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This book focuses on instilling a safety culture and fostering the ability to recognize and manage health and safety responsibilities and requirements. It details effective and safety management systems and concentrates on safety and health hazard anticipation, identification, evaluation, and control.
The Office of Industrial Technologies (OIT) of the U. S. Department of Energy commissioned the National Research Council (NRC) to undertake a study on required technologies for the Mining Industries of the Future Program to complement information provided to the program by the National Mining Association. Subsequently, the National Institute for Occupational Safety and Health also became a sponsor of this study, and the Statement of Task was expanded to include health and safety. The overall objectives of this study are: (a) to review available information on the U.S. mining industry; (b) to identify critical research and development needs related to the exploration, mining, and processing of coal, minerals, and metals; and (c) to examine the federal contribution to research and development in mining processes.
In Mining Engineering operations, mines act as sources of constant danger and risk to the miners and may result in disasters unless mining is done with safety legislations and practices in place. Mine safety engineers promote and enforce mine safety and health by complying with the established safety standards, policies, guidelines and regulations. These innovative and practical methods for ensuring safe mining operations are discussed in this book including technological advancements in the field. It will prove useful as reference for engineering and safety professionals working in the mining industry, regulators, researchers, and students in the field of mining engineering.
This book explores the emergence and growth of state responsibility for safer and healthier working practices in British mining and the responses of labour and industry to expanding regulation and control. It begins with an assessment of working practice in the coal and metalliferous mining industries at the dawn of the nineteenth century and the hazards involved for the miners, before charting the rise of reforming interest in these industries. The 1850 Act for the Inspection of Coal Mines in Great Britain brought tighter legislation in coal mining, yet the metalliferous miners continued to work without government-regulated safety and health controls until the early 1870s. The author explores the reasons for this, taking into account socio-economic, environmental, medical, technical, and cultural factors that determined the chronology and nature of early reform. The comparative approach between the coal and metalliferous mining sectors provides a useful model for exploring the significance of organized labour in gaining health and safety concessions, particularly as the miners in the metalliferous sector, in contrast to the colliers who unionised early, placed a high value on independence and self-sufficiency in the workplace. As an investigation into the formation of health and safety legislation in a major industry, this work will be valuable to all those with an interest in medical history, occupational health, legal history, and the social history of work in the nineteenth century.
Historically, the mining industry has had a high incidence of work related injury and disease, and of disasters involving multiple fatalities. It also faces OHS challenges far exceeding those confronting most other industry sectors.Mine safety legislation can play an important role in meeting those challenges. Although regulation is never likely to be the entire answer, good regulation not only brings laggards up to a minimum legal standard, it also encourages, rewards and facilitates leaders in going beyond them. Bad regulation, in contrast, constrains good enterprises from taking the initiative to improve OHS, while failing to deter bad ones.This book describes mine safety legislation in the "mining states" and analyses its strengths and weaknesses. It also examines the broader policy questions of how best to design, implement and enforce mine safety regulation.It argues that substantial reform will be necessary not only in setting standards, but also in their implementation, if further OHS improvements are to be achieved. This implies substantial changes in the way the mine safety inspectorates go about their tasks: in how they administer and enforce the law; and in the circumstances in which they choose to prosecute. It also requires the nurturing of a degree of trust between employers and workers (individually and collectively) and between both these parties and the mines inspectorates, that has been substantially lacking in recent years.
The consideration of human factors issues is vital to the mining industry. As in other safety-critical domains, human performance problems constitute a significant threat to system safety, making the study of human factors an important field for improving safety in mining operations. The primary purpose of this book is to provide the reader with a much-needed overview of human factors within the mining industry, in particular to understand the role of human error in mine safety, explaining contemporary risk management and safety systems approaches. The approach taken is multidisciplinary and holistic, based on a model of the systems of work in the mining industry domain. The ingredients in this model include individual operators, groups/teams, technology/equipment, work organisation and the physical environment. Throughout the book, topics such as human error and safety management are covered through the use of real examples and case studies, allowing the reader to see the practical significance of the material presented while making the text rigorous, useful and enjoyable. Understanding Human Error in Mine Safety is written for professionals in the field, researchers and students of mining engineering, safety or human factors.
From the 1880s to the 1980s more than eight thousand workers died in the coal mines of the Rocky Mountain states. Sometimes they died by the dozens in fiery explosions, but more often they died alone, crushed by collapsing roofs or runaway mine cars. Many old-timers in coal-mining communities and even some historians haveøblamed the high fatality rate on ruthless coal barons exploiting miners in the single-minded pursuit of profit. The coal industry preferred to blame careless miners. James Whiteside looks beyond those charges in seeking to explain why the western coal mines were (and, to some degree, still are) dangerous and why territorial, state, and federal laws failed for so long to make them safer. Regulating Danger is the first extended study of the coal-mining industry in Colorado, New Mexico, Utah, Wyoming, and Montana. It exceeds the scope of traditional labor history in focusing on working conditions and the problems of workers instead of unions and strikes. After examining the inherent physical dangers of the work, Whiteside shows how the interplay of economic, social, and technological forces created an envi-ronment of death in the western coal mines. He goes on to discuss evolving industrial and political attitudes toward issues of responsibility for mine safety and government regulation and the fundamental changes in the industry that brought about safer working conditions.
Mine Safety combines detailed information on safety in mining with methods and mathematics that can be used to preserve human life. By compiling various recent research results and data into one volume, Mine Safety eliminates the need to consult many diverse sources in order to obtain vital information. Chapters cover a broad range of topics, including: human factors and error in mine safety, mining equipment safety, safety in offshore industry and programmable electronic mining system safety. They are written in such a manner that the reader requires no previous knowledge to understand their contents. Examples and solutions are given at appropriate places, and there are numerous problems to test the reader’s comprehension. Mine Safety will prove useful for many individuals, including engineering and safety professionals working in the mining industry, researchers, instructors, and undergraduate and graduate students in the field of mining engineering.