从液态煤焦化产品的香豆素-独立馏分制得的沥青粘合剂改性剂

IF 3.2 3区 材料科学 Q2 ENGINEERING, CHEMICAL
Serhiy Pyshyev , Yuriy Prysiazhnyi , Yuriy Demchuk , Guri Isaiah Borbeyiyong , Nataliya Vytrykush
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引用次数: 0

摘要

在道路沥青中加入改性剂以增强其性能。目前工业改性剂的唯一显著缺点是成本相对较高。为解决这一问题,笔者提出了一种新的途径,即利用相对廉价的原料获得有效的沥青胶粘剂,即煤焦化液产品。因此,以煤炼焦液体产物的馏分(汽油馏分和煤焦油馏分)为原料,采用离子共聚法制备了香豆素-茚树脂(CIR)和香豆素-茚-咔唑树脂(CICR)。当添加量为7wt %时,CIR提高了沥青的耐温性,并使其粘接性能提高了一倍。然而,CIR降低了沥青的塑性,因此为了生产聚合物改性沥青(PMB),必须使用廉价的增塑剂(褐煤有机物质分解后的石油焦油和树脂)。CICR对沥青的耐温性能几乎没有影响,其塑性略有改善,在1% wt.%的含量下,与玻璃的附着力增加一倍。CIR和CICR的使用将使获得相对便宜的PMB成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adhesive modifiers for bitumen obtained from coumarone-indene fractions of liquid coal coking products
Modifiers are added to road bitumens to enhance their properties. The only significant disadvantage of current industrial modifiers is their relatively high cost. The authors develop a new way to solve this problem by using relatively cheap raw materials for obtaining effective adhesive modifiers for bitumen, namely, coal coking liquid products. Therefore, coumarone-indene resin (CIR) and coumarone-indene-carbazole resin (CICR) were obtained by ionic co-oligomerization based on fractions extracted from liquid products of coal coking (gasoline fractions and coal tar). When added in an amount of 7 wt%, CIR increases temperature resistance and doubles the adhesive properties of bitumens. However, CIR degrades the plasticity of bitumens, so to produce polymer-modified bitumen (PMB) cheap plasticizers (petroleum tar and resin from the decomposition of the organic mass of brown coal) must be used. CICR has practically no effect on the temperature resistance of bitumens, slightly improves their plasticity, and doubles the adhesion to glass at a content of 1 % wt.%. The CIR and CICR use will make it possible to obtain relatively inexpensive PMB.
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来源期刊
International Journal of Adhesion and Adhesives
International Journal of Adhesion and Adhesives 工程技术-材料科学:综合
CiteScore
6.90
自引率
8.80%
发文量
200
审稿时长
8.3 months
期刊介绍: The International Journal of Adhesion and Adhesives draws together the many aspects of the science and technology of adhesive materials, from fundamental research and development work to industrial applications. Subject areas covered include: interfacial interactions, surface chemistry, methods of testing, accumulation of test data on physical and mechanical properties, environmental effects, new adhesive materials, sealants, design of bonded joints, and manufacturing technology.
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