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    • 1. 发明申请
    • METHOD OF MONITORING MICROBIOLOGICAL DEPOSITS
    • 监测微生物沉积物的方法
    • US20090314445A1
    • 2009-12-24
    • US12142369
    • 2008-06-19
    • Sergey M. ShevchenkoMichael J. MurciaPatrick J. Macuch
    • Sergey M. ShevchenkoMichael J. MurciaPatrick J. Macuch
    • D21H21/36D21H17/52
    • G01N33/54366G01N29/022G01N2291/0426
    • A method for monitoring one or more deposits including microbiological deposits on a surface immersed in an aqueous medium of a process is disclosed. The method comprises: (a) providing a QCM that is in contact with an aqueous medium, wherein said QCM has a top side surface contacting the aqueous medium, and a second, bottom side surface isolated from the aqueous medium; (b) providing a composition that is selective for one or more deposit types, including microbiological deposits without the use of an antigen or an antibody; (c) applying said composition to the top side of said QCM surface; (d) measuring the rate of deposition of said deposits from the aqueous medium onto the top side of said QCM surface; and (e) optionally taking corrective action to change one or more process parameters, or chemistry applied to the process, or a combination thereof, to achieve a desired result in regards to microbiological deposition.
    • 公开了一种用于监测一个或多个沉积物的方法,其包括浸渍在工艺的水性介质中的表面上的微生物沉积物。 该方法包括:(a)提供与水性介质接触的QCM,其中所述QCM具有与水性介质接触的顶侧表面和与水介质分离的第二底侧表面; (b)提供对一种或多种沉积物类型具有选择性的组合物,包括不使用抗原或抗体的微生物沉积物; (c)将所述组合物施加到所述QCM表面的顶侧; (d)测量所述沉积物从所述水性介质沉积到所述QCM表面的顶侧上的速率; 和(e)任选地采取校正动作来改变施加于该方法的一个或多个工艺参数或化学成分或其组合,以实现关于微生物沉积的期望结果。
    • 2. 发明授权
    • Method of monitoring microbiological deposits
    • 监测微生物沉积物的方法
    • US08133356B2
    • 2012-03-13
    • US12142369
    • 2008-06-19
    • Sergey M. ShevchenkoMichael J MurciaPatrick J. Macuch
    • Sergey M. ShevchenkoMichael J MurciaPatrick J. Macuch
    • D21H23/78D21H23/08D21H21/36
    • G01N33/54366G01N29/022G01N2291/0426
    • A method for monitoring one or more deposits including microbiological deposits on a surface immersed in an aqueous medium of a process is disclosed. The method comprises: (a) providing a QCM that is in contact with an aqueous medium, wherein said QCM has a top side surface contacting the aqueous medium, and a second, bottom side surface isolated from the aqueous medium; (b) providing a composition that is selective for one or more deposit types, including microbiological deposits without the use of an antigen or an antibody; (c) applying said composition to the top side of said QCM surface; (d) measuring the rate of deposition of said deposits from the aqueous medium onto the top side of said QCM surface; and (e) optionally taking corrective action to change one or more process parameters, or chemistry applied to the process, or a combination thereof, to achieve a desired result in regards to microbiological deposition.
    • 公开了一种用于监测一个或多个沉积物的方法,其包括浸渍在工艺的水性介质中的表面上的微生物沉积物。 该方法包括:(a)提供与水性介质接触的QCM,其中所述QCM具有与水性介质接触的顶侧表面和与水介质分离的第二底侧表面; (b)提供对一种或多种沉积物类型具有选择性的组合物,包括不使用抗原或抗体的微生物沉积物; (c)将所述组合物施加到所述QCM表面的顶侧; (d)测量所述沉积物从所述水性介质沉积到所述QCM表面的顶侧上的速率; 和(e)任选地采取校正动作来改变施加于该方法的一个或多个工艺参数或化学成分或其组合,以实现关于微生物沉积的期望结果。
    • 10. 发明申请
    • METHOD OF MONITORING AND INHIBITING SCALE DEPOSITION IN PULP MILL EVAPORATORS AND CONCENTRATORS
    • 脉冲蒸发器和浓缩器中监测和抑制定标沉积的方法
    • US20110277948A1
    • 2011-11-17
    • US13189965
    • 2011-07-25
    • Sergey M. ShevchenkoPrasad Y. DuggirataDmitri L. Kooznestov
    • Sergey M. ShevchenkoPrasad Y. DuggirataDmitri L. Kooznestov
    • D21C7/12
    • D21C11/106D21C3/226D21C9/008
    • A method of monitoring and inhibiting scale precipitation and deposition from spent liquor in pulp mill evaporators and concentrators is disclosed. The method includes connecting a black liquor deposition monitor to a pulp mill evaporator or concentrator and measuring the thermal conductivity on the outer surface of the monitor. A controller interprets the measured thermal conductivity and determines a level of scale deposition. If the level of scale deposition is above a predetermined level, the controller is operable to introduce a scale-inhibiting composition to the spent liquor. The scale-inhibiting composition may include organic polycarboxylic acids; organic fatty acids; low molecular weight and polymeric aromatic acids; organic acid esters, anhydrides, and amides; low molecular weight and polymeric aliphatic and aromatic sulfonic acids; and low molecular weight and polymeric amines; and any combinations.
    • 公开了一种在纸浆厂蒸发器和浓缩器中监测和抑制废液中沉淀和沉积废水的方法。 该方法包括将黑液沉积监测器连接到纸浆厂蒸发器或浓缩器并测量监测器外表面上的热导率。 控制器解释所测量的热导率并确定刻度沉积程度。 如果水垢沉积高于预定水平,则控制器可操作地将废垢组合物引入废液中。 抑垢组合物可以包括有机多元羧酸; 有机脂肪酸; 低分子量和聚合芳香酸; 有机酸酯,酸酐和酰胺; 低分子量和聚合的脂族和芳族磺酸; 和低分子量和聚合胺; 和任何组合。