Environment·Health·Safety

Application of organically modified calcium sulfate whiskers in asphalt modification

  • CHEN Feng ,
  • FENG Kang ,
  • LI Ming ,
  • SHEN Haojie ,
  • TIAN Chengtao ,
  • TANG Yuan ,
  • LI Zhili ,
  • HE Dongsheng
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  • 1.School of Resources & Safety Engineering, Wuhan Institute of Technology, Wuhan 430073, China
    2.Hubei Sanning Chemical Industry Co. , Ltd. , Yichang 443200, China

Received date: 2023-05-11

  Online published: 2024-03-14

Abstract

To obtain the modified asphalt with better mechanical properties and improve the pavement performance of traditional matrix asphalt,the application of organically modified calcium sulfate whiskers(CSW),prepared from phosphogypsum,in asphalt modification were systematically studied.Through the materials preparation,analysis and testing,as well as mixture testing,changes of the three main indexes,apparent viscosity,and high-temperature performance of asphalt before and after modification using phosphogypsum and organically modified CSW were analyzed.Furthermore,the pavement performance of different bitumen mixtures was explored.The results indicated that the organic modifiers were mainly acted on the surface of CSW in the form of chemical adsorption.The whisker materials modified with combined organic modifiers were more compatible with asphalt.The introduction of organically modified CSW enhanced the bonding strength between asphalt and whiskers to a certain extent and improved the high-temperature stability,however,its low-temperature performance had been relatively reduced.The results were confirmed furthermore by the Marshall stability tests,freeze-thaw splitting tests,and wheel tracking tests.The water stability and high-temperature stability of the modified asphalt mixtures by phosphogypsum or organically modified CSW were better than those in matrix asphalt,and the pavement performance of the asphalt modified by organically modified CSW became better.

Cite this article

CHEN Feng , FENG Kang , LI Ming , SHEN Haojie , TIAN Chengtao , TANG Yuan , LI Zhili , HE Dongsheng . Application of organically modified calcium sulfate whiskers in asphalt modification[J]. Inorganic Chemicals Industry, 2024 , 56(3) : 125 -130 . DOI: 10.19964/j.issn.1006-4990.2023-0265

