EFFECTS OF WASTE in C#.NET

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112 EFFECTS OF WASTE
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Wastes generated from the domestic and industrial sources increase continuously with rising population In general, the lack of facilities for disposal of waste caused overall of landfill sites resulting in hazards for the environment and for public health These effects include: (a) air pollution, (b) pollution of surface waters, (c) changes in soil fertility, and (d) changes in the landscape and visual discomfort Air pollution by unpleasant odors and wind-carried suspensions is obvious in areas located nearby urban waste landfills, since these are currently run in complete ignorance of practices such as cell operation and inert matter lagging The leakage on the slopes of landfills situated nearby surface water bodies adds to the pollution of such waters by organic substances and suspensions The urban waste landfills that are not waterproof often represent sources of groundwater pollution by nitrates and nitrites, as well as other pollutants Water leakage adversely affects the quality of the adjoining soils, which brings along consequential effects to their utilization
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FUELS FROM DOMESTIC AND INDUSTRIAL WASTE
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Withdrawing land from the natural or economic circuit in order to set up waste landfills is a process which may be regarded as temporary, yet, in terms of sustainable development, it extends over at least two generations when adding up the time periods required for planning works (1 3 years), running (15 30 years), and ecological reconstruction and subsequent monitoring (15 20 years) In terms of biodiversity, any domestic or industrial waste landfill means the subsequent elimination of a number of 30 to 300 species (microbiologic population of the soil not included) on each hectare of the area intended to host a landfill Moreover, changes are likely to occur in areas close to the landfill, such as: (a) ruderal species, that is, plant species that are first to colonize disturbed lands that are specific to polluted areas, would become dominant in the vegetal assemblies, and (b) some mammals, birds, insects would desert the area, in favor of species that feed on refuse (rats, crows) Although the effects on flora and fauna are, in theory, limited to the time period over which the landfill is operated, the ecologic reconstruction performed after the area has been relieved from its technologic use will not be able to retrieve the initial biologic balance, as the evolution of that biosystem has been irreversibly modified The practices used currently in the collection, transport, and storage of urban waste facilitate the multiplication and dissemination of the pathogenic agents and their accompanying breed: insects, rats, crows, stray dogs Thus, waste in any form (domestic or industrial) represents a health hazard, due to its disposal and composition In terms of composition, the focus is often on toxic substances such as heavy metals (lead, cadmium), pesticides, solvents, and used oils that form an integral part of the waste Indeed, the challenge for waste disposal arises from the joint storage of hazardous materials (including toxic sludge, oil products, dyeing residues, metallurgic slag) and solid domestic waste This situation is likely to generate inflammable, explosive, or corrosive mixtures and combinations thereof On the other hand, the presence of easily degradable household may facilitate the decomposition of complex hazardous components, and thus diminish environmental pollution Another negative aspect is the fact that several recyclable and useful materials are stored in the same place as materials that cannot be recycled; consequently, these materials blend together and become chemically and biologically contaminated, which renders their retrieval rather difficult Thus, the problems faced by waste management activities may be summarized as follows: (a) storage in open grounds is the most used method to remove waste ultimately, (b) existing landfills may be located in sensitive places (ie, in the close proximity to lodgings, surface or ground water, leisure areas), (c) existing waste landfills may be improperly designed from an environment protection point of view, thus allowing for water and soil pollution in those areas, (d) currently waste landfills may require a review of wastehandling practices insofar as waste layers are not compacted and there is no strict control of the quality and quantity of waste that is dumped on the landfill leading to the potential for fire and/or the emanation of unpleasant odors All of the above lead to the conclusion that specific measures need to be taken with regard to waste management, which would be adequate in each phase of the waste dumping process Environment-monitoring activities should comprise the observance of these measures However, one answer to these issues is to convert the waste to usable products either through (a) the production of gaseous fuels, or (b) the production of liquid fuels, or (c) the production of solid fuels Such efforts may not only solve the depletion of fuels from fossil sources but also assist in the disposal of waste materials and the ensuing environment issues However, before entering upon the process descriptions for waste conversion, it is necessary to understand the composition of domestic and industrial waste
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