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Environment > Water Stats: compare key data on Czech Republic & Hungary

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Definitions

  • Availability: Water availability per capita (1961-1990 (avg.))
    Units: Thousands Cubic Meters/Person
    Units: This variable measures internal renewable water (average annual surface runoff and groundwater recharge generated from endogenous precipitation)
  • Dissolved oxygen concentration: Dissolved oxygen concentration
    Units: Milligrams/Liter
    Units: The country values represent averages of the station-level values for the three year time period 1994-96, exceptwhere data were only available for an earlier time period (1988-1993). The number of stations per country varies depending on country size; number of bodies of water; and level of participation in the GEMS monitoring system. The data from "The Wellbeing of Nations" included a smaller subset of stations representing outfalls of major watersheds. An analysis of a sample of countries with numerous stations found that the data for stations in the subset is broadly comparable to the data for all GEMS stations in those countries.
  • Drinking water > Population with improved drinking water sources > Rural: Proportion of the population using improved drinking water sources, rural.
  • Drinking water > Population with improved drinking water sources > Urban: Proportion of the population using improved drinking water sources, urban.
  • Drinking water > Population with improved drinking water sources > Urban and rural: Proportion of the population using improved drinking water sources, total.
  • Freshwater internal flow: Internal flow of water: River run-off and groundwater produced during a year through perception minus evaporation.
  • Freshwater internal flow per capita: Internal flow of water: River run-off and groundwater produced during a year through perception minus evaporation. Figures expressed per capita for the same year.
  • Freshwater pollution: Industrial organic pollutants per available freshwater
    Units: Metric Tons of BOD Emissions per Cubic Km of Water
    Units: Emissions of organic water pollutants are measured by biochemical oxygen demand, which refers to the amount of oxygen that bacteria in water will consume in breaking down waste. This is a standard water-treatment test for the presence of organic pollutants. The data from the World Bank, which represented BOD emissions (kilograms per day) were normalized by the combination of water availability per capita and water inflow availability per capita from the WaterGap2.1 model. In calculating the ESI, the base-10 logarithm of this variable was used.
  • Net freshwater supplied by water supply industry per capita: Water supplied annually, where losses during transportation have been subtracted. Figures expressed per capita for the same year.
  • Net freshwater supplied by water supply industry to households per capita: Water supplied annually to households, where losses during transportation have been subtracted. Figures expressed per capita for the same year.
  • Percent of water resources used: Proportion of total water resources used, percentage.
  • Population connected to wastewater collecting system: Population connected to wastewater collecting system.
  • Population connected to wastewater treatment: Population connected to wastewater treatment.
  • Population supplied by water supply industry: Total population supplied by water supply industry.
  • Severe water stress: Percent of country's territory under severe water stress
    Units: Percent of Land Area
    Units: This data is derived from the WaterGap 2.1 gridded hydrological model developed by the Center for Environmental Systems Research, University of Kassel, Germany. The modellers derived, for each country, grid cell by grid cell estimates of whether the water consumption exceeds 40 percent of the water available in that particular grid cell. These were then converted to land area equivalents in order to calculate the percentage of the territory under severe water stress.
  • Surface and Groundwater inflow: Inflow of surface and groundwaters for neighboring countries.
  • Salinisation: Electrical conductivity
    Units: Micro-Siemens/Centimeter
    Units: The country values represent averages of the station-level values for the three year time period 1994-96, except where data were only available for an earlier time period (1988-1993). The number of stations per country varies depending on country size; number of water bodies; and level of participation in the GEMS monitoring system.
  • Net freshwater supplied by water supply industry: Water supplied annually, where losses during transportation have been subtracted.
  • Suspended solids: Suspended solids
    Units: Natural Log of Milligrams/Liter
    Units: The country values represent averages of the station-level values for the three year time period 1994-96, exceptwhere data were only available for an earlier time period (1988-1993). The number of stations per country varies depending on country size; number of bodies of water; and level of participation in the GEMS monitoring system. Data from "The Wellbeing of Nations" included a smaller subset of stations representing outfalls of majorwatersheds. An analysis of a sample of countries with numerous stations found that the data for stations in the subset is broadly comparable to the data for all GEMS stations in those countries. The data in this table was transformed using the natural logarithm.
  • Prevalence of public-private partnerships: Cities.

