Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Industrialization”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

[Ecological industry chain designing of making paper industry: turning pollution industry into ecological industry].

This paper gave a definition of ecological industry chain of renewal resources, and according to this definition designed the ecological industry chain of paper making industry of China; presented a basic principle of designing and ecological industry chain of renewal resources and five necessary conditions to establish an ecological industry chain of renewal resources, i.e. imitating the ecological closed-circuit system, increasing stock of renewal resources, getting benefits from resource productivity, developing long-run social demand and engaging in systematic innovation. It was found that the ecological industry chain of paper making industry was a representative example of ecological industry chain of renewal resources. The ecological industry chain of paper making industry solved three difficult constrain problems and offered an effective way to change the paper making industry of China from pollution industry into ecological industry.

Conservation of Natural Resources↗

Occupational lung diseases in the industrializing and industrialized world due to modern industries and modern pollutants.

Although most new 'high tech' industrial processes are developed in industrialized countries, many of these technologies are eventually transferred to the industrializing countries. Many of these new technologies are associated with the use of respiratory toxins. However, there has been little study of acute or chronic health effects of work in these industries. The semiconductor industry illustrates many of these issues. The past decade has been increasing globalization of semiconductor manufacturing. Semiconductor manufacturing uses many chemicals with extremely high respiratory toxicity, including gases such as arsine and phosphine, strong acids and bases, dopants and photoactive chemicals. In semiconductor manufacturing, gases and chemicals are strictly controlled, but little is known about the occurrence of respiratory symptoms or disease in this industry. Potential acute respiratory effects of these exposures include mucous membrane irritation, tracheobronchitis, pulmonary edema and death. Chronic effects may include airway sensitization and possibly respiratory cancer. Movement of 'high tech' industries to less industrialized countries may not be accompanied by the same degree of attention to the control of workplace exposures. The shortage of adequately trained health and safety personnel, greater attention to safety than to health issues, and the unorganized and unskilled workforce in industrializing countries may exacerbate this situation. More research is needed on the health effects of exposures in rapidly changing industries such as semiconductor manufacturing, and the results of this research must be communicated and safe practices implemented worldwide.

Antimony↗

[Environmental impact on the formation of the public opinion among the urban population with developed oil refining industry, chemical petroleum industry and chemical industry].

The research proved oil-processing, petrochemical and chemical enterprises to be potent releasers of chemical hazards containing in industrial waste. The petrochemical and oil enterprises pollute environment and deteriorate sanitary conditions in populated area. The residents evaluate actual ecologic danger adequately. Sociologic analysis of how city dwellers assess quality of their environment and health is quate objective indicator of urban ecology and could be assigned to priority methods of ecologic and hygienic studies.

Adult↗

Industrial ecology: a new perspective on the future of the industrial system.

Industrial ecology? A surprising, intriguing expression that immediately draws our attention. The spontaneous reaction is that "industrial ecology" is a contradiction in terms, something of an oxymoron, like "obscure clarity" or "burning ice". Why this reflex? Probably because we are accustomed to considering the industrial system as isolated from the Biosphere, with factories and cities on one side and nature on the other, as well as the recurrent problem of trying to minimise th impact of the industrial system on what is "beyond" it: its surroundings, the "environment". As early as the 1950's, this end-of-pipe angle was the one adopted by ecologists, whose first serious studies focused on the consequences of the various forms of pollution on nature. In this perspective on the industrial system, human industrial activity as such remained outside the field of research. Industrial ecology explores the opposite assumption: The industrial system can be seen as a certain kind of ecosystem. After all, the industrial system, just as natural ecosystems, can be described as a particular distribution of materials, energy, and information flows. Furthermore, the entire industrial system relies on resources and services provided by the Biosphere, from which it cannot be dissociated. (It should be specified that "industrial", in the context of industrial ecology, refers to all human activities occurring within modern technological society. Thus, tourism, housing, medical services, transportation, agriculture, etc. are part of the industrial system.) Besides its rigorous scientific conceptual framework (scientific ecology), industrial ecology can also be seen as a practical approach to sustainability. It is an attempt to address the question, "How can the concept of sustainable development be made operational in an economically feasible way?" Industrial ecology represents precisely one of the paths that could provide concrete solutions. Governments have traditionally approached development and environmental issues in a fragmented and compartmentalised way. This is illustrated in the classical end-of-pipe strategy for the treatment of pollution, which has proven to be quite useful, but not adequate to make an efficient use of limited resources, in the context of a growing population with increasing economic aspirations. Thus, industrial ecology emerges at a time when it is becoming increasingly clear that the traditional pollution treatment approach (end-of-pipe) is not only insufficient to solve environmental problems, but also too costly in the long run.

Ecology↗

Tobacco industry manipulation of the hospitality industry to maintain smoking in public places.

