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Six Directions for the Future Development of China's Aluminum Industry

Time:2015-03-17

Source: Yangtze River Nonferrous Metal Network


1. Implementing Energy Conservation and Emission Reduction


With advanced and applicable new cathode structure aluminium electronics technology, advanced and applicable alumina energy saving technology and advanced aluminium processing technology, the existing production capacity of electrolytic aluminium, alumina and aluminium processing is technologically reformed to improve the level of industrial technology and equipment, reduce material and energy consumption, increase varieties and improve quality.


2. Developing high-quality products


Relying on superior enterprises, industrial agglomeration areas and major projects, we will actively promote the industrialization of new technologies and large-scale manufacturing. Focus on the development of aluminum alloy plate for aerospace, high performance semi-solid aluminum alloy billet and parts, turbine engine impeller material, 6 series automobile aluminum alloy plate, 2 series aluminum alloy, 7 series aluminum alloy, Al-Li alloy, aluminum alloy plate for cryogenic equipment, large-scale aluminum for high-speed trains and freight trains, weldable aluminum alloy sheet, ultra-pure aluminum, high-pressure anode aluminum foil and deep processing. And so on. High-precision aluminium processing products are the direction of Zhongwang's current layout.


3. Development of Bauxite Resources


Through the exploration and development of resources at home and abroad, we can effectively increase the reserves of domestic resources and the resources of overseas rights and interests. Speed up the construction of overseas bauxite supply base, ease the pressure of domestic bauxite supply, break the monopoly of international bauxite resources, solve the bottleneck of bauxite supply, and maintain the sustainable development of China's aluminium industry.


IV. Promoting Circular Economy


Following the concept of circular economy, we should promote cleaner production, control pollutant production and discharge from the source and the whole process, and reduce resource consumption. The comprehensive utilization of red mud, waste lining of electrolyzer and high alumina coal resources should be strengthened to improve the level of comprehensive utilization of resources. We will improve the recycling system of renewable resources and promote the large-scale and efficient utilization of renewable resources.


5. Implementing the Going Out Strategy


Bauxite, coal mine and other disposable resources matched with the aluminum industry are scarce or non-renewable. Strategic competition or control will undoubtedly focus on the reserve, integration, allocation, orderly development and efficient utilization of strategic resources. Under the situation of scarcity of domestic resources, increasingly fierce market competition and saturation, it is necessary to implement the strategy of "going out", aiming at countries and regions with relatively weak production technology and abundant bauxite resources, and expanding overseas markets through direct or indirect control of bauxite resources and overseas construction of factories or EPC general contracting.


6. Accelerating Innovation and Upgrading Products


According to the 12th Five-Year Plan of the aluminium industry, the comprehensive power consumption of aluminium ingots will be reduced to less than 13300 kWh/t at the end of the 12th Five-Year Plan. Under the double pressure of arduous task of energy saving and emission reduction and low-cost competition, the technological innovation of the aluminium industry will usher in a new development peak. In the long run, the direction of technological innovation mainly centers on the following aspects: low carbon, low energy consumption, low pollution, long life and efficient green smelting technology, localization and intellectualization of key aluminium equipment, recycling and efficient utilization of intermediate products, subsidiary products and wastes in aluminium products, industrialization of bauxite substitutes and development of aluminium alloy materials with high strength and high damage tolerance.


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