首页> 外国专利> Methods for tracking pulsed water suspension variables of pollutants include providing luminous light in suspension, adding water FOBO dyes that interact with pollutants and cause fluorescent emission changes, and capturing Cho change, change the image and measure the variable of suspension.

Methods for tracking pulsed water suspension variables of pollutants include providing luminous light in suspension, adding water FOBO dyes that interact with pollutants and cause fluorescent emission changes, and capturing Cho change, change the image and measure the variable of suspension.

机译:跟踪污染物的脉冲水悬浮液变量的方法包括在悬浮液中提供发光光,添加与污染物相互作用并导致荧光发射变化的水FOBO染料,捕获Cho变化,改变图像并测量悬浮液变量。

摘要

A challenge in using recycled material in the papermaking process is the presence of hydrophobic organics with adhesive properties commonly known as “stickies.” Hydrophobic agglomerates can result in spots or defects in the final paper product or deposit on papermaking equipment resulting in poor runnability and downtime. Technologies for monitoring and controlling microstickies exist. However, a need exists for a technique to rapidly determine the size and content of macrostickies (diameter100 microns) in recycled pulp process streams. The present invention is a device and method to perform real-time macrostickies and/or any visible hydrophobic particle analysis in an aqueous medium. Using the present invention, furnish quality can be monitored and treatment performance can be monitored and controlled. The technique is based on fluorescence image analysis to identify and count sticky particles as well as measure their size.
机译:在造纸过程中使用回收材料所面临的挑战是存在具有粘合特性的疏水性有机物,通常被称为“胶粘物”。疏水性附聚物会在最终的纸张产品中造成斑点或缺陷,或者在造纸设备上沉积,从而导致不良的可运行性和停机时间。存在用于监视和控制微胶粘物的技术。但是,需要一种技术来快速确定回收的纸浆工艺流中大胶粘物的大小和含量(直径> 100微米)。本发明是一种在水性介质中进行实时大胶粘性和/或任何可见的疏水性颗粒分析的装置和方法。使用本发明,可以监测配料质量并且可以监测和控制处理性能。该技术基于荧光图像分析,以识别和计数粘性颗粒并测量其大小。

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