An investigation on modification mechanism of CH2O-modified low temperature coal tar pitches

Qiang XIN , Shanghong HUANG

Front. Struct. Civ. Eng. ›› 2017, Vol. 11 ›› Issue (3) : 293 -300.

PDF (575KB)
Front. Struct. Civ. Eng. ›› 2017, Vol. 11 ›› Issue (3) : 293 -300. DOI: 10.1007/s11709-017-0403-0
RESEARCH ARTICLE
RESEARCH ARTICLE

An investigation on modification mechanism of CH2O-modified low temperature coal tar pitches

Author information +
History +
PDF (575KB)

Abstract

Rising oil price has brought huge cost pressure for low grade highway construction, and it is urgent to find alternative resources. At the same time, there are nearly 50000–60000 tons of low temperature coal output in inner Mongolia region, China, which has high toxicity and high polluting. To make the low temperature coal be applicable for road constructions, the formaldehyde is used as cross linking agent, the concentrated sulfuric acid is used as catalyst, and the chemical modification of low temperature coal tar pitch in Inner Mongolia region is investigated. The road performance (softening point, penetration and ductility) of modified low temperature coal are tested. Results shown that the road performance of modified low temperature coal is increased significantly. Modification mechanism of low temperature coal is studied by Scanning Electron Microscopy and other analytical tools. Results show that, in the modified low temperature coal, resin content increases and the resin fiber diameter becomes larger with the increasing of formaldehyde content.

Keywords

low temperature / coal tar pitch / modification / road performance

Cite this article

Download citation ▾
Qiang XIN, Shanghong HUANG. An investigation on modification mechanism of CH2O-modified low temperature coal tar pitches. Front. Struct. Civ. Eng., 2017, 11(3): 293-300 DOI:10.1007/s11709-017-0403-0

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

ChangHWeiWWangZYangHYaoR. Properties and application of coal pitch. Shanxi Coking Coal Science & Technology2007, (2): 39–46

[2]

Deng H. Development and application of epoxy coal pitch coating. Corrosion & Protectin199920(3): 130–131

[3]

WuJ. Application of coal pitch in highway engineering. Transpoworld2010, (5): 295–296.

[4]

Zielinski JGorecki G. Utilization of Coal-Tar Pitch in Insulating-Seal Materials. ACS Division of Fuel Chemistry, Chicago, 1993

[5]

Collin G. Production and Application of Coal-Tar Pitch. In:  Conference on Structure and Properties of Coals1991: 154.

[6]

Jing ZLin O YLiu Z. Modification on coal- tar-pitch by additives. J. of Anhui Poly Technology University200131(7): 38–40

[7]

Hany M.Sciences of carbon materials. Secretariado de publicaciones, Alicante, Spain2000

[8]

Zubkova V V. Influence of polyethylene terephthalate on the carbonisation of bituminous coals and on the modification of their electric and dielectric properties. Fuel200685(12-13): 1652–1665

[9]

Bhatia GAggarwal R KChari S SJain G C. Rheological characteristics of coal tar and petroleum pitches with and without additives. Carbon197715(4): 219–223

[10]

Aksoy A. Investigation of rutting performance of asphalt mixtures containing polymer modiers. Construction & Building Materials200712: 328–337

[11]

Riggs D M. Polymer for fibers and elastomers. ACS Symposium Series1984, 260

[12]

Hou YWang LYue PPauli TSun W. Modeling Mode I Cracking Failure in Asphalt Binder by Using Nonconserved Phase-Field Model. Journal of Materials in Civil Engineering201426(4): 684–691

[13]

Hou YWang LYue PSun W. Fracture Failure in Crack interaction of Asphalt Binder by Using a Phase Field Approach. Materials and Structures2015a48(9): 2997–3008

[14]

Hou YWang LPauli TSun W. Investigation of the Asphalt Self-healing Mechanism Using a Phase-Field Model. Journal of Materials in Civil Engineering2015b27(3): 1–13

[15]

Hou YSun FSun WGuo MXing CWu J. Quasi-brittle Fracture Modeling of Pre-Flawed Bitumen Using a Diffuse Interface Model. Advances in Materials Science and Engineering, 2016, (6): 1–7

[16]

HouYSunWDasPSongXWangLGeZ, and HuangY. Coupled Navier-Stokes Phase-Field Model to Evaluate the Microscopic Phase Separation in Asphalt Binder under Thermal Loading. Journal of Materials in Civil Engineering, 201628(10): 04016100

[17]

HouYHuangYSunFGuoM. Fractal Analysis on Asphalt Mixture Using a Two-Dimensional Imaging Technique. Advances in Materials Science and Engineering, 2016, (2): 1–7

[18]

XuH NGuoWTanY Q. Permeability of asphalt mixtures exposed to freeze-thaw cycles. Cold Regions Science and Technology, 2016123(3): 99–106

[19]

XuH NGuoWTanYQ. Internal structure evolution of asphalt mixtures during freeze-thaw cycles. Materials and Design, 201586(12): 436–446

[20]

XuH NTanY QYaoX A. X-ray Computed Tomography in hydraulics of asphalt mixtures: Procedure, accuracy, and application. Construction and Building Materials, 2016108(4): 10–21

RIGHTS & PERMISSIONS

Higher Education Press and Springer-Verlag Berlin Heidelberg

AI Summary AI Mindmap
PDF (575KB)

2415

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/