    No date was available from the Wikipedia article, so we used the date of retrieval.

  • Phosphorus concentration: Phosphorus concentration
    Units: Milligrams/Liter
    Units: The country values represent averages of the station-level values for the three year time period 1994-96, except where data were only available for an earlier time period (1988-1993). The number of stations per country varies depending on country size; number of bodies of water; and level of participation in the GEMS monitoring system. The data from "The Wellbeing of Nations" included a smaller subset of stations representing outfalls of major watersheds. An analysis of a sample of countries with numerous stations found that the data for stations in the subset is broadly comparable to the data for all GEMS stations in those countries.
  • Net freshwater supplied by water supply industry to households: Water supplied annually to households, where losses during transportation have been subtracted.
  • Drinking water > Population with improved sanitation > Rural: Proportion of the population using improved sanitation facilities, rural.
  • Surface and Groundwater inflow per capita: Inflow of surface and groundwaters for neighboring countries. Figures expressed per capita for the same year.
STAT Czech Republic Hungary HISTORY
Availability 1.45 thousand cubic metres
Ranked 98th. 24% more than Hungary
1.17 thousand cubic metres
Ranked 103th.
Dissolved oxygen concentration 10.33 mls/litre
Ranked 15th.
10.82 mls/litre
Ranked 9th. 5% more than Czech Republic
Drinking water > Population with improved drinking water sources > Rural 99.64
Ranked 40th.
100
Ranked 15th. About the same as Czech Republic

Drinking water > Population with improved drinking water sources > Urban 99.88
Ranked 51st.
100
Ranked 22nd. About the same as Czech Republic

Drinking water > Population with improved drinking water sources > Urban and rural 99.82
Ranked 37th.
100
Ranked 15th. About the same as Czech Republic

Freshwater internal flow 11.22 billion cubic metres
Ranked 14th. 2 times more than Hungary
5.58 billion cubic metres
Ranked 18th.

Freshwater internal flow per capita 1,069.88 cubic metres
Ranked 18th. 92% more than Hungary
556.74 cubic metres
Ranked 21st.

Freshwater pollution 7.9 tons/cubic km
Ranked 5th. 7 times more than Hungary
1.17 tons/cubic km
Ranked 29th.
Net freshwater supplied by water supply industry per capita 49.88 cubic metres
Ranked 33th. 4% more than Hungary
48.09 cubic metres
Ranked 20th.

Net freshwater supplied by water supply industry to households per capita 32.14 cubic metres
Ranked 28th.
35.92 cubic metres
Ranked 18th. 12% more than Czech Republic

Percent of water resources used 12.92%
Ranked 44th. 2 times more than Hungary
5.37%
Ranked 58th.

Population connected to wastewater collecting system 81%
Ranked 11th. 25% more than Hungary
65%
Ranked 26th.

Population connected to wastewater treatment 76%
Ranked 10th. 33% more than Hungary
57%
Ranked 21st.

Population supplied by water supply industry 92%
Ranked 21st.
95%
Ranked 11th. 3% more than Czech Republic

Severe water stress 0.0
Ranked 115th.
0.0
Ranked 124th.
Surface and Groundwater inflow 713 million cubic metres
Ranked 16th.
119.53 billion cubic metres
Ranked 3rd. 168 times more than Czech Republic

Salinisation 592.77
Ranked 73th. 2% more than Hungary
579.26
Ranked 75th.
Net freshwater supplied by water supply industry 520 million cubic metres
Ranked 22nd. 8% more than Hungary
482 million cubic metres
Ranked 11th.