OBJECTIVE: To describe how the tobacco industry used the "accommodation" message to mount an aggressive and effective worldwide campaign to recruit hospitality associations, such as restaurant associations, to serve as the tobacco industry's surrogate in fighting against smoke-free environments. METHODS: We analysed tobacco industry documents publicly available on the internet as a result of litigation in the USA. Documents were accessed between January and November 2001. RESULTS: The tobacco industry, led by Philip Morris, made financial contributions to existing hospitality associations or, when it did not find an association willing to work for tobacco interests, created its own "association" in order to prevent the growth of smoke-free environments. The industry also used hospitality associations as a vehicle for programmes promoting "accommodation" of smokers and non-smokers, which ignore the health risks of second hand smoke for employees and patrons of hospitality venues. CONCLUSION: Through the myth of lost profits, the tobacco industry has fooled the hospitality industry into embracing expensive ventilation equipment, while in reality 100% smoke-free laws have been shown to have no effect on business revenues, or even to improve them. The tobacco industry has effectively turned the hospitality industry into its de facto lobbying arm on clean indoor air. Public health advocates need to understand that, with rare exceptions, when they talk to organised restaurant associations they are effectively talking to the tobacco industry and must act accordingly.

Civil Rights↗

Tobacco industry efforts at discrediting scientific knowledge of environmental tobacco smoke: a review of internal industry documents.

STUDY OBJECTIVE: Using tobacco industry internal documents to investigate the use of tobacco industry consulting scientists to discredit scientific knowledge of environmental tobacco smoke (ETS). DESIGN: Basic and advanced searches were performed on the Philip Morris, Tobacco Institute, R J Reynolds, Brown and Williamson, Lorillard, and the Council for Tobacco Research document web sites, with a concentration on the years 1985-1995. Guildford depository files located on the Canadian Council on Tobacco Control website were also searched. The documents were found in searches undertaken between 1 March and 30 June 2000. MAIN RESULTS: The industry built up networks of scientists sympathetic to its position that ETS is an insignificant health risk. Industry lawyers had a large role in determining what science would be pursued. The industry funded independent organisations to produce research that appeared separate from the industry and would boost its credibility. Industry organised symposiums were used to publish non-peer reviewed research. Unfavourable research conducted or proposed by industry scientists was prevented from becoming public. CONCLUSIONS: Industry documents illustrate a deliberate strategy to use scientific consultants to discredit the science on ETS.

Air Pollution, Indoor↗

Industry-funded research and conflict of interest: an analysis of research sponsored by the tobacco industry through the Center for Indoor Air Research.

The Center for Indoor Air Research (CIAR) was created by three United States tobacco companies in 1988. Its stated mission is to fund high-quality, objective research related to indoor air, including studies of environmental tobacco smoke (ETS). Because CIAR is financed by the tobacco industry and funds research related to tobacco, it fosters an inherent conflict of interest. We consider whether this conflict of interest has affected the content, quality, or use of research funded by CIAR. We hypothesize that the tobacco industry might be using CIAR to develop scientific data to support its position that ETS is not harmful to health. CIAR funds two types of projects: "Peer-reviewed" projects are awarded after peer review by a group of scientists, whereas "special-reviewed" projects are awarded directly by tobacco industry executives. CIAR's special-reviewed projects are more likely than its peer-reviewed projects to be related to ETS, to support the tobacco industry position, and to be used by the industry to argue that smoking should not be regulated in public places. Our findings suggest that the tobacco industry is funding special-reviewed projects through CIAR to develop scientific data that it can use in legislative and legal settings. The industry may be financing peer-reviewed projects through CIAR to enhance its credibility, to provide good publicity, and to divert attention from ETS as an indoor air pollutant. CIAR's stated mission of funding high-quality, objective research has been compromised by conflict of interest, and at least some of CIAR's projects are being used to promote the tobacco industry's agenda.

Conflict of Interest↗

Tobacco industry youth smoking prevention programs: protecting the industry and hurting tobacco control.

OBJECTIVES: This report describes the history, true goals, and effects of tobacco industry-sponsored youth smoking prevention programs. METHODS: We analyzed previously-secret tobacco industry documents. RESULTS: The industry started these programs in the 1980s to forestall legislation that would restrict industry activities. Industry programs portray smoking as an adult choice and fail to discuss how tobacco advertising promotes smoking or the health dangers of smoking. The industry has used these programs to fight taxes, clean-indoor-air laws, and marketing restrictions worldwide. There is no evidence that these programs decrease smoking among youths. CONCLUSIONS: Tobacco industry youth programs do more harm than good for tobacco control. The tobacco industry should not be allowed to run or directly fund youth smoking prevention programs.

Adolescent↗

Workers, industry, and the control of information: silicosis and the Industrial Hygiene Foundation.

