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As a heavy user of electricity the primary aluminium smelting industry is a leading example of the effects of variations in energy costs. This title tells the story that with the rise in energy costs, three regions—Japan, the United States, and Western Europe –have become high-cost locations for primary aluminium production relative to three other regions—Australia, Brazil, and Canada. First published in 1988, this volume presents an analysis of the public policy choices regarding the aluminium industry and electric power in both low-cost power countries and high-cost power countries. The World Aluminium Industry in a Changing Energy World is ideal for policy makers and students interested in environmental studies.
Industrialization is an integral part of economic development process. Its importance is such that for some countries, or rather their governments, it is synonymous with development. However, the special characteristics of developing countries, their differing resources, their geographical location and even the political and philosophical leanings of their leaders are the factors which cause industrialization to be viewed in different lights as an instrument of development. Thus, industrialization may be the result of a consistent industrial policy in which it is regarded either as the prime mover of development or as one of the components of harmonious and balanced development at sector level. It may also be the natural culmination of a development process of which the originating forces are either eternal to the country’s economic system or to the industrial sector. Industrialization is clearly only part of that unified strategy.
A consultant with McKinsey & Company surveys the international aluminum industry and asks why its various activities are divided among firms in the way that they are. These components include the minding of bauxite, its refining into alumina, aluminum smelting, fabrication, and manufacture of the final product. What is it about this industry that encourages joint ventures in some cases, long-term contracts in others, and vertical integration and merger in still others? The author identifies and analyzes the factors which motivate firms to adopt one or another of these patterns of doing business. He draws on and extends recent developments in theory relating to the operation of markets and organizations, and tests the power of theories to explain what is observed in the industry. He has assembled a great deal of empirical evidence, focusing on the United States, Japan, and Australia. The book should become the standard study of the aluminum industry.
As the key component in aluminum production, bauxite became one of the most important minerals of the last one hundred years. But its effects on people and economies varied broadly – for some it meant jobs, progress, or a political advantage over rival nations but for many others, it meant exploitation, pollution, or the destruction of a way of life. Aluminum Ore explores the often overlooked history of bauxite in the twentieth century, and in doing so examines the forces that shaped the time, from the mineral’s strategic development in the First World War and throughout the Cold War, to its role in the globalization of markets, as companies from the northern hemisphere vied for the resources of the south. In this wide-ranging collection, scholars from around the world consider multiple international perspectives on this history – from Guinea to Nazi Germany to Jamaica – all while examining the central place of one commodity in a time of change.
Reviews problems confronting small producers in aluminum industry, including results of hot metal contracts between Reynolds Metals Co. and both Ford Motor Co. and General Motors Corp., which allegedly cause price discrimination harmful to independent aluminum die casters.
Aluminium is the most abundant metal in the Earth's crust but, because aluminium was isolated experimentally only in 1827 and produced in commercial quantities only after 1886, its production and use is many times less than that of iron. However over twice as much aluminium is produced as copper and the annual percentage growth in its consumption between 1985 and 1998 at 2.8% is significantly greater than that of iron and steel.The aluminium industry provides an in-depth overview of the international aluminium trade at the turn of the millennium. Its clearly presented information, analysis and statistics bring the industry into sharp focus – from extraction and refining to applications, markets, prices and future trends.The aluminium industry is essential reading for: - Professionals whose businesses participate in, supply or buy from any part of the aluminium industry - The finance community with investment interests in the metals or raw materials industries - Engineers needing an overview of the structure and commercial operation of the aluminium industry - Government policy makers and all those needing an introduction to the industry or a training resource for new entrantsRead this guide and find out about: - How the aluminium industry has developed from its earliest beginnings - How the key raw materials, bauxite and alumina are processed - Why technical trends are changing the production of aluminium - How primary aluminium is priced - The role of recycled aluminium metal - How demand is changing and the main applications for aluminium products today and in the future - The organisation of international trade, industry corporate structures and the key issues that will determine the industry's future
Separation processes—or processes that use physical, chemical, or electrical forces to isolate or concentrate selected constituents of a mixture—are essential to the chemical, petroleum refining, and materials processing industries. In this volume, an expert panel reviews the separation process needs of seven industries and identifies technologies that hold promise for meeting these needs, as well as key technologies that could enable separations. In addition, the book recommends criteria for the selection of separations research projects for the Department of Energy's Office of Industrial Technology.