Fossil clam shells reveal unintended carbon cycling consequences of Colorado River management

Water management that alters riverine ecosystem processes has strongly influenced deltas and the people who depend on them, but a full accounting of the trade-offs is still emerging. Using palaeoecological data, we document a surprising biogeochemical consequence of water management in the Colorado...

Full description

Bibliographic Details
Main Authors: Smith, Jansen A., Auerbach, Daniel A., Flessa, Karl W., Flecker, Alexander S., Dietl, Gregory P.
Other Authors: Univ Arizona, Dept Geosci
Language:en
Published: ROYAL SOC 2016
Subjects:
Online Access:http://hdl.handle.net/10150/622496
http://arizona.openrepository.com/arizona/handle/10150/622496
id ndltd-arizona.edu-oai-arizona.openrepository.com-10150-622496
record_format oai_dc
spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6224962017-02-10T03:00:37Z Fossil clam shells reveal unintended carbon cycling consequences of Colorado River management Smith, Jansen A. Auerbach, Daniel A. Flessa, Karl W. Flecker, Alexander S. Dietl, Gregory P. Univ Arizona, Dept Geosci carbon emission carbon sequestration estuary geohistorical records mollusc water diversion Water management that alters riverine ecosystem processes has strongly influenced deltas and the people who depend on them, but a full accounting of the trade-offs is still emerging. Using palaeoecological data, we document a surprising biogeochemical consequence of water management in the Colorado River basin. Complete allocation and consumptive use of the river's flow has altered the downstream estuarine ecosystem, including the abundance and composition of the mollusc community, an important component in estuarine carbon cycling. In particular, population declines in the endemic Colorado delta clam, Mulinia coloradoensis, from 50-125 individuals m(-2) in the pre-dam era to three individualsm-2 today, have likely resulted in a reduction, on the order of 5900-15 000 tCyr(-1) (4.1-10.6 mol Cm-2 yr(-1)), in the net carbon emissions associated with molluscs. Although this reduction is large within the estuarine system, it is small in comparison with annual global carbon emissions. Nonetheless, this finding highlights the need for further research into the effects of dams, diversions and reservoirs on the biogeochemistry of deltas and estuaries worldwide, underscoring a present need for integrated water and carbon planning. 2016-09-28 Article Fossil clam shells reveal unintended carbon cycling consequences of Colorado River management 2016, 3 (9):160170 Royal Society Open Science 2054-5703 10.1098/rsos.160170 http://hdl.handle.net/10150/622496 http://arizona.openrepository.com/arizona/handle/10150/622496 Royal Society Open Science en http://rsos.royalsocietypublishing.org/lookup/doi/10.1098/rsos.160170 © 2016 The Authors. Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/. ROYAL SOC
collection NDLTD
language en
sources NDLTD
topic carbon emission
carbon sequestration
estuary
geohistorical records
mollusc
water diversion
spellingShingle carbon emission
carbon sequestration
estuary
geohistorical records
mollusc
water diversion
Smith, Jansen A.
Auerbach, Daniel A.
Flessa, Karl W.
Flecker, Alexander S.
Dietl, Gregory P.
Fossil clam shells reveal unintended carbon cycling consequences of Colorado River management
description Water management that alters riverine ecosystem processes has strongly influenced deltas and the people who depend on them, but a full accounting of the trade-offs is still emerging. Using palaeoecological data, we document a surprising biogeochemical consequence of water management in the Colorado River basin. Complete allocation and consumptive use of the river's flow has altered the downstream estuarine ecosystem, including the abundance and composition of the mollusc community, an important component in estuarine carbon cycling. In particular, population declines in the endemic Colorado delta clam, Mulinia coloradoensis, from 50-125 individuals m(-2) in the pre-dam era to three individualsm-2 today, have likely resulted in a reduction, on the order of 5900-15 000 tCyr(-1) (4.1-10.6 mol Cm-2 yr(-1)), in the net carbon emissions associated with molluscs. Although this reduction is large within the estuarine system, it is small in comparison with annual global carbon emissions. Nonetheless, this finding highlights the need for further research into the effects of dams, diversions and reservoirs on the biogeochemistry of deltas and estuaries worldwide, underscoring a present need for integrated water and carbon planning.
author2 Univ Arizona, Dept Geosci
author_facet Univ Arizona, Dept Geosci
Smith, Jansen A.
Auerbach, Daniel A.
Flessa, Karl W.
Flecker, Alexander S.
Dietl, Gregory P.
author Smith, Jansen A.
Auerbach, Daniel A.
Flessa, Karl W.
Flecker, Alexander S.
Dietl, Gregory P.
author_sort Smith, Jansen A.
title Fossil clam shells reveal unintended carbon cycling consequences of Colorado River management
title_short Fossil clam shells reveal unintended carbon cycling consequences of Colorado River management
title_full Fossil clam shells reveal unintended carbon cycling consequences of Colorado River management
title_fullStr Fossil clam shells reveal unintended carbon cycling consequences of Colorado River management
title_full_unstemmed Fossil clam shells reveal unintended carbon cycling consequences of Colorado River management
title_sort fossil clam shells reveal unintended carbon cycling consequences of colorado river management
publisher ROYAL SOC
publishDate 2016
url http://hdl.handle.net/10150/622496
http://arizona.openrepository.com/arizona/handle/10150/622496
work_keys_str_mv AT smithjansena fossilclamshellsrevealunintendedcarboncyclingconsequencesofcoloradorivermanagement
AT auerbachdaniela fossilclamshellsrevealunintendedcarboncyclingconsequencesofcoloradorivermanagement
AT flessakarlw fossilclamshellsrevealunintendedcarboncyclingconsequencesofcoloradorivermanagement
AT fleckeralexanders fossilclamshellsrevealunintendedcarboncyclingconsequencesofcoloradorivermanagement
AT dietlgregoryp fossilclamshellsrevealunintendedcarboncyclingconsequencesofcoloradorivermanagement
_version_ 1718413634615377920