This essay focuses on the early history of industry and professional relationships around silicosis, the debilitating occupational lung disease, through a study of the role of the Industrial Health Foundation, an industry-sponsored group which has played a critical role in shaping the nation's agenda regarding industrial disease. From its start during the Depression, it has portrayed itself as an industry-sponsored agency that depended upon detached, disinterested professionals and experts to develop effective programs to address occupational disease. As an organization that brought together professional industrial hygienists, business groups, government officials, academics and researchers it serves as a means for understanding the intertwining of industrial and academic agendas. We explore some of the issues that arose regarding public policy and scientific investigations, asking: Under what conditions is it appropriate for professionals and scientists to work together with industrially sponsored organizations? What are the pressures that shape research questions, the range of possible solutions, and the control of scientific data? How can technically trained individuals avoid real or perceived conflicts of interest? At what point does the ostensibly disinterested goals of professionalism conflict with the self-interest of the sponsoring organizations?

Foundations↗

The industrial back problem: role of the industrial hygienist and ergonomics.

This article discusses a major and costly problem in industry today--the industrial back problem. What does industrial hygiene have to do with back accident problems? This article relates the problem to the basic philosphy of industrial hygiene and ergonomics. Information is provided to give the reader a better understanding of the back problem. The role of industrial hygiene and ergonomics is explained as a help to industry in curbing the high costs and workdays lost due to perplexing back problems in industry.

Adult↗

Divergent Biological Consequences of APOE Isoforms Across Industrialized and Non-Industrial Environments.

The apolipoprotein ε4 (APOE ε4) isoform directly alters cholesterol and immune biology and is associated with an increased risk of neurodegenerative and cardiometabolic disease in industrialized settings; nevertheless, APOE ε4-which is ancestral in humans-has persisted over evolutionary time. One potential explanation is that the costs and benefits of APOE ε4 were significantly different in the environments in which humans evolved compared to those we experience today. In support, previous work has suggested that living in a high pathogen environment, engaging in high levels of physical activity, or eating a low fat diet can dampen the detrimental effects of APOE ε4, and has revealed positive effects for fertility. However, direct tests of whether APOE isoforms are associated with different biological outcomes in non-industrial versus industrialized contexts are lacking. Working with the Turkana of Kenya and the Orang Asli of Peninsular Malaysia-two Indigenous groups in which individuals of shared ancestry span a continuum of subsistence, non-industrial to urban, industrialized lifestyles-we investigated how APOE genotypes impact cholesterol, immunological, and reproductive traits and tested for genotype x environment (GxE) interactions. First, we confirmed established genotype effects across lifestyles, showing that more APOE ε4 alleles are associated with higher total cholesterol, higher LDL cholesterol, and lower HDL cholesterol. Second, we tested for lifestyle interactions, finding lifestyle-dependent effects of genotype on innate immune biomarkers in the Orang Asli but not Turkana. Finally, we show that more APOE ε4 alleles are correlated with an extended reproductive lifespan, however this effect is relatively weak, is not consistent across populations, and does not correspond with a higher reproductive output. Together, our study provides evidence that industrialized environments can modify the biology of APOE ε4; however, we find that APOE ε4 is not universally beneficial in non-industrial contexts, highlighting the role of local environmental variation in determining its specific costs and benefits.

Journal Article↗

Necessity of toxicity assessment in Turkish industrial discharges (examples from metal and textile industry effluents).

Toxicity of some organic and inorganic chemicals to microorganisms is an important consideration in assessing their environmental impact against their economic benefits. Microorganisms play an important role in several environmental processes, both natural and engineered. Some organic and inorganics at toxic levels have been detected in industrial discharges resulting in plant upsets and discharge permit violations. In addition to this, even though in some cases the effluent wastewater does not exceed the discharge limits, the results of toxicity tests show potential toxicity. Toxicity knowledge of effluents can benefit treatment plant operators in optimising plant operation, setting pre-treatment standards, and protecting receiving water quality and in establishing sewer discharge permits to safeguard the plant. In the Turkish regulations only toxicity dilution factor (TDF) with fish is part of the toxicity monitoring program of permissible wastewater discharge. In various countries, laboratory studies involving the use of different organisms and protocol for toxicity assessment was conducted involving a number of discharges. In this study, it was aimed to investigate the acute toxicity of textile and metal industry wastewaters by traditional and enrichment toxicity tests and emphasize the importance of toxicity tests in wastewater discharge regulations. The enrichment toxicity tests are novel applications and give an idea whether there is potential toxicity or growth limiting and stimulation conditions. Different organisms were used such as bacteria (Floc and Coliform bacteria) algae (Chlorella sp.). fish (Lepistes sp.) and protozoan (Vorticella sp.) to represent four tropic levels. The textile industry results showed acute toxicity for at least one organism in 8 out of 23 effluent samples. Acute toxicity for at least two organisms in 7 out of 23 effluent sampling was observed for the metal industry. The toxicity test results were assessed with chemical analyses such as COD, BOD, color and heavy metals. It was observed that the toxicity of the effluents could not be explained by using physicochemical analyses in 5 cases for metal and 4 cases for the textile industries. The results clearly showed that the use of bioassay tests produce additional information about the toxicity potential of industrial discharges and effluents.

Animals↗