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Greece
Hungary
Iceland
Ireland
Italy
Japan
Korea
Luxembourg 12 5 19 5 38 28 19 37 6 2 25 17 49 29 15 27 41 34 17 65 24 30 45 41 50 40 50 22 31 64 N/A 19 73 26 30 43 18 13 35 30 60 11 N/A 46 650 440 580 750 630 570 560 45 27 110 480 25 29 35 14 30 650 81 19 130 270 53 9 28 13 50 470 N/A 3 1.2 4.1 1.9 N/A 1 1 1.6 1.6 1.5 55 21 120 250 N/A 38 58 47 20 760 N/A 5 39 39 16 10 400 N/A 58 27 40 620 0.1 28 1.2 N/A 2.1 2.4 3.5 1 3 2.2 0.1 N/A 1.8 0.4 N/A N/A N/A N/A 12 18 N/A 340 0.1 1
80 38 30 710 N/A N/A
Mexico
Netherlands
New Zealand
Norway
Poland
Portugal
Slovak Republic
Spain
Sweden
Switzerland
Turkey
United Kingdom
United States
OECD total
BACKGROUND AND FUNDAMENTALS OF SOLID WASTE ANALYSIS AND MINIMIZATION
Total U.S. MSW generation rates (1960 to 2006)
300 250 205.2 Tons (millions) 200 150 100 88.1 50 0 1960 1970 1980 1990 Year 1995 2000 2006 121.1 214.3 238.3 251.3
Total U.S. MSW generation rates.
Per capita U.S. MSW generation rates (1960 to 2006)
5 4.5 4.5 4 Pounds/person/day 3.5 3 2.5 2 1.5 1 0.5 0 1960 1970 1980 1990 Year 1995 2000 2006 2.68 3.25 3.66 4.46 4.64 4.6
Per capita U.S. MSW generation rates.
The average American discards 4.60 lb of garbage every day. Most of this waste is compacted and buried in land lls, and as the waste continues to grow, so will the pressure on the land lls, resources, and environment. The impacts are intensi ed by an ever increasing population. The U.S. Census Bureau estimates the current world population at 6.6 billion people, with a projected annual growth rate of
AN OVERVIEW OF ENVIRONMENTAL CONCERNS
World population: 1950 to 2050 10 9 8 7 6 5 4 3 2 1 0 1950 9 billion 8 billion 7 bi lion 6 billion 5 billion 4 billion 3 billion
Population (billions)
Year
World population trends.
approximately 1.2 percent. By 2050, the world population is projected to be over 9 billion. Globalization and the development of third world countries are compounding these issues as well. More people generating more waste is not a good combination for the environment. Figure 2.10 provides a visual representation of the projected population increases. One of the central purposes of solid waste analysis and minimization is to reduce or eliminate the environmental impacts of individual companies and industries. An understanding of these impacts is critical, when addressing solid waste issues, to provide direction for reduction efforts. Some of these impacts are more important than others, thus a comprehensive understanding will allow managers and engineers to focus on more serious problems. This section provides an overview of these impacts with a focus on the effects, not the sources. These impacts are
Space availability As the world population increases and cities grow, the avail-
able space to dispose of solid waste decreases. By minimizing solid waste levels, disposal space will also decrease making land available for other uses. Land ll leachate Leachate is the liquid generated from a land ll that is created from decomposing waste. It s created after rainwater mixes with the chemical wastes or liquids present in the land ll. Once it enters the environment, the leachate is at risk of mixing with groundwater near the site, which can have very negative effects. Groundwater is the source of drinking water for over 40 percent of the urban population, and up to 90 percent of the rural population. It was formerly assumed that this source of water was not subject to contamination, but recent studies have shown that groundwater can in fact become contaminated. Land ll leachate may be virtually harmless or dangerously toxic, depending upon the characteristics of the material in the land ll. Typically, land ll leachate has high concentrations of nitrogen, iron, organic carbon, manganese, chloride, and phenols. Other chemicals including
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