Download The Conversion of Liquid Rocket Fuels by Wolfgang Spyra; Kay Winkelmann PDF
By Wolfgang Spyra; Kay Winkelmann
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Extra resources for The Conversion of Liquid Rocket Fuels
With the growth of human agglomeration in cities it becomes clear that large amounts of people produce large amounts of waste. This waste, through its own effects or through the effects of the substances as they change in nature, can lead to a damaging or even destruction of living space. We must learn that hygiene is necessary to enable a healthy co-existence. In relation to military means of operation and deployment the donator-acceptor system is structured in the Toxicology of Military Hazards 35 following presented areas: the genesis or source of the military contaminant, the transportation over the contaminated path, which first and foremost involves air and water, and the target object: humans.
Figure 3 shows the diversity of interactions between toxicology and physiology/pharmacology, biochemistry, internal medicine, and chemistry. However, in the same way the reactions in question in the pathology square, between forensic medicine, analytical chemistry, and genetics may also be discussed. Toxicology of Military Hazards 37 Figure 3, Diversity of Interactions in Toxicology Physiology Pharmacology Pathology description of morphological changes Chemistry synthetics, natural substances substance concentrations, metabolites Analytical chemistry places of action, mechanisms on the level of organs and cells Toxicology molecular mechanisms of action, metabolism Biochemistry Forensic medicine causes of poisonings, detection of poison acute poisonings, therapy, information Internal medicine, pediatrics, anesthesiology chemical mutagenesis Genetics In order to understand toxicological predecessors in the human body and to protect the human body from damages through ingestion of such toxins, it is important to know the uptake pathway of the toxic substance.
For all stored chemicals leakages are given. Due to their aggressiveness in combination with water, oxidizers in particular are continuously leaking into the atmosphere and to the soil. The oxidizers are corroding stainless steel as Location of Missile Fuel Component Storage Sites and Risks 55 well as aluminium storage tanks. Leakage of oxidizers is obviously due to macroscopic leaks in tanks. Traces of leakages on the soil (oxidation of soil iron the brownish Fe(III)), yellowish-brown plumes of nitrous gases escaping from the tanks and a characteristic smell on the storage sites are observed.