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Dynamic modelling of the Ganga river system: impacts of future climate and socio-economic change on flows and nitrogen fluxes in India and Bangladesh

Dynamic modelling of the Ganga river system: impacts of future climate and socio-economic change on flows and nitrogen fluxes in India and Bangladesh
Dynamic modelling of the Ganga river system: impacts of future climate and socio-economic change on flows and nitrogen fluxes in India and Bangladesh
This study investigates the potential impacts of future climate and socio-economic change on the flow and nitrogen fluxes of the Ganga river system. This is the first basin scale water quality study for the Ganga considering climate change at 25 km resolution together with socio-economic scenarios. The revised dynamic, process-based INCA model was used to simulate hydrology and water quality within the complex multi-branched river basins. All climate realizations utilized in the study predict increases in temperature and rainfall by the 2050s with significant increase by the 2090s. These changes generate associated increases in monsoon flows and increased availability of water for groundwater recharge and irrigation, but also more frequent flooding. Decreased concentrations of nitrate and ammonia are expected due to increased dilution. Different future socio-economic scenarios were found to have a significant impact on water quality at the downstream end of the Ganga. A less sustainable future resulted in a deterioration of water quality due to the pressures from higher population growth, land use change, increased sewage treatment discharges, enhanced atmospheric nitrogen deposition, and water abstraction. However, water quality was found to improve under a more sustainable strategy as envisaged in the Ganga clean-up plan.

2050-7887
1-16
Whitehead, P
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Sarkar, S.
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Jin, L.
53827541-9b74-4222-b5ae-7d573e964b51
Futter, M.
d14abdac-a310-4c0f-a28e-bb798de3a32b
Ceasar, J.
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Barbour, E.
c5ddeccb-28b3-4ac0-a2c5-c401e2cec9bd
Butterfields, D.
ac49eb42-5fdb-40c9-8894-85da10c19042
Sinha, R.
b220d5e0-6fdb-4c8f-80ae-26702bcd3314
Nicholls, R.J.
4ce1e355-cc5d-4702-8124-820932c57076
Hutton, C.
9102617b-caf7-4538-9414-c29e72f5fe2e
Leckie, H.
d7af040f-afd1-4cf8-9aa4-03dfa129aec1
Whitehead, P
5dfb7549-7f3d-4e18-b99b-db00418fdd5c
Sarkar, S.
1436f28d-7c78-465b-9cdb-a1d99d39a3ce
Jin, L.
53827541-9b74-4222-b5ae-7d573e964b51
Futter, M.
d14abdac-a310-4c0f-a28e-bb798de3a32b
Ceasar, J.
5568b78b-0dde-4fb6-ac3e-d5d65a8a67c8
Barbour, E.
c5ddeccb-28b3-4ac0-a2c5-c401e2cec9bd
Butterfields, D.
ac49eb42-5fdb-40c9-8894-85da10c19042
Sinha, R.
b220d5e0-6fdb-4c8f-80ae-26702bcd3314
Nicholls, R.J.
4ce1e355-cc5d-4702-8124-820932c57076
Hutton, C.
9102617b-caf7-4538-9414-c29e72f5fe2e
Leckie, H.
d7af040f-afd1-4cf8-9aa4-03dfa129aec1

Whitehead, P, Sarkar, S., Jin, L., Futter, M., Ceasar, J., Barbour, E., Butterfields, D., Sinha, R., Nicholls, R.J., Hutton, C. and Leckie, H. (2015) Dynamic modelling of the Ganga river system: impacts of future climate and socio-economic change on flows and nitrogen fluxes in India and Bangladesh. Environmental Science: Processes & Impacts, 1-16. (doi:10.1039/C4EM00616J).

Record type: Article

Abstract

This study investigates the potential impacts of future climate and socio-economic change on the flow and nitrogen fluxes of the Ganga river system. This is the first basin scale water quality study for the Ganga considering climate change at 25 km resolution together with socio-economic scenarios. The revised dynamic, process-based INCA model was used to simulate hydrology and water quality within the complex multi-branched river basins. All climate realizations utilized in the study predict increases in temperature and rainfall by the 2050s with significant increase by the 2090s. These changes generate associated increases in monsoon flows and increased availability of water for groundwater recharge and irrigation, but also more frequent flooding. Decreased concentrations of nitrate and ammonia are expected due to increased dilution. Different future socio-economic scenarios were found to have a significant impact on water quality at the downstream end of the Ganga. A less sustainable future resulted in a deterioration of water quality due to the pressures from higher population growth, land use change, increased sewage treatment discharges, enhanced atmospheric nitrogen deposition, and water abstraction. However, water quality was found to improve under a more sustainable strategy as envisaged in the Ganga clean-up plan.

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More information

Accepted/In Press date: 4 February 2015
e-pub ahead of print date: 5 February 2015
Organisations: Energy & Climate Change Group

Identifiers

Local EPrints ID: 376016
URI: http://eprints.soton.ac.uk/id/eprint/376016
ISSN: 2050-7887
PURE UUID: b7c5f063-0628-41bf-8f07-dc5fefc7929a
ORCID for R.J. Nicholls: ORCID iD orcid.org/0000-0002-9715-1109
ORCID for C. Hutton: ORCID iD orcid.org/0000-0002-5896-756X

Catalogue record

Date deposited: 21 Apr 2015 13:43
Last modified: 15 Mar 2024 03:18

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Contributors

Author: P Whitehead
Author: S. Sarkar
Author: L. Jin
Author: M. Futter
Author: J. Ceasar
Author: E. Barbour
Author: D. Butterfields
Author: R. Sinha
Author: R.J. Nicholls ORCID iD
Author: C. Hutton ORCID iD
Author: H. Leckie

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