Project Construction Occupational Hazard Identification

Author: Yang Lehua
Publisher:
Publish Date: 2006-04-07
Features: This book systematically elaborates on the principles, methods, and procedures for identifying occupational hazard factors. Through examples, it introduces the application of several new methods in quantitative identification, such as the noise superposition method, toxic gas hemispherical diffusion model method, and field measurement method. It emphasizes the identification methods for special work environments, including confined spaces, abnormal equipment operation and maintenance, and construction periods. The book is concise and easy to understand, with strong scientific rigor, practicality, and operability, making it a valuable reference for professionals engaged in occupational hazard evaluation of construction projects, occupational disease prevention and control management, occupational health monitoring, occupational health examinations, occupational disease clinical care, emergency rescue for acute occupational poisoning, occupational health workers in factories and mines, as well as faculty and students in relevant disciplines at colleges and universities. This book is a guide for identifying occupational hazard factors in construction projects. It is divided into sixteen chapters. Chapter 1, Introduction, mainly covers the role, principles, procedures, and methods of occupational hazard factor identification, as well as the identification of occupational hazards in special environments. Chapters 2 to 16 comprehensively and systematically introduce the issues of occupational hazard factor identification for various industries, including coal-fired power generation units, gas (oil) power generation units, nuclear power units, refractory materials and iron alloy manufacturing, iron ore sintering and blast furnace ironmaking, steelmaking and rolling, non-ferrous metal smelting, petroleum refining, acid and alkali fertilizer industry, adhesive manufacturing and application, machinery manufacturing, welding technology, surface treatment, and papermaking industry. The appendix collects information on 225 common chemical toxicants, including clinical manifestations of occupational hazards, national occupational exposure limit standards, and a list of legally defined occupational diseases. During the writing process, the book draws on some principles, viewpoints, and methods from disciplines such as construction project safety evaluation and environmental impact assessment both domestically and internationally. The book is concise and easy to understand, with strong scientific rigor, practicality, and operability, making it a valuable reference for professionals engaged in occupational hazard evaluation of construction projects, occupational disease prevention and control management, occupational health monitoring, occupational health examinations, occupational disease clinical care, emergency rescue for acute occupational poisoning, occupational health workers in factories and mines, as well as faculty and students in relevant disciplines at colleges and universities. The book includes: Introduction, Coal-Fired Power Generation Units, Gas (Oil) Power Generation Units, Papermaking Industry, Refractory Materials and Iron Alloy Manufacturing, etc.

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