Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Water Footprint

View through CrossRef
This is an advance summary of a forthcoming article in the Oxford Research Encyclopedia of Environmental Science. Please check back later for the full article. The water footprint concept broadens the scope of traditional national and corporate water accounting as it has been previously known. It highlights the ways in which water consuming and polluting activities relate to the structure of the global economy, opening a window of opportunity to increase transparency and improve water management along whole-production and supply chains. This concept adds a new dimension to integrated water resources management in a globalized world. The water footprint is a relatively recent indicator. Created in 2002, it aims to quantify the effect of consumption and trade on the use of water resources. Specifically, the water footprint is an indicator of freshwater use that considers both direct and indirect water use of a consumer or producer. For instance, the water footprint of a product refers to the volume of freshwater used to produce the product, tracing the origin of raw material and ingredients along their respective supply chains. This novel indirect component of water use in supply chains is, in many cases, the greatest share of water use, for example, in the food and beverage sector and the apparel industry. Water footprint assessment shows the full water balance, with water consumption and pollution components specified geographically and temporally and with water consumption specified by type of source (e.g., rainwater, groundwater, or surface water). It introduces three components: 1. The blue water footprint refers to the consumption of blue water resources (i.e., surface and groundwater including natural freshwater lakes, manmade reservoirs, rivers, and aquifers) along the supply chain of a product, versus the traditional and restricted water withdrawal measure. 2. The green water footprint refers to consumption through transpiration or evaporation of green water resources (i.e., soilwater originating from rainwater). Green water maintains natural vegetation (e.g., forests, meadows, scrubland, tundra) and rain-fed agriculture, yet plays an important role in most irrigated agriculture as well. Importantly, this kind of water is not quantified in most traditional agricultural water use analyses. 3. The grey water footprint refers to pollution and is defined as the volume of freshwater that is required to assimilate the load of pollutants given natural concentrations for naturally occurring substances and existing ambient water-quality standards. The water footprint concept has been incorporated into public policies and international standards. In 2011, the Water Footprint Network adopted the Water Footprint Assessment Manual, which provides a standardized method and guidelines. In 2014, the International Organization for Standardization adopted a life cycle-based ISO 14046 standard for the water footprint; it offers guidelines to integrate water footprint analysis in life-cycle assessment for products. In practice, water footprint assessment generally results in increased awareness of critical elements in a supply chain, such as hotspots that deserve most attention, and what can be done to improve water management in those hotspots. Water footprint assessment, including the estimation of virtual water trade, applied in different countries and contexts, is producing new data and bringing larger perspectives that, in many cases, lead to a better understanding of the drivers behind water scarcity.
Title: Water Footprint
Description:
This is an advance summary of a forthcoming article in the Oxford Research Encyclopedia of Environmental Science.
Please check back later for the full article.
The water footprint concept broadens the scope of traditional national and corporate water accounting as it has been previously known.
It highlights the ways in which water consuming and polluting activities relate to the structure of the global economy, opening a window of opportunity to increase transparency and improve water management along whole-production and supply chains.
This concept adds a new dimension to integrated water resources management in a globalized world.
The water footprint is a relatively recent indicator.
Created in 2002, it aims to quantify the effect of consumption and trade on the use of water resources.
Specifically, the water footprint is an indicator of freshwater use that considers both direct and indirect water use of a consumer or producer.
For instance, the water footprint of a product refers to the volume of freshwater used to produce the product, tracing the origin of raw material and ingredients along their respective supply chains.
This novel indirect component of water use in supply chains is, in many cases, the greatest share of water use, for example, in the food and beverage sector and the apparel industry.
Water footprint assessment shows the full water balance, with water consumption and pollution components specified geographically and temporally and with water consumption specified by type of source (e.
g.
, rainwater, groundwater, or surface water).
It introduces three components: 1.
The blue water footprint refers to the consumption of blue water resources (i.
e.
, surface and groundwater including natural freshwater lakes, manmade reservoirs, rivers, and aquifers) along the supply chain of a product, versus the traditional and restricted water withdrawal measure.
2.
The green water footprint refers to consumption through transpiration or evaporation of green water resources (i.
e.
, soilwater originating from rainwater).
Green water maintains natural vegetation (e.
g.
, forests, meadows, scrubland, tundra) and rain-fed agriculture, yet plays an important role in most irrigated agriculture as well.
Importantly, this kind of water is not quantified in most traditional agricultural water use analyses.
3.
The grey water footprint refers to pollution and is defined as the volume of freshwater that is required to assimilate the load of pollutants given natural concentrations for naturally occurring substances and existing ambient water-quality standards.
The water footprint concept has been incorporated into public policies and international standards.
In 2011, the Water Footprint Network adopted the Water Footprint Assessment Manual, which provides a standardized method and guidelines.
In 2014, the International Organization for Standardization adopted a life cycle-based ISO 14046 standard for the water footprint; it offers guidelines to integrate water footprint analysis in life-cycle assessment for products.
In practice, water footprint assessment generally results in increased awareness of critical elements in a supply chain, such as hotspots that deserve most attention, and what can be done to improve water management in those hotspots.
Water footprint assessment, including the estimation of virtual water trade, applied in different countries and contexts, is producing new data and bringing larger perspectives that, in many cases, lead to a better understanding of the drivers behind water scarcity.

Related Results

An Empirical Study of the Impact of Urbanization on Industry Water Footprint in China
An Empirical Study of the Impact of Urbanization on Industry Water Footprint in China
How to advance new urbanization initiatives and reduce the water footprint of industries is one urgent issue about urbanization that needs to be resolved. Based on spatial dynamic ...
Penilaian Jejak Air dalam Penanaman Padi di Kawasan Muda Malaysia
Penilaian Jejak Air dalam Penanaman Padi di Kawasan Muda Malaysia
Water footprint (WF) can be used as a comprehensive indicator of the use of freshwater resources and as a measurable metric to determine the amount of water used per unit of crop. ...
Footprinting New Zealand urban forms and lifestyles
Footprinting New Zealand urban forms and lifestyles
<p>More than 90% of New Zealand’s ecological footprint results from the lifestyle choices of individuals, although the size and impact of their lifestyle footprint depends on...
Effects of the Eating Habits of Romanian Residents on the Water Footprint
Effects of the Eating Habits of Romanian Residents on the Water Footprint
Water footprint assessment is an analytical tool that helps us understand how activities, actions, and products from human activity influence the scarcity and pollution of water re...
Water Footprint Analysis In Krueng Aceh Watershed, Aceh Province, Indonesia
Water Footprint Analysis In Krueng Aceh Watershed, Aceh Province, Indonesia
Water is one the most important natural resources to maintain human life and all other living things in the earth. Around 65% water were consumed for drinking purpose, while others...
Every Drop of Water Footprint Counts For Humanity
Every Drop of Water Footprint Counts For Humanity
Since 2002, Water Footprint concept was developed by Hoekstra as an indicator of water use behind all the goods and services consumed by one individual or the individuals of a coun...
Integrated hydrological modelling for sustainable water allocation planning : Mkomazi Basin, South Africa case study
Integrated hydrological modelling for sustainable water allocation planning : Mkomazi Basin, South Africa case study
Allocation of freshwater resources between societal needs and natural ecological systems is of great concern for water managers. This development has challenged decision-makers reg...

Back to Top