-10
    • G01N25/04G01N25/08G01N25/10G01N33/02G01N33/03G01N33/15G01N33/26G01N33/28G01N33/483
    • G01N25/04
    • The present invention pertains to the field of gerontology, geriatrics and dietetics and can be used for estimating mainly food and cosmetic products from the point of view of biological and medical problems. The purpose of this invention is to maintain health conditions, to improve life quality and increases life duration and to preserve the beauty of the body. The method involves determining the fusion temperature of the analysed supramolecular structure of models from a whole series of studied products and determining a temperature reference value that is lower than the minimal fusion temperature of the analysed supramolecular structure of said models. The method further involves determining the value of a Gibbs' specific function for the formation of the supramolecular structure of said models according to the above-mentioned reference temperature value. The method finally involves selecting the reference model according to the minimal value of the Gibbs' specific function for the formation of the supramolecular structure, and comparing the values of the Gibbs' specific function for the formation of the analysed supramolecular structure both for the reference model and for the studied model by determining the relation between said values.
    • 本发明涉及老年学,老年病学和营养学领域,并且可以从生物和医学问题的角度用于主要估计食品和化妆品的估算。 本发明的目的是保持健康状况,改善生活质量并延长寿命并保持身体的美丽。 该方法包括从所研究产物的整个系列中确定模型的分析超分子结构的融合温度,并确定低于所述模型分析的超分子结构的最小融合温度的温度参考值。 该方法还包括根据上述参考温度值确定用于形成所述模型的超分子结构的吉布斯特异性函数的值。 该方法最终包括根据吉布斯形成超分子结构的特定功能的最小值选择参考模型,并比较用于形成分析的超分子结构的吉布斯特异性函数的值,用于参考模型 并通过确定所述值之间的关系来研究模型。
    • 18. 发明申请
    • A PROCESS AND DEVICE FOR CONTINUOUS IONIC MONITORING OF AQUEOUS SOLUTIONS
    • 用于连续离子监测水溶液的方法和装置
    • WO02014850A1
    • 2002-02-21
    • PCT/US2001/025264
    • 2001-08-10
    • G01N27/26B01J47/12B01J49/00C02F1/00G01N27/06G01N27/08G01N27/27G01N27/28G01N33/18G01N25/08
    • G01N33/18G01N27/06
    • An electrolytic process and apparatus are disclosed for continuously producing the cation conductivity, anion conductivity, and temperature data required for continuous monitoring of the pH of high-purity aqueous solution flows. The cation exchange material and the anion exchange material used for conditioning water samples for conductivity measurements are continuously regenerated by applying a DC electric voltage between an anode and a cathode either across the cation exchange material, whereby hydrogen ions generated at the anode move through the cation exchange material displacing cations previously absorbed and these displaced cations under the influence of the electric field migrate to the cathode, or across the anion exchange material, whereby hydroxyl ions generated at the cathode regenerate the anion exchange material. The temperature-corrected cation conductivity and the temperature-corrected anion conductivity are then used together with measurement of the specific conductivity of the sample to calculate the pH of the sample.
    • 公开了用于连续产生连续监测高纯度水溶液流的pH所需的阳离子电导率,阴离子导电率和温度数据的电解方法和装置。 通过在阳极交换材料之间施加阳极和阴极之间的直流电压,连续地再生用于调节水样中电导率测量的阳离子交换材料和阴离子交换材料,由此在阳极处产生的氢离子通过阳离子 交换材料置换先前吸收的阳离子,并且在电场影响下这些置换的阳离子迁移到阴极或阴离子交换材料上,由此在阴极产生的羟基离子再生阴离子交换材料。 然后将温度校正的阳离子电导率和温度校正的阴离子电导率与样品的比电导率的测量一起使用以计算样品的pH。