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Application of Cellulose-Based Solid Acid in Absorption of Heavy Metal Ions from Printing Waste Water

机译:基于纤维素的固体酸在印刷废水中的重金属离子的吸收中的应用

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Traditional printing (lithography, gravure, letterpress, PCB etc.) produce a large of industrial wastewater from washing printing plate, rubber cloth and circuit boards corrosion. These waste water mainly contain copper ion and silver ions, which is difficult to process under acid condition. Taking effective methods to remove the metal ions in waste water has become a hotspot in research. In this paper, cellulose-based solid acid (CCSA) was prepared using microcrystalline cellulose and 98% concentrated sulfuric acid as raw materials. The characterization of CCSA was first analyzed by acid strength and Fourier-transform infrared spectrometer (FTTR). Infrared spectrogram display that sulfonic group was successfully connected on cellulose-base. Acid value measurement indicates that the total acidic group of CCSA decline from 1.87 to 1.02 mmol/g with carbonization temperature rise. Subsequently, effects of carbonization temperature on adsorption performance to Cu~(2+) and Ag~+ were investigated. The result shows that carbonization temperature at 400 °C reach best absorptivity of 80 mg/g (Cu~(2+)) and 247 mg/g (Ag~+) respectively. However, with carbonization temperature rise to 600 °C absorption quantity was just 66 mg/g (Cu~(2+)) and 158 mg/g (Ag~+) respectively.
机译:传统的印刷(光刻,凹版印刷,凸版,PCB等)生产来自洗涤印刷版,橡胶布和电路板腐蚀的大量工业废水。这些废水主要含有铜离子和银离子,难以在酸条件下加工。采取有效的方法去除废水中的金属离子已成为研究中的热点。本文使用微晶纤维素和98%浓硫酸作为原料制备纤维素的固体酸(CCSA)。首先通过酸强和傅立叶变换红外光谱仪(FTTR)分析CCSA的表征。红外谱图显示磺酸基团在纤维素碱上成功连接。酸值测量表明,CCSA的总酸性基团从1.87升至1.02mmol / g,碳化温度升高。随后,研究了碳化温度对Cu〜(2+)和Ag〜+的吸附性能的影响。结果表明,400℃的碳化温度达到80mg / g(Cu〜(2+))和247mg / g(Ag〜+)的最佳吸收率。然而,随着碳化温度升至600°C吸收量,仅为66mg / g(Cu〜(2+))和158mg / g(Ag〜+)。

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