Needle coke,Magnetic field,Resistance,Free radical
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New Carbon Materials 2011, 26(6) 429-434 DOI:     ISSN: 1007-8827 CN: 14-1116/TQ

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The influence of a magnetic field during carbonization on the microstructure and electrical conductivity of needle cokes
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Keywords
Needle cokezz')" href="#">line-height: 150%">Needle coke
Magnetic field
Resistance
Free radical
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The influence of a magnetic field during carbonization on the microstructure and electrical conductivity of needle cokes

SUN Quan| WANG Bao-cheng|  ZHANG Huai-ping| LI Xiang-lan, BAI Ying-bin

College of Materials Science and Engineering, Taiyuan University of Technology, Taiyuan 030024|China

Abstract

The influence of a magnetic field during thermal polycondensation and carbonization of intermediate coal tar pitch on the electrical conductivity of the resulting needle cokes was explored using a pressure vessel under an external magnetic field. The microstructure of the cokes was analyzed by X-ray diffraction and polarized light microscopy. The electrical conductivity was measured during the coke forming process. Results indicated that aromatic molecules were ordered under the magnetic field during carbonization, leading to an improvement in the microcrystalline structure and an increase in the electrical conductivity of the cokes. Resistance-temperature curves also indicated that the magnetic field can accelerate the polymerization rate and reduce the dependence of the polymerization on temperature, which can be explained by the Zeeman effect.

Keywords Needle cokezz')" href="#"> line-height: 150%">Needle coke   Magnetic field   Resistance   Free radical
  
Received 2011-03-25 Revised 2011-12-31 Online:  
DOI:
Fund:

National Natural Science Foundation of China(21043009).

Corresponding Authors: WANG Bao-cheng, Professor. Tel: +86-351-6010916,
Email: w-baocheng@163.com
About author: SUN Quan (1984-), male, Master Student, engage in the research of new carbon materials.

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