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[Rural sanitation and the infrastructural projects, auxilliary to health projects].
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[Sanitized: an active & permanent antiseptic].
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[Apropos of the voyage of King Louis of Holland to the Pyrenees in 1807 and of his visit with the doctor Jean Fabas. physician inspector of the springs of Sanit-Sauveur].
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[Sanitation measures in evidence of Legionella].
Appearance of Legionella disease generally is underrated. Conclusions as to disease frequency from Legionella antibody investigations are not reliable. The number of microbes necessary to produce illness depends from individual preliminary conditions. In special areas of the hospital the rate of diseases caused by Legionella can be reduced by protection. In bathing areas generally the hitherto existing regulations of the Federal Health Authority are sufficient: Continual warm water temperature increases from 60 degrees C, chlorination if necessary, regular stepwise controls. Insufficient results are produced by intermittent temperature increases. Filters that are impermeable for microbes appear uneconomical for bathing areas.
'Sanitizing' nappies by immersion.
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[THE HYGIENIC EFFECTIVENESS OF MEASURES TAKEN TO SANITIZE A TOWN POND IN SVERDLOVSK].
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[CELLS AND VIRUSES 1961. A SYNTHESIS OF THE RESEARCH ACTIVITY OF THE CELL AND VIRUS UNIT OF THE MICROBIOLOGICAL LABORATORIES OF THE ISTITUTO SUPERIORE DI SANIT'A].
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[ON THE SANITIZATION OF CHRONIC CARRIERS OF TYPHOID BACTERIA].
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[Results of sanitation of the focus of acute epidemic conjunctivitis in the village 3 of the Kazandzhik station of the central-Asian railroad].
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Co-digestion of concentrated black water and kitchen refuse in an accumulation system within the DESAR (decentralized sanitation and reuse) concept.
Co-digestion of concentrated black water and kitchen refuse within the DESAR concept was the objective of this pilot research. The digestion took place in two, non-mixed accumulation reactors (AC1 and AC2) inoculated with digested primary sludge from a WWTP at a temperature of 20 degrees C for a period of around 150 days. Reactor AC1 was fed with a mixture of faeces, urine and kitchen refuse in the equivalent amount that one individual generates per day. The AC2 was fed with a mixture of faeces and kitchen refuse in the equivalent amount that two individuals produce per day. Some contribution of urine to AC2 was not to be avoided. Detailed characterisation of waste(water) was performed. The performance of the stratified reactor was followed by monitoring the reactor content for several reactors' heights as well as being based on the biogas production. In general the system exposed good process stability. The methanisation of 34 and 61% was obtained for AC1 and AC2 respectively. The biogas yield was 26.5 and 50.8 L/p/d for the respective reactors. Proper choice of inoculum as well as good buffering capacity did not lead to accumulation of VFA and an inhibitive effect due to relatively high ammonium concentration. The chosen process is a promising technology showing good process stability especially for high strength influent.
Disinfecting versus sanitizing. Selecting the right bleach makes all the difference when laundering hospital textiles.
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[Selection of the method of sanitization of the abdominal cavity in diffuse suppurative peritonitis in obstetrics and gynecology].
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Studies on sanitizing used feed bags.
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Iodine as a sanitizing agent for food and eating utensils.
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Evaluation of the sanitization effectiveness of a denture-cleaning product on dentures contaminated with known microbial flora. An in vitro study.
OBJECTIVES: To see if dentures contaminated with Staphylococcus aureus, Pseudomas aeruginosa, Bacillus cereus, Candida albicans, and herpes simplex virus 1 could be effectively decontaminated by using Medical Tabs for Dentures. METHOD AND MATERIALS: Ten methylmethacrylate dentures with processed soft liners (soft-liner dentures) and 10 methylmethacrylate dentures without processed soft liners (hard dentures) were aseptically fragmented and individually incubated with a target microorganism. Test denture fragments were immersed in Medical for 5 minutes, vortexed for 5 minutes, and serially diluted onto media. The control denture fragments were similarly treated in sterile water. For virus contamination, denture fragments were contaminated with 1.2 x 10(9) tissue culture infective dose (TCID)50/mL. They were treated with either Medical for 5 minutes (test fragments) or water (controls) for 5 minutes. Serial dilutions were performed and viral (TCID)50/mL titers were calculated using the Reed-Muench method. RESULTS: Medical treatments effectively eliminated C. albicans, S. aureus, and P. aeruginosa from soft-liner dentures. Treatment of hard dentures eradicated C. albicans and reduced the numbers of S. aureus and P. aeruginosa to < 10. B. cereus showed a reduction of 10 microorganisms in hard dentures while the soft-liner dentures did not show an appreciable reduction. Viral analyses found that both types of dentures retained large amounts of virus when washed with water, but no virus was recovered from any of the 40 samples treated with Medical. CONCLUSION: A single use of Medical Tabs for Dentures is effective in eliminating certain species of microorganisms, including selected viruses, in vitro.
Two cases of rheumatism evolving simultaneously with a tasteless diabetes, cured by the sanitation of the focal infection.
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[Important dates of the history of hygiene and sanitation in 2005].
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