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PubMed · 5376724

Fire and explosion suppression techniques.

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B P Botteri, J Manheim. 1969. Fire and explosion suppression techniques.. https://pubmed.ncbi.nlm.nih.gov/5376724/

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Blood carbon monoxide and hydrogen cyanide concentrations in the fatalities of fire and non-fire associated civil aviation accidents, 1991-1998.

Blood samples submitted to the Civil Aeromedical Institute (CAMI) from aviation accident fatalities are analyzed for carbon monoxide (CO), as carboxyhemoglobin (COHb), and hydrogen cyanide, as cyanide (CN(-)). These analyses are performed to establish possible exposure of victims to smoke from in-flight/post-crash fires or to CO from faulty exhaust/heating systems. The presence of both gases in blood would suggest that the victim was alive and inhaled smoke. If only COHb is elevated, the accident (or a death) could be the result of CO contamination of the interior. Information pertaining to blood levels of these gases in aviation fatalities, in relation to the associated accidents, is scattered or not available, particularly with regard to toxicity. Therefore, considering that COHb> or =10% and CN(-)> or =0.25 microg/ml are sufficient to produce some degree of toxicological effects, the necessary information was extracted from the CAMI database. Samples from 3857 fatalities of 2837 aviation accidents, occurring during 1991-1998, were received; 1012 accidents, encompassing 1571 (41%) fatalities, were fire associated, whereas 1820 accidents were non-fire related. The remaining five accidents were of unknown fire status. There were fewer fire related fatalities and associated accidents in the (COHb> or =10% and CN(-)> or =0.25 microg/ml) category than that in the (COHb<10% and CN(-)<0.25 microg/ml) category. No in-flight fire was documented in the former category, but in-flight fires were reported in 14 accidents (18 fatalities) in the latter category. No non-fire accident fatality was found wherein levels of both gases were determined to be at or above the stated levels. There were 15 non-fire accidents with 17 fatalities wherein only COHb (10-69%) was elevated. The present study suggests that aviation fire accidents/fatalities were fewer than aviation non-fire accidents/fatalities and confirms that aviation accidents related to in-flight fires and CO-contaminated interiors are rare.

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OBJECTIVE: To investigate the influence of an aircraft crash near the South of Limburg, the Netherlands, on the perceived physical and psychological health and annoyance of local residents. DESIGN: Controlled, blinded, follow-up questionnaire survey. METHOD: Three months before an aircraft crash occurred, randomly selected local residents and control subjects who lived approximately 20 km from the crash site were asked to complete a health questionnaire. The study was repeated one year after the crash. The aim of the survey was not mentioned in the questionnaire. The questionnaire asked about demographic features, physical health, psychological health and environmental nuisance. In the first survey, 544/926 (59%) questionnaires were successfully returned, and after the disaster this figure was 677/900 (75%). Linear regression modelling was used to check whether or not any differences in outcome were due to confounding demographic variables. RESULTS: There was no significant difference in the perceived physical and psychological health of local residents before and after the aircraft crash. A year after the crash, the nuisance level of aircraft noise reported by local residents had markedly increased. Aircraft noise was the major cause of disturbance. More than 1 in 3 residents perceived daily aircraft noise as a nuisance compared with 1 in 6 before the crash. The scores of local inhabitants for annoyance due to aircraft odour and dust doubled after the crash. Compared with control subjects, local inhabitants scored more than 20 times higher for annoyance due to aircraft odour and 40 times higher for annoyance due to dust. The reported nuisance caused by road traffic noise, odour and dust also increased, although to a lesser extent. CONCLUSION: Health was not influenced by the aircraft crash. A year after the crash, there was a strong drop in tolerance of aircraft nuisance. There was also a reduction in the tolerance of comparable nuisance due, for example, to road traffic, although this change was less marked.

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