At the 6th National Petroleum Coke-Carbon Property Chain Industry Forum held
in Tianjin from October 30th to November 1st, experts at the meeting pointed out
that the carbon industry should make full use of China's oil and coal by-product
capital to overcome the special carbon. The bottleneck of data production
techniques and the expansion of the use of carbon materials. The experts at the
meeting unanimously exaggerated that China's growth of high-end carbon materials
industry has capital advantages.
Taking coal tar as an example, the current
output is 12 million to 12.5 million tons, accounting for about 2/3 of the
global output. It is the largest supplier of coal tar pitch and coal-based
chemicals in the world, but the actual processing capacity of coal tar in China
is only 500. Ten thousand tons, the processing and assembly of a single set can
be small and evacuated, so there is a great room for growth in the use of coal
tar for deep processing of special carbon materials. Yu Wenping, general manager
of Tianjin Jinmei Carbon Material Technology Growth Co., Ltd. proposed that the
development of special carbon materials should be based on key technologies such
as selection and ratio of raw materials, preparation of raw materials,
impregnation of large-size blanks, and purification of graphitization. At
present, only a few enterprises in China can produce isostatic graphite, but
there is a big gap between the quality of products, functions and specifications
and foreign products. The majority of nuclear graphite relies on the inlet; it
is used to produce high-power graphite electrodes and ultra-high power. The
annual output of needle-shaped coke of graphite electrode is only 50,000 tons,
and the market occupation rate is very low. The center-phase carbon microsphere
data which can be used for producing lithium-ion battery data and
high-performance composite data is high in demand, less in production, and the
price is high. 180,000 yuan / ton, greatly limiting the development of coherent
products.
In addition, the production process of materials such as spherical
activated carbon and pitch-based carbon fiber used in the fields of biomedicine
and photovoltaic property also needs to be improved. Chen Guoqiang, executive
vice president and senior engineer of the China Carbon Industry Association,
believes that although China's special carbon materials have been greatly
improved in terms of production technology, equipment, product specifications
and quality, special carbon materials for high-end products have been produced.
There is still a big gap between the level of skill and the country of wealth in
Europe and America. Not only is the production range small, but the product
grade is also low. He introduced that the special carbon material is one of the
fastest growing and most promising new materials in the current industry. It has
become a high-performance engineering material that is not lacking in the
contemporary world. Special carbon materials are not only widely used in
traditional industries such as metallurgy, chemical industry, machinery, etc.,
but also can be used in aerospace, new energy, communication, bioengineering and
other emerging property categories, especially isostatic graphite materials,
used for solar crystal silicon. Key data in the areas of batteries,
fourth-generation nuclear reactors, EDM, manned aviation, energy conservation
and emission reduction.

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