References

1 刁梦娜.磷石膏晶须对沥青性能的改性研究[D].贵阳:贵州大学,2015.
  DIAO Mengna.Study on performances of phosphogypsum whiskers modified asphalt[D].Guiyang:Guizhou University,2015.
2 李军代.硫酸钙晶须在沥青路面应用的系统性研究[J].华东交通大学学报201330(6):72-77.
  LI Jundai.Systematic study on the application of calcium sulfate whisker in asphalt pavement[J].Journal of East China Jiaotong University201330(6):72-77.
3 谭明洋,相利学,李国龙.磷石膏在道路工程应用的研究现状[J].广州化工201644(8):37-38.
  TAN Mingyang, XIANG Lixue, LI Guolong.Research status on application of phosphogypsum in road engineering[J].Guangzhou Chemical Industry201644(8):37-38.
4 FAN Taotao, WANG Xiushan, GAO Yang,et al.Investigating the interaction mechanism and effect of different calcium sulfate whiskers on performance of asphalt binder[J].Construction and Building Materials2019224:515-533.
5 田泽峰,陈晓龙,韩跃新,等.CaSO4晶须改性沥青及其混合料的路用性能研究[J].矿冶工程2006(8):193-198.
  TIAN Zefeng, CHEN Xiaolong, HAN Yuexin,et al.Research on the road performance of CaSO4 whisker modified asphalt and its mixture[J].Mining and Metallurgical Engineering2006(8):193-198.
6 马继红,冯传清.硫酸钙晶须在道路改性沥青中的应用研究(Ⅰ)[J].石油沥青200519(6):21-25.
  MA Jihong, FENG Chuanqing.The application study of calcium sulfate whisker in road modified asphalt(Ⅰ)[J].Petroleum Asphalt200519(6):21-25.
7 沈森杰,王修山,周恒宇,等.表面改性硫酸钙晶须对沥青路用性能的影响[J].水利规划与设计2021(6):101-106.
  SHEN Senjie, WANG Xiushan, ZHOU Hengyu,et al.Effect of surface modified calcium sulfate crystal on asphalt pavement performance[J].Water Resources Planning and Design2021(6):101- 106.
8 李铭,李智力,张泽强,等.混合脂肪酸钠辅助制备硫酸钙晶须[J].无机盐工业202254(6):66-72.
  LI Ming, LI Zhili, ZHANG Zeqiang,et al.Preparation of calcium sulfate whiskers assisted by mixed sodium fatty acid[J].Inorganic Chemicals Industry202254(6):66-72.
9 唐远,朱奥妮,陈琲琲,等.我国战略性非金属矿产分离技术进展[J].化工矿物与加工202251(11):19-31,37.
  TANG Yuan, ZHU Aoni, CHEN Beibei,et al.Research and development of technologies for separating strategic non-metallic minerals in China[J].Industrial Minerals & Processing202251(11):19-31,37.
10 崔荣政,白海丹,高永峰,等.磷石膏综合利用现状及“十四五”发展趋势[J].无机盐工业202254(4):1-4.
  CUI Rongzheng, BAI Haidan, GAO Yongfeng,et al.Current situation of comprehensive utilization of phosphogypsum and its development trend of 14th Five-Year Plan[J].Inorganic Chemicals Industry202254(4):1-4.
11 张磊,李蒙,向文国,等.磷石膏循环流化床煅烧分解工艺可行性分析[J].无机盐工业202355(6):85-91.
  ZHANG Lei, LI Meng, XIANG Wenguo,et al.Feasibility analysis of calcination and decomposition process of phosphogypsum in circulating fluidized bed[J].Inorganic Chemicals Industry202355(6):85-91.
12 董泽,翟延波,任志威,等.磷石膏建材资源化利用研究进展[J].无机盐工业202254(4):5-9.
  DONG Ze, ZHAI Yanbo, REN Zhiwei,et al.Research progress on phosphogypsum utilization in building materials[J].Inorganic Chemicals Industry202254(4):5-9.
13 中华人民共和国交通运输部. 公路工程沥青及沥青混合料试验规程: [S].北京:人民交通出版社,2011.
14 沈金安.沥青及沥青混合料路用性能[M].北京:人民交通出版社,2001.
15 于江,冯娟,李林萍.温拌剂KSH对新疆两种沥青黏度的影响[J].公路工程201439(2):84-87,104.
  YU Jiang, FENG Juan, LI Linping.Effects of temperature and mixture of KSH of two kinds of Xinjiang asphalt viscosity[J].Highway Engineering201439(2):84-87,104.
16 许新权,唐胜刚,杨军.粉胶比对沥青胶浆高低温性能的影响[J].长安大学学报(自然科学版)202040(4):14-26.
  XU Xinquan, TANG Shenggang, YANG Jun.Influence of filler-asphalt ratio on high-and-low-temperature performance of asphalt mortar[J].Journal of Chang′an University(Natural Science Edition)202040(4):14-26.
17 XIANG Yu, XIE Youjun, LONG Guangcheng.Effect of basalt fiber surface silane coupling agent coating on fiber-reinforced asphalt:From macro-mechanical performance to micro-interfacial mechanism[J].Construction and Building Materials2018179:107-116.
18 孟勇军,郭贺源,徐锐光,等.热老化作用下石墨烯橡胶复合改性沥青性能研究[J].功能材料202051(8):8001-8006.
  MENG Yongjun, GUO Heyuan, XU Ruiguang,et al.Study on the properties of graphene modified rubber asphalt under the effect of thermal aging[J].Journal of Functional Materials202051(8):8001-8006.
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