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Tytuł pozycji:

HESS Opinions: A planetary boundary on freshwater use is misleading

Tytuł:
HESS Opinions: A planetary boundary on freshwater use is misleading
Autorzy:
M. Heistermann
Temat:
Technology
Environmental technology. Sanitary engineering
TD1-1066
Geography. Anthropology. Recreation
Environmental sciences
GE1-350
Źródło:
Hydrology and Earth System Sciences, Vol 21, Pp 3455-3461 (2017)
Wydawca:
Copernicus Publications, 2017.
Rok publikacji:
2017
Kolekcja:
LCC:Technology
LCC:Environmental technology. Sanitary engineering
LCC:Geography. Anthropology. Recreation
LCC:Environmental sciences
Typ dokumentu:
article
Opis pliku:
electronic resource
Język:
English
ISSN:
1027-5606
1607-7938
42261937
Relacje:
https://www.hydrol-earth-syst-sci.net/21/3455/2017/hess-21-3455-2017.pdf; https://doaj.org/toc/1027-5606; https://doaj.org/toc/1607-7938
DOI:
10.5194/hess-21-3455-2017
Dostęp URL:
https://doaj.org/article/1a8036e0aafe43daa2299a42261937d0  Link otwiera się w nowym oknie
Numer akcesji:
edsdoj.1a8036e0aafe43daa2299a42261937d0
Czasopismo naukowe
In 2009, a group of prominent Earth scientists introduced the planetary boundaries (PB) framework: they suggested nine global control variables, and defined corresponding thresholds which, if crossed, could generate unacceptable environmental change. The concept builds on systems theory, and views Earth as a complex adaptive system in which anthropogenic disturbances may trigger non-linear, abrupt, and irreversible changes at the global scale, and push the Earth system outside the stable environmental state of the Holocene. While the idea has been remarkably successful in both science and policy circles, it has also raised fundamental concerns, as the majority of suggested processes and their corresponding planetary boundaries do not operate at the global scale, and thus apparently lack the potential to trigger abrupt planetary changes.This paper picks up the debate with specific regard to the planetary boundary on global freshwater use. While the bio-physical impacts of excessive water consumption are typically confined to the river basin scale, the PB proponents argue that water-induced environmental disasters could build up to planetary-scale feedbacks and system failures. So far, however, no evidence has been presented to corroborate that hypothesis. Furthermore, no coherent approach has been presented to what extent a planetary threshold value could reflect the risk of regional environmental disaster. To be sure, the PB framework was revised in 2015, extending the planetary freshwater boundary with a set of basin-level boundaries inferred from environmental water flow assumptions. Yet, no new evidence was presented, either with respect to the ability of those basin-level boundaries to reflect the risk of regional regime shifts or with respect to a potential mechanism linking river basins to the planetary scale.So while the idea of a planetary boundary on freshwater use appears intriguing, the line of arguments presented so far remains speculative and implicatory. As long as Earth system science does not present compelling evidence, the exercise of assigning actual numbers to such a boundary is arbitrary, premature, and misleading. Taken as a basis for water-related policy and management decisions, though, the idea transforms from misleading to dangerous, as it implies that we can globally offset water-related environmental impacts. A planetary boundary on freshwater use should thus be disapproved and actively refuted by the hydrological and water resources community.

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