Synthetic graphite market research from 2020 to 2024 trends, driving forces, strategies, applications and competitive landscape forecast

Synthetic graphite market research from 2020 to 2024 trends, driving forces, strategies, applications and competitive landscape forecast

This "Synthetic Graphite Market" research report provides business experts with effective information about the growth rate of the synthetic graphite market, the emerging business environment and the latest business-centric applications. This synthetic graphite industry report lists and studies major players, provides insights into strategic industries, and analyzes key factors that affect market dynamics. The focus of the synthetic graphite market report is to describe and analyze its value, market share, market competition pattern, SWOT analysis and development plans for the next few years. The report also provides an in-depth analysis of the synthetic graphite market, focusing on factors such as driving factors, constraints, trends and opportunities.
This report studies the global synthetic graphite market size, industry status and forecast, competitive landscape and growth opportunities.
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Synthetic graphite is used as the negative electrode component of lithium-ion batteries. Although lithium is the most famous component of lithium-ion batteries, there is much more graphite in batteries than lithium. The battery anode requires coated spherical graphite with a purity of more than 99.9%. Batteries are one of the few applications where natural and synthetic graphite compete with each other. In order to reduce production costs, battery manufacturers have shifted their focus from natural graphite to synthetic graphite. The properties of graphite (such as high surface area and layered crystal structure) make it suitable for use as a negative electrode material. Insert lithium ions. Certain battery technologies require graphite to be close to 100% pure. The sales growth of electronics and electric vehicles is expected to drive the sales of lithium-ion batteries, which in turn is expected to drive the consumption of lithium-ion batteries. The next few years.
China continues to dominate the production and demand of synthetic graphite. Almost all stages of the lithium-ion battery manufacturing chain are concentrated in China, and China is by far the largest and fastest growing lithium-ion battery market, paving the way for the growth of the synthetic graphite market. Synthetic graphite is used in electrodes in the steelmaking industry. Globally, China has the largest share in the consumption and production capacity of graphite electrodes. China has produced nearly 520,000 tons of graphite electrodes, of which nearly 62% are used for domestic consumption purposes. The production capacity of electric arc furnaces has been increasing recently and is expected to increase by nearly 70 million tons by the beginning of 2019. The Chinese government is also committed to developing environmentally friendly steel production methods, and recently announced a goal of producing 20% ​​of the country’s steel through electric arc furnaces by 2020. This marks that the electric arc furnace production capacity is three times that of 2017. The expanding residential construction industry is expected to support domestic demand for non-ferrous alloys and steel, which will become a positive factor for growth in demand for synthetic graphite in the next few years.
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4 Market dynamics 4.1 Driving factors 4.1.1 Increasing demand for electric vehicles 4.1.2 High-purity synthetic graphite 4.1.3 Other driving factors 4.2 Constraints 4.2.1 High cost compared with natural graphite 4.2.2 Strict environmental regulations 4.3 Industry value chain analysis 4.4 Analysis of the Five Forces of Porters 4.4.1 Bargaining Power of Suppliers 4.4.2 Bargaining Power of Consumers 4.4.3 Threats of New Entrants 4.4.4 Threats of Alternative Products and Services 4.4.5 Degree of Competition 4.5 Raw Material Analysis 4.6 Regulatory Policies analysis
5 Market Segmentation 5.1 Application 5.1.1 Metallurgy 5.1.1 Parts 5.1.3 Battery 5.1.4 Nuclear 5.1.5 Other Applications 5.2 Geographical Region 5.2.1 Asia-Pacific Region 5.2.1 China 5.2.1.2 India 5.2.1.3 Japan 5.2.1 . 4 South Korea 5.2.1.5 ASEAN countries 5.2.1.6 Other Asia-Pacific 5.2.2 Europe 5.2.2.1 Germany 5.2.2.2 France 5.2.2.3 Italy 5.2.2.4 United Kingdom 5.2.2.5 Russia 5.2.2.6 Rest of Europe 5.2.3 North America 5.2.3.1 United States 5.2.3.2 Canada 5.2.3.3 Mexico 5.2.3.4 Other North America 5.2.4 South America 5.2.4.1 Brazil 5.2.4.2 Argentina 5.2.4.3 Other South America 5.2.5 Middle East and Africa 5.2.5.1 Saudi Arabia 5.2.5.2 South Africa 5.2. 5.3 Middle East and Rest of Africa
6 Competitive environment 6.1 M&A, joint ventures, cooperation and agreements 6.2 Market share analysis** 6.3 Strategies adopted by leading participants 6.4 Company profile 6.4.1 Asbury Carbons 6.4.2 BTR New Energy Materials Co., Ltd. 6.4.3 Shanshan Technology 6.4.4 Shenzhen Sino Industrial Development Co., Ltd. 6.4.5 Hitachi Chemical Co., Ltd. 6.4.6 Mitsubishi Chemical Company 6.4.7 Ames Graphite & Carbo 6.4.8 Lianyungang Jinli Carbon Co., Ltd. 6.4.9 Mersen6.4.10 Qingdao Kopfeim Graphite Co., Ltd. Shamokin Carbons6.4.12 Showa Denko KK6.4.13 Jiangxi Zichen Technology Co., Ltd.
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Post time: Aug-14-2020