Analysis of Graphite Electrode Market Scale in 2020-Growth Factors, Dynamics, Trends, Demand Status, and Main Regional Shares to 2024 | Industrial Research Corporation

Analysis of Graphite Electrode Market Scale in 2020-Growth Factors, Dynamics, Trends, Demand Status, and Main Regional Shares to 2024 | Industrial Research Corporation

The 2020 "Graphite Electrode Market" report provides a comprehensive analysis of the graphite electrode industry by type, application and region. It shows the graphite electrode market in 2020-2024 in terms of production, consumption, supply, gross profit margin, and revenue of major players in the industry. In addition, the graphite electrode market report covers the market size, share and industry growth rate of each region.
The graphite electrode market includes leading manufacturers on the basis of sales, revenue, price and gross margin.
The Graphite Electrode Market Report provides an in-depth analysis of the development, current trends, industry policies and regulations in each geographic region. It includes analysis of upstream raw materials, downstream demand and current market dynamics. In addition, the graphite electrode market report provides an in-depth understanding of the graphite electrode industry during 2020-2024.
This report studies the global graphite electrode market size, industry status and forecast, competitive landscape and growth opportunities.

– The electric arc furnace melts scrap steel, DRI, HBI (hot briquette iron, compacted DRI) or solid pig iron to produce steel. In the EAF route, electricity provides energy to melt raw materials. – Graphite electrodes are mainly used in the electric arc furnace (EAF) steelmaking process to melt scrap steel. The electrode is made of graphite because of its ability to withstand high temperatures. In an electric arc furnace, the tip of the electrode can reach 3,000 degrees Fahrenheit, which is half the surface temperature of the sun. The size of the electrode varies greatly, ranging from 75mm in diameter to a maximum of 750mm, and the length does not exceed 2800mm. -The soaring price of graphite electrodes has pushed up the cost of electric furnace plants. It is estimated that the average EAF consumes about 1.7 kg of graphite electrodes to produce one ton of steel. Since 2017, the price of graphite electrodes in China has risen by more than 700%. – The reason for the price increase is the consolidation of the industry. Globally, China's production capacity is stopped due to environmental regulations and the global electric arc furnace production growth. It is estimated that this will increase the production cost of electric arc furnaces by 1-5%, depending on the purchasing practices of steel mills, which may limit steel production, because graphite electrodes cannot be replaced in electric arc furnace operations. – In addition, China’s air treatment policy is not only the steel industry, but also the strong supply curbs of coal, zinc and other industries that produce particulate pollution have also exacerbated pollution. As a result, China's steel production has fallen sharply in the past few years. However, this is expected to have a positive impact on steel prices and steel mills in the region, enabling them to enjoy higher profit margins. – During the forecast period, the above factors are expected to drive the market.
– The Asia-Pacific region occupied market share in 2018. As far as the global scenario is concerned, in terms of the consumption and production capacity of graphite electrodes, China occupies the largest share. China has produced nearly 520,000 tons of graphite electrodes, of which nearly 62% are used for domestic consumption. As of 2015, the production and demand of graphite electrodes in China have maintained steady growth. -Due to the closure of nearly 140 million tons of induction electric arc furnace and micro blast furnace production capacity, the output of graphite electrodes declined in 2015. The result of government regulations on high-polluting industries aimed at solving environmental problems. -The growth of motor vehicle production and the development of the residential construction industry are expected to meet domestic demand for non-ferrous alloys, iron and aluminum. Steel, which is a positive factor in the growth of demand for graphite electrodes in the next few years. The current production capacity of ultra-high voltage graphite electrodes in China is about 50,000 tons. In the long run, China's demand for ultra-high voltage electrodes is also expected to increase significantly. In the later stages of the forecast period, it is expected that there will be more than 50,000 tons of ultra-high voltage graphite electrodes.
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4 Market dynamics 4.1 Driving factors 4.1.1 Strong growth in steel production in emerging countries 4.1.2 Increase in China's scrap supply 4.2 Constraints 4.2.1 Soaring prices of needle coke, tight supply and other crises 4.2.2 Other constraints 4.3 Industrial value chain analysis 4.4 Porter’s five forces analysis 4.4.1 Supplier’s bargaining power 4.4.2 Consumers’ bargaining power 4.4.3 Threats from new entrants 4.4.4 Threats from alternative products and services 4.4.5 Degree of competition
5 Market Segmentation 5.1 Application 5.1.1 Electric Arc Furnace 5.1.2 Ladle Furnace 5.1.3 Non-steel Application 5.2 Electrode Grade 5.2.1 Ultra High Power (UHP) 5.2.2 High Power (SHP) and Conventional Power (RP) 5.3 Geography Location 5.3.1 Asia Pacific 5.3.1.1 China 5.3.1.2 India 5.3.1.3 Japan 5.3.1.4 South Korea 5.3.1.5 Rest of Asia Pacific 5.3.2 North America 5.3.2.1 United States 5.3.2.2 Mexico 5 .3.2.3 Canada 5.3.2.4 North America Other regions 5.3.3 Europe 5.3.3.1 Germany 5.3.3.2 United Kingdom 5.3.3.3 Italy 5.3.3.4 France 5.3.3.5 Other regions of Europe 5.3.4 South America 5.3.4.1 Brazil 5.3.4.2. Argentina 5.3.4.3. Other regions of South America 5.3. 5 Middle East and Africa 5.3.5.1 Saudi Arabia 5.3.5.2 South Africa 5.3.5.3 Middle East and other parts of Africa
6 Competitive environment 6.1 M&A, joint ventures, cooperation and agreements 6.2 Market share analysis** 6.3 Strategies adopted by major players 6.4 Company profile 6.4.1 ENERGOPROM Group 6.4.2 Fangda Carbon New Material Technology Co., Ltd. 6.4.3 GrafTech International 6.4.4 Graphite India Co., Ltd. 6.4.5 HEG Co., Ltd. 6.4.6 Jilin Carbon Co., Ltd. 6.4.7 Kaifeng Carbon Co., Ltd. 6.4.8 Nantong Yangzi Carbon Co., Ltd. 6.4.9 Japan Carbon Co., Ltd. 6.4.10 SANGRAF International Inc.6.4.11 SEC CARBON LIMITED6.4.12 SHOWA DENKO KK6.4.13 Tokai Carbon Co., Ltd.
7 market opportunities and future trends 7.1 Increase steel production through China's electric arc furnace technology
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Post time: Sep-10-2020