热活化氧化物半导体(TASC)消除打印机中VOC的研究

Tsukada Yuichiro, Suzuki Yusuke, H. Takahashi, J. Mizuguchi
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引用次数: 0

摘要

目前,打印机中的熔剂、喷墨打印机中的溶剂油墨或湿式POD系统中产生的挥发性有机化合物(VOCs)造成了环境问题。因此,对高效的消除技术的需求很大。在本文中,我们将介绍一种基于热激活半导体(TASC)的新型VOC消除系统,其特点是结构紧凑,重量轻,成本低。由于这些吸引人的特点,该系统可以很容易地集成到办公室打印机或湿式POD系统。TASC技术可以追溯到我们偶然发现半导体在350-500℃加热时表现出明显的氧化效应;而在室温下是不活跃的。该现象已应用于VOCs的完全分解。破坏机制由以下三个步骤组成:1。氧化,即自由基的产生;自由基分裂,即大分子的分裂;与氧反应,即完全燃烧生成h2o和co2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VOC in Printers and its Elimination by Means of Thermally Activated Oxide Semiconductors (TASC)
VOCs(volatile organic compounds)arising from fusers in printers, solvent inks in inkjet printers, or wet POD systems cause environmental problems at present. Therefore, e ffi cient elimination technologies are in high demand. In this paper, we will present our novel VOC elimination system based upon thermally activated semiconductors(TASC) characterized by compact, lightweight, and low costs. Because of these appealing features, this system can easily be integrated into o ffi ce printers or wet POD systems. The TASC technology dates back to our accidental finding that the semiconductor exhibits significant oxidative e ff ects when heated at 350-500℃ ; whereas quite inactive at room temperature. The present phenomenon has been applied to the complete decomposition of VOCs. The destruction mechanism is composed of the following three steps : 1. oxidation, i.e. creation of radicals, 2. radical splitting, i. e. fragmentation of the giant molecule, and 3. reaction with oxygen, i. e. complete combustion into H 2 O and CO 2 .
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