Read e-book online Buoy engineering PDF

By Henri O. Berteaux

ISBN-10: 0835774767

ISBN-13: 9780835774765

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Approximately 15 tanks with a volume between 10 cubic metres and 50 cubic meters each are kept separately (distance circa 100 meters) from the oxidizers. Like the oxidizer tanks, the tanks are lying on the bare ground without any stand, rack or catchment basin for leakages. A strong characteristic smell of xylidine and triethylamine indicates leakages. However, no macroscopic leaks are visible on the tanks. In contrast to the oxidizer tanks which are made from stainless steel or aluminium, the Samine storage tanks are made from steel and thus are – despite the arid climate - subject to corrosion.

When isonite is used as intended, to place a rocket into flight, the same sorts of environmental problems are generated with polluted water and carbon dioxide, carbon monoxide and nitrose gases emissions. Acid rain and acidified soil and water are the products. The binary system consists, as the name suggests, of two propellant components: the oxidizer and the source of energy. The operation materials are melanj, the oxidizer, and samine, the source of energy. The composition of these chemicals is depicted in Figure 10.

Nitrates of sodium, potassium, ammonium and calcium are most important. Sodium nitrate NaNO3, or caliche, is found naturally occurring only in Chile. Potassium nitrate KNO3 also can be found in nature in small quantities, however mainly it is produced by interaction of sodium nitrate with potassium chloride. Both these salts are used as fertilizers, and potassium nitrate contains two elements required for plants – nitrogen and potassium. Sodium and potassium nitrates are also used in glass manufacturing and in food industry as conserving agents.

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Buoy engineering by Henri O. Berteaux


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