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Establishing the Techniques to Relate Paper Machine Issues to Colloidal Microstickies

机译:建立将纸机问题与胶体微胶粘剂相关的技术

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摘要

Since the increased use of recycle fiber into the paper making process the industry has desired the ability to relate runnability issues associated with the quality of the incoming recovered paper.A new technology that measures colloidal organic solids has been developed by IPST at Georgia Tech.The new technology which is based on a combination of fractionation and measurement of total organic carbon (TOC)has the potential for on-line-effective measurement of micro-organic accumulation and is currently being validated under mill scale conditions for packaging,newsprint,and tissue paper grades.This paper will review how the accumulated colloidals from pulping and recirculation in the process can be related to paper machine runnability.The colloidal organic material manifests itself in visible ways such as stickies,deposition onto the machine (wires,foils,and felts),sheet holes,build-up on scanners and poor runnability.The objective of this paper is to show how protocols can be established for monitoring these dynamic colloidal organic solids and relating these measurements to paper machine runnability.
机译:由于在造纸过程中越来越多地使用回收纤维,因此业界希望能够将与可回收废纸质量相关的可运行性问题联系起来。佐治亚理工学院IPST开发了一种测量胶体有机固体的新技术。基于分离和总有机碳(TOC)测量的新技术具有在线有效测量微生物累积的潜力,目前正在工厂规模条件下进行包装,新闻纸和薄纸验证本文将回顾制浆和再循环过程中积累的胶体如何与造纸机的可运行性相关。胶体有机材料以可见的方式表现出来,例如粘性,在机器上沉积(金属丝,箔和毡) ),孔洞,在扫描仪上堆积和不良的可运行性。本文的目的是说明如何建立协议监测这些动态胶态有机固体,并将这些测量结果与造纸机的运行性能相关联。

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