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首页> 外文期刊>Waste Management >A chemical milling process to produce water-based inkjet printing ink from waste tire carbon blacks
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A chemical milling process to produce water-based inkjet printing ink from waste tire carbon blacks

机译:化学铣削过程,生产废气炭黑的水性喷墨印刷油墨

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摘要

In this study, a chemical milling process is developed to convert carbon residues from pyrolyzed waste tires into valuable water-based inkjet printing inks. The residues after waste tire pyrolysis were first sieved to remove ash components and ground into powder (~80 μm). The resulting waste tire carbon blacks (TCB) processed by regular dry or wet milling with the help of compatible solvent can only produce particle sizes around 250 nm. To further reduce particle size under the same mechanical energy, aqueous potassium hydroxide was used in the milling process to leach silica in TCB to create loose and vulnerable structure. Moreover, an ionic surfactant, poly (sodium 4-styrenesulfonate) (PSS), was used to decorate the TCB surface and to inhibit particle aggregation. After chemical milling, the PSS/TCB had a primary particle size around 50 nm and a hydraulic diameter around 110 nm. The PSS/TCB suspension possessed a high zeta potential of -73 mV to stably disperse in water for more than 30 days. To help adhesion of the ink on substrates, the PSS/TCB particles were further mixed with waterborne polyur-ethane (WPU). The WPU/PSS/TCB ink could be inkjet printed into various black patterns, which showed a higher blackness (jetness value = 342.83) than commercial black inks. Moreover, the printed patterns were water-proof and had a pencil scratch hardness of 4H. In summary, this study provides a guideline to convert waste carbon materials into useful printing supplies, and offers a potential application for waste tire recycling.
机译:在这项研究中,开发了一种化学铣削方法以将来自热解的废气轮胎的碳残留物转化为有价值的水基喷墨印刷油墨。首先筛分废轮胎热解后的残留物,以将灰分成分除去粉末(〜80μm)。通过常规干燥或湿铣削的所得废轮胎炭黑(TCB)在相容的溶剂的帮助下只能产生粒度约250nm。为了进一步降低相同的机械能下的粒度,将氢氧化钾水溶液用于研磨过程中,以在TCB中浸出二氧化硅,以产生松散和脆弱的结构。此外,使用离子表面活性剂,聚(4-苯乙烯磺酸钠)(PSS)来装饰TCB表面并抑制颗粒聚集。化学研磨后,PSS / TCB的一次粒径约为50nm,液压直径约为110nm。 PSS / TCB悬浮液具有-73mV的高Zeta电位,以稳定地分散在水中超过30天。为了帮助墨水在基材上的粘附,PSS / TCB颗粒与水性聚乙烷(WPU)进一步混合。 WPU / PSS / TCB墨水可以是印刷成各种黑色图案的喷墨,显示比商业黑色油墨更高的黑色(喷射值= 342.83)。此外,印刷图案是防水的,铅笔划痕硬度为4小时。总之,本研究提供了将废碳材料转化为有用的印刷耗材的指导,并为废轮胎回收提供潜在的应用。

著录项

  • 来源
    《Waste Management》 |2021年第3期|64-70|共7页
  • 作者

    I-Feng Wu; Ying-Chih Liao;

  • 作者单位

    Department of Chemical Engineering National Taiwan University Taipei Taiwan;

    Department of Chemical Engineering National Taiwan University Taipei Taiwan Advanced Research Center of Green Materials Science & Technology National Taiwan University Taipei Taiwan Center of Strategic Materials Alliance for Research and Technology National Taiwan University Taipei Taiwan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Waste tires; Carbon black; Chemical milling; Water-based ink; Inkjet printing;

    机译:浪费轮胎;碳黑;化学铣削;水性油墨;喷墨打印;

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