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Boiling of drinking-water: can a fuel-scarce community afford it?

In the prevention of diarrhoea, health professionals often advocate boiling as a method of choice to provide safe household drinking-water to villagers in the less developed countries. We have examined the financial feasibility of this recommendation in a village study in Bangladesh. Family income was categorized and the pattern of household fuel consumption was determined. Families in the lowest income quartile would have to spend approximately 22% of their yearly income on fuel, and those in the highest income bracket approximately 10%. Boiling of drinking-water would result in an 11% increase in the household budget (as a percentage of income) for a typical family in the lowest income quartile, compared with a 3% increase for a family in the highest income quartile. We conclude that recommendations concerning boiling of drinking-water in developing countries should not be made until their economic feasibility has been demonstrated.

Bangladesh↗

Radiation protection during space flight.

The problem of ensuring space flight safety arises from conditions inherent to space flights and outer space and from the existing weight limitations of spacecraft. In estimating radiation hazard during space flights, three natural sources are considered: the Earth's radiation belt, solar radiation, and galactic radiation. This survey first describes the major sources of radiation hazard in outer space with emphasis on those source parameters directly related to shielding manned spacecraft. Then, the current status of the safety criteria used in the shielding calculations is discussed. The rest of the survey is devoted to the rationale for spacecraft radiation shielding calculations. The recently completed long-term space flights indicate the reliability of the radiation safety measures used for the near-Earth space exploration. While planning long-term interplanetary flights, it is necessary to solve a number of complicated technological problems related to the radiation protection of the crew.

Cosmic Radiation↗

[Technology of waste incineration].

Refuse incineration as one of the methods of controlled waste disposal was introduced as early as the last century. However, in Germany, comparable technologies have only seen moderate attempts up to the middle of this century. The increasing volume of refuse as a result of growing prosperity, as well as new laws for environmental protection made it necessary for the technology of refuse incineration to be restarted or developed further. The technical development of these methods was pushed on the basis of the following prerequisites: The incinerator plants must not give rise to new problems of environmental protection. The plants should operate continuously and ensure waste disposal as complete as possible in the long term. Wherever possible, the energy set free by the incineration process, should be utilized. As a rule, for the incineration of solid refuse modern plants use mechanically actuated grate systems of different design, which in part had been developed from known power-generating plant components. For the destruction of special refuse rotary drum furnaces are prevalently employed. In evaluating the entire system of refuse incineration the following 3 points are worthy of note: The energy produced by incineration is mainly used for the generation of electric current or heat for long-distance supply lines. However, other applications are also possible. For the purification of the exhaust gases originating from incineration, nowadays technical facilities are available for separating out solid substrances and noxious gases. The solid incineration residues can be recycled into the economic system after separation and processing. The state of the art of present refuse incinerators is comparable to that of conventional power generating plants operating on solid fossil fuels. Alternative waste disposal technologies still have to prove their ability to give a comparable performance.

Air Pollution↗

[Material recovery from waste].

Reclamation of raw material from refuse is demonstrated by two practical examples. In numerous countries sorting plants were set up at considerable expense for the purpose of reclaiming plastic material from household refuse. Most of these plants are struggling more or less with difficulties as a result of technical and particularly economic problems. A market for reclaimed raw materials scarcely exists. This applies most particularly to the reclamation of plastics from household refuse. As long as the operating costs, especially the energy costs, exceed the proceeds obtained for regranulated material, "recycling" will be to no purpose. At present, reclaiming energy from refuse seems to hold out better prospects of success.

Austria↗