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道路沥青的硫化反应

REACTION BETWEEN SULFUR AND ASPHALT FOR PAVEMENT

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【作者】 金鸣林杨俊和史美仁冯安祖钱湛芬

【Author】 Jin Minglin Yang Junhe Shi Meiren Feng Anzu and Qian Zhanfen (Shanghai Institute of Applied Science,2 00233 Shanghai; Nanjing University of Chemical Technology,2 10009 Nanjing; Anhui Industrial University,243 002 Maanshan)

【机构】 上海应用技术学院南京化工大学安徽工业大学 博士、副教授200233上海博士、副教授教授、博士生导师210009 南京教授243000马鞍山

【摘要】 用化学分析与仪器分析(1H-NMR,XPS与凝胶色谱)相结合的方法探讨了道路沥青与元素硫之间的反应行为以及改质后沥青中硫的存在形式.结果显示硫与沥青的反应一是硫与沥青分子交联,生成分子量大的含硫基团组分,并显著改善沥青的塑性、延展性以及亲水性;二是硫与沥青的反应主要发生在侧链α碳原子位置上,随反应温度的升高也夺取β,γ侧链碳原子上的氢.硫与沥青反应使沥青中胶质含量下降,沥青质增加,重均与数均分子量增加.XPS测定发现沥青原料中的S原子以噻吩与亚砜结构形态存在,硫化反应后S主要以元素硫和结合硫形态存在.

【Abstract】 Reaction behavior between sulfur and asphalt for pavement and sulfur type in asphalt modified by sulfur were investigated by chemical and instrumental analysis (1H-NMR. XPS, Gel-chromatography). Results showed that cross linking reaction occurred and ,at the same time, component of containing high molecular weight sulfur groups was formed. The remarkable advantage of the modification was the improvement of the plasticity, durability and hydrophilicity of the asphalt for pavement. The results also indicated that the reaction between sulfur and asphalt mainly occurred in α carbon atoms, however, as the reaction temperature increased, the reaction might occur inβ,γ as well as aromatic carbon atoms. The modification resulted in the decrease of resin content and increase of asphaltene content and average molecular weight. The de termination by XPS found that sulfur atoms in initial sample existed in types of thiophene and sulfoxide, however, the main types of sulfur in modified asphalt were sulfur atom and cross linking sulfur.

【关键词】 道路沥青改质
【Key words】 asphalt for pavementsulfurmodification
【基金】 攀枝花钢铁集团公司科技攻关项目.
  • 【分类号】TQ522.65
  • 【被引频次】25
  • 【下载频次】272
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