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温度对超声辅助纸张脱墨工艺的影响。

Temperature effect on an ultrasound-assisted paper de-inking process.

作者信息

Gaquere-Parker Anne C, Ahmed Ayan, Isola Temitayo, Marong Bintu, Shacklady Christopher, Tchoua Phoebe

机构信息

Chemistry Department, University of West Georgia, 1601 Maple Street, Carrollton, GA 30118, United States.

出版信息

Ultrason Sonochem. 2009 Jun;16(5):698-703. doi: 10.1016/j.ultsonch.2009.01.004. Epub 2009 Jan 24.

Abstract

The influence of temperature on an ultrasound-assisted ink removal process has been investigated. White copy paper was evenly soaked in black writing ink. After drying the paper to constant weight at 75 degrees C, ink removal was attempted under varying conditions. Results were assessed by monitoring the UV-vis absorbance of the aqueous phase and measuring the brightness of the paper. Sonication was observed to improve the brightness of the paper in the temperature range of 15-45 degrees C with an optimum effect at 35 degrees C. Monitoring UV-vis spectra of the aqueous phase provided evidence that modification of the chemical structure of the ink desorbed from the paper occured. Further investigation under the same conditions showed that ink, when not absorbed on paper, did not undergo the same chemical change. This supports the hypothesis that only the compound released from the ink absorbed onto the paper is sensitive to sonodegradation. One possible explanation is that the metal binding component of the ink stays absorbed on the paper, releasing the organic part, whose chemical structure can be altered by the effect of sonication. Inductively coupled plasma analysis was used to confirm that during the de-inking process of the paper, the metal binding component stays absorbed on the paper and only the organic part is released in the aqueous phase.

摘要

研究了温度对超声辅助油墨去除过程的影响。将白色复印纸均匀浸泡在黑色书写油墨中。在75摄氏度下将纸张干燥至恒重后,在不同条件下尝试去除油墨。通过监测水相的紫外-可见吸光度和测量纸张的亮度来评估结果。观察到在15-45摄氏度的温度范围内,超声处理可提高纸张的亮度,在35摄氏度时效果最佳。监测水相的紫外-可见光谱提供了证据,表明从纸张上解吸的油墨的化学结构发生了改变。在相同条件下的进一步研究表明,当油墨未吸附在纸张上时,不会发生相同的化学变化。这支持了仅吸附在纸张上的油墨释放出的化合物对超声降解敏感的假设。一种可能的解释是,油墨的金属结合成分保留吸附在纸张上,释放出有机部分,其化学结构可因超声作用而改变。电感耦合等离子体分析用于确认在纸张脱墨过程中,金属结合成分保留吸附在纸张上,只有有机部分释放到水相中。

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