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    • 1. 发明申请
    • SYSTEM AND PROCESS FOR DETERMINING AND ANALYSING SURFACE PROPERTY PARAMETERS OF SUBSTANCE BASED ON KINETIC METHOD
    • 基于动力学方法确定和分析物质表面物性参数的系统和方法
    • US20150076006A1
    • 2015-03-19
    • US14359502
    • 2012-01-20
    • Rui LiHang LiXinmin LiuZhenlun LiJie HouHualing ZhuLaosheng Wu
    • Rui LiHang LiXinmin LiuZhenlun LiJie HouHualing ZhuLaosheng Wu
    • G01N27/26
    • G01N27/26G01R29/24
    • A system and process for determining and analyzing surface property parameters of a substance based on kinetic method is provided. The system comprises a sample processing system and a detection system. The sample processing system includes a reactor (3), a collector for liquid to be tested (5), and a container for liquid to be tested (6). The detection system includes a detecting electrode (13), a concentration and activity operator, a kinetic data processor, a surface property operation module, and a result output module. The process comprises: having the substance to be tested to be treated with an electrolyte solution, measuring activity of liquid to be tested upon reaction at a pre-set time interval, and processing with the kinetic data processor and the surface property operation module, so as to obtain surface property parameters of the substance to be tested. The present invention adopts kinetic method of ion exchange to overcome the issues associated with long reaction equilibrium time, not easy to determine equilibrium and not easy to accurately determine the value of m. Five parameters of the substance surface property can be calculated with only intercept and gradient of the linear regression equation obtained from the kinetic data, and the total amount of surface charge can also be directly determined.
    • 提供了一种基于动力学方法确定和分析物质表面性质参数的系统和方法。 该系统包括样本处理系统和检测系统。 样品处理系统包括反应器(3),待测试液体(5)的收集器和用于待测试液体的容器(6)。 检测系统包括检测电极(13),浓度和活动算子,动力学数据处理器,表面特性操作模块和结果输出模块。 该方法包括:使待测物质用电解质溶液进行处理,以预设的时间间隔测量待测试液体的活性,并用动力学数据处理器和表面性质操作模块进行处理,因此 以获得待测物质的表面性质参数。 本发明采用离子交换的动力学方法克服与反应平衡时间长的问题,不容易确定平衡,不容易准确确定m的值。 物质表面性质的五个参数可以用动力学数据获得的线性回归方程的截距和梯度计算,并且也可以直接确定表面电荷的总量。
    • 3. 发明申请
    • HIGH EFFICIENCY ENERGY RECOVERY CORE FOR VENTILATION
    • 高效能恢复核心通风
    • US20120196523A1
    • 2012-08-02
    • US13357392
    • 2012-01-24
    • Longhao JiangLing HanXinmin Liu
    • Longhao JiangLing HanXinmin Liu
    • F24F7/00
    • F24F12/006F28D9/0037F28F13/06Y02B30/563
    • An energy recovery device includes a first fluid path extending between a fresh air inlet and a fresh air outlet, and a second fluid path extending between an exhaust inlet and an exhaust air outlet. The first fluid path and the second fluid path may direct flow in a direction that is substantially parallel to one another through at least part of the energy recovery device. In some cases, a bend may be provided in at least part of the energy recovery device such that the first fluid path directs flow in a direction that is at a first angle relative to fluid flow through the second fluid path for a first portion of the first fluid path, and in a direction that is at a second angle relative to fluid flow through the second fluid path for a second portion of the first fluid path.
    • 能量回收装置包括在新鲜空气入口和新鲜空气出口之间延伸的第一流体路径和在排气入口和排气出口之间延伸的第二流体路径。 第一流体路径和第二流体路径可以通过能量回收装置的至少一部分在基本上彼此平行的方向上引导流动。 在一些情况下,可以在能量回收装置的至少一部分中提供弯曲,使得第一流体路径相对于流经第二流体路径的流体流动以相对于第一角度的方向引导流动,用于第一部分 第一流体路径,并且在相对于流过第二流体路径的流体流动的第二角度的方向上,用于第一流体路径的第二部分。