Arid
DOI10.1016/j.jenvman.2017.07.014
Modelling the impacts of altered management practices, land use and climate changes on the water quality of the Millbrook catchment reservoir system in South Australia
Nguyen, Hong Hanh1; Recknagel, Friedrich1; Meyer, Wayne1; Frizenschaf, Jacqueline2; Shrestha, Manoj Kumar1
通讯作者Nguyen, Hong Hanh
来源期刊JOURNAL OF ENVIRONMENTAL MANAGEMENT
ISSN0301-4797
EISSN1095-8630
出版年2017
卷号202页码:1-11
英文摘要

Sustainable management of drinking water reservoirs requires taking into account the potential effects of their catchments’ development. This study is an attempt to estimate the daily patterns of nutrients transport in the catchment reservoir systems through the application of the ensemble of complementary models SWAT-SALMO. SWAT quantifies flow, nitrate and phosphate loadings originating in catchments before entering downstream reservoirs meanwhile SALMO determines phosphate, nitrate, and chlorophyll-a concentrations within the reservoirs. The study applies to the semi-arid Millbrook catchment-reservoir system that supplies drinking water to north-eastern suburbs of Adelaide, South Australia. The catchment hosts viti-and horticultural land uses. The warm-monomictic, mesotrophic reservoir is artificially aerated in summer. After validating the simulation results for both Millbrook catchment and reservoir, a comprehensive scenario analysis has been conducted to reveal cascading effects of altered management practices, land uses and climate conditions on water quality in the reservoir. Results suggest that the effect on reservoir condition in summer would be severe, most likely resulting in chlorophyll-a concentrations of greater than 40 mu g/l if the artificial destratification was not applied from early summer. A 50% curbing of water diversion from an external pipeline to the catchment will slightly limit chlorophyll-a concentrations by 1.22% as an effect of reduced inflow phosphate loads. The simulation of prospective land use scenarios converting 50% of present pasture in the Millbrook catchment into residential and orchards areas indicates an increase of summer chlorophyll-a concentrations by 9.5-107.9%, respectively in the reservoir. Global warming scenarios based on the high emission simulated by SWAT-SALMO did result in earlier growth of chlorophyll-a but overall the effects on water quality in the Millbrook reservoir was not significant. However scenarios combining global warming and land use changes resulted in significant eutrophication effects in the reservoir, especially in the unmanaged condition with stratification in summer. This study has demonstrated that complementary model ensembles like SWAT SALMO allow to comprehend more realistically cascading effects of distinct catchment processes on internal reservoir’s processes, and facilitate integrated management scenarios. (C) 2017 Elsevier Ltd. All rights reserved.


英文关键词SWAT SALMO Millbrook reservoir Land use change Climate change Eutrophication
类型Article
语种英语
国家Australia
收录类别SCI-E
WOS记录号WOS:000408784000001
WOS关键词SCENARIO ANALYSIS ; ASSESSMENT-TOOL ; SALMO ; SWAT ; LAKE ; EUTROPHICATION ; ADAPTATION ; VALIDATION ; LOADS ; TERM
WOS类目Environmental Sciences
WOS研究方向Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/200364
作者单位1.Univ Adelaide, Dept Ecol & Environm Sci, Adelaide, SA, Australia;
2.South Australian Water Corp, Adelaide, SA, Australia
推荐引用方式
GB/T 7714
Nguyen, Hong Hanh,Recknagel, Friedrich,Meyer, Wayne,et al. Modelling the impacts of altered management practices, land use and climate changes on the water quality of the Millbrook catchment reservoir system in South Australia[J],2017,202:1-11.
APA Nguyen, Hong Hanh,Recknagel, Friedrich,Meyer, Wayne,Frizenschaf, Jacqueline,&Shrestha, Manoj Kumar.(2017).Modelling the impacts of altered management practices, land use and climate changes on the water quality of the Millbrook catchment reservoir system in South Australia.JOURNAL OF ENVIRONMENTAL MANAGEMENT,202,1-11.
MLA Nguyen, Hong Hanh,et al."Modelling the impacts of altered management practices, land use and climate changes on the water quality of the Millbrook catchment reservoir system in South Australia".JOURNAL OF ENVIRONMENTAL MANAGEMENT 202(2017):1-11.
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