Suspended solids 3.93 mls/litre
Ranked 106th. 15% more than Hungary
3.42 mls/litre
Ranked 119th.
Prevalence of public-private partnerships Prague and 23 other cities Budapest , Szeged , Debrecen and five other cities and towns
Phosphorus concentration 0.29 mls/litre
Ranked 84th. 38% more than Hungary
0.21 mls/litre
Ranked 97th.
Net freshwater supplied by water supply industry to households 335 million cubic metres
Ranked 18th.
360 million cubic metres
Ranked 10th. 7% more than Czech Republic

Drinking water > Population with improved sanitation > Rural 99.99
Ranked 34th.
100
Ranked 18th. The same as Czech Republic

Surface and Groundwater inflow per capita 67.99 cubic metres
Ranked 15th.
11,925.59 cubic metres
Ranked 3rd. 175 times more than Czech Republic

SOURCES: Center for Environmental Systems Research, University of Kassel, WaterGAP 2.1B, 2001 via ciesin.org; United Nations Environment Programme (UNEP), Global Environmental Monitoring System/Water Quality Monitoring System, with data for an additional 29 countries from Prescott-Allen,R. The Well being of Nations, Washington, DC: Island Press, 2001; United Nations Statistics Division. Source tables; United Nations Statistics Division. Source tables; United Nations Statistics Division. Source tables; http://data.un.org/Data.aspx?d=ENV&f=variableID%3a5, Freshwater internal flow; http://data.un.org/Data.aspx?d=ENV&f=variableID%3a5, Freshwater internal flow. Population figures from World Bank: (1) United Nations Population Division. World Population Prospects, (2) United Nations Statistical Division. Population and Vital Statistics Report (various years), (3) Census reports and other statistical publications from national statistical offices, (4) Eurostat: Demographic Statistics, (5) Secretariat of the Pacific Community: Statistics and Demography Programme, and (6) U.S. Census Bureau: International Database.; World Bank, World Development Indicators 2001, Washington, DC: World Bank, 2001 (for BOD emissions)and Center for Environmental Systems Research, University of Kassel, WaterGap 2.1, 2000 (for data on waterquantity). via ciesin.org; http://data.un.org/Data.aspx?d=ENV&f=variableID%3a29, Net freshwater supplied by water supply industry. Population figures from World Bank: (1) United Nations Population Division. World Population Prospects, (2) United Nations Statistical Division. Population and Vital Statistics Report (various years), (3) Census reports and other statistical publications from national statistical offices, (4) Eurostat: Demographic Statistics, (5) Secretariat of the Pacific Community: Statistics and Demography Programme, and (6) U.S. Census Bureau: International Database.; http://data.un.org/Data.aspx?d=ENV&f=variableID%3a38, Net freshwater supplied by water supply industry to: Households. Population figures from World Bank: (1) United Nations Population Division. World Population Prospects, (2) United Nations Statistical Division. Population and Vital Statistics Report (various years), (3) Census reports and other statistical publications from national statistical offices, (4) Eurostat: Demographic Statistics, (5) Secretariat of the Pacific Community: Statistics and Demography Programme, and (6) U.S. Census Bureau: International Database.; United Nations Statistics Division. Source tables; United Nations Statistics Division. Source tables; United Nations Statistics Division. Source tables; United Nations Statistics Division. Source tables; Center for Environmental Systems Research, University of Kassel, WaterGap 2.1, 2000 via ciesin.org; http://data.un.org/Data.aspx?d=ENV&f=variableID%3a8, Inflow of surface and groundwaters; http://data.un.org/Data.aspx?d=ENV&f=variableID%3a29, Net freshwater supplied by water supply industry; United Nations Environment Programme (UNEP), Global Environmental Monitoring System/Water Quality Monitoring System, with data for an additional 29 countries from Prescott-Allen, R. The Well being of Nations, Washington, DC: Island Press, 2001; Wikipedia: Water privatization (Prevalence of public-private partnerships) (World Bank / Public-Private Infrastructure Advisory Facility: Public-Private Partnerships for Urban Water Utilities: A Review of Experiences in Developing Countries , by Philippe Marin, 2009, Overview, pp. 6-7.); http://data.un.org/Data.aspx?d=ENV&f=variableID%3a38, Net freshwater supplied by water supply industry to: Households; United Nations Statistics Division Original html; http://data.un.org/Data.aspx?d=ENV&f=variableID%3a8, Inflow of surface and groundwaters. Population figures from World Bank: (1) United Nations Population Division. World Population Prospects, (2) United Nations Statistical Division. Population and Vital Statistics Report (various years), (3) Census reports and other statistical publications from national statistical offices, (4) Eurostat: Demographic Statistics, (5) Secretariat of the Pacific Community: Statistics and Demography Programme, and (6) U.S. Census Bureau: International Database.

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