Biomedical subjects
G Broussard
Publications and source records attributed to G Broussard.
Occupational risk and toxicology evaluations of industrial water conditioning.
This study addresses the chemical and toxicological questions due to the wide use of chemical treatment programmes for industrial cooling water. First, natural problems encountered in cooling tower systems were presented and grouped into three categories: (i) scaling; (ii) corrosion and (iii) biofouling. Chemical solutions adopted in industrial plants were outlined for each one in order to minimize damage and categorized as shut-down, production loss, heat transfer reduction, upsets, etc. Above all, the purpose of the work was to identify the most dangerous chemicals normally used, which means sources of chemical risk for safety workers and their environment; thus, symptoms of exposure, prevention measures and protection tools are also described.
[Biological rhythms and stress due to work].
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[Electrocardiographic changes in anxiolytic treatment with dipotassium chlorozepate in comparison with other benzodiazepine compounds].
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[Pathology induced by polyvinyl resins].
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[Health and psychological aspects of the trend in industrial medicine].
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[Treatment of pulmonary emphysema with administration of a delayed-action compound of cysteine and betamethasone].
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[Changes of the atrial wave of the electrocardiogram in subjects with hypercythemic pneumoconiosis].
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[Changes in various spirometric values after vitamin-analepto-steroid treatment].
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[Erythrolysis due to hydrogen peroxide].
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Chemical technology for the toxic gas flow control through process water system.
The aim of this work is focused on the safety and toxicological aspects due to under-pressure industrial plant management, above all in the case which the gas is very dangerous for human health and environment. Here is illustrated the safe method of control of risks through specific choices of engineering devices and chemical process: in this way we have shown the mathematical calculation regarding the case of ammonia flow gas running in the piping and plant under-pressure. In this paper the Authors show the assessment of the technological solution for falling down of a toxic gas as NH3, which lets off from safety values facilities. The under pressure industrial plants with ammonia are protected through the safety valves, settled at 20 bar pressure. The out-let gas flow is capted by a tank of a water bulk of five time theoretical water amount necessary to the complete absorption of gas. In order to prevent any health risk and carry out a safety management, it needs to verify two basic aspects, with connected specific techniques: 1. The safety valves technology through the mathematical calculation of operating device; 2. The absorption process of the toxic agent for controlling of dangerous runaway of gas.
[Occupational allergies. Pathogenic aspects].
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[Pathology of workers sewing hair in a wig making industry. Evaluation of the working place and conditions].
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[Difficulties in porvocation tests in asthma].
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[Aromatic polycyclic hydrocarbons: chemism, vehicles and technics for protection from toxicological risk].
In this work we take under examination the aromatic polycyclic hydrocarbons (APHs) as a class of organic micropolluting agents which have a considerable impact in the life and in the working environment of man. The authors decided to expressly start this study by proposing the changes pattern cause by APHs according to their chemical-physical reactivity characteristics, in order to realise a qualitative and quantitative evaluation of their toxicologic impact. Therefore, the specific aspects of chemism (reactions of substitution, aromatic electrophilia and addition) of these organic micropolluting agents are studied with particular reference to their chemical structure and to the properties which are the main important cause of every effect of diffusion both in productive environments and of toxicity in the human body. In this way, come toxicologic risk sources, responsible, within some technological cycles for the APHs emission in the working areas, are identified, shown and evaluated; carrying factors, not much investigated till now, which represent a synergic effect to the introduction and absorption of the APHs by the human body. For the necessity of a useful environmental monitoring which could be applied to different matrices, the techniques and the methods useful for carrying out sampling and analytical evaluation in a correct way, are introduced as well. Lastly, the Authors stress on the engagement and discuss the measures of prevention and protection, technically performable on the basis of the chemico-physical-granulometric properties of APHs, with the goal of safeguarding at best health of people occupationally exposed.