HR: 0800h
AN: H21F-0812 [Abstracts]
TI: Transfer of European Approach to Groundwater Monitoring in China
AU: * Zhou, Y
EM: y.zhou@unesco-ihe.org
AF: UNESCO-IHE Institute for Water Education, Westvest 7,
P.O.Box 3015, Delft, 2601 DA, Netherlands
AB:
Major groundwater development in North China has been a key factor in the huge economic growth and the
achievement of self sufficiency in food production. Groundwater accounts for more than 70 percent of urban water
supply and provides important source of irrigation water during dry period. This has however caused continuous
groundwater level decline and many associated problems: hundreds of thousands of dry wells, dry river beds,
land subsidence, seawater intrusion and groundwater quality deterioration. Groundwater levels in the shallow
unconfined aquifers have fallen 10m up to 50m, at an average rate of 1m/year. In the deep confined aquifers
groundwater levels have commonly fallen 30m up to 90m, at an average rate of 3 to 5m/year. Furthermore,
elevated nitrate concentrations have been found in shallow groundwater in large scale. Pesticides have been
detected in vulnerable aquifers. Urgent actions are necessary for aquifer recovery and mitigating groundwater
pollution. Groundwater quantity and quality monitoring plays a very important role in formulating cost-effective
groundwater protection strategies.
In 2000 European Union initiated a Water Framework Directive (2000/60/EC) to protect all waters in Europe. The
objective is to achieve good water and ecological status by 2015 cross all member states. The Directive requires
monitoring surface and groundwater in all river basins. A guidance document for monitoring was developed and
published in 2003. Groundwater monitoring programs are distinguished into groundwater level monitoring and
groundwater quality monitoring. Groundwater quality monitoring is further divided into surveillance monitoring and
operational monitoring. The monitoring guidance specifies key principles for the design and operation of
monitoring networks.
A Sino-Dutch cooperation project was developed to transfer European approach to groundwater monitoring in
China. The project aims at building a China Groundwater Information Centre. Case studies in 3 pilot areas have
been conducted to build research capacities of the central and provincial groundwater information centers in
providing groundwater information services to decision makers and public. Groundwater regime zoning and
pollution risk maps were used to lay-out groundwater quantity and quality monitoring networks, respectively.
Automatic groundwater recorders were installed in selected observation wells. ArcGIS based regional
groundwater information systems were constructed and used to create groundwater regime zoning and pollution
risk maps. Steady state groundwater models have been constructed and calibrated. Transient groundwater
models are under calibration. Groundwater resources development scenarios were formulated. The model will
be used to predict what will be consequences in next 20 years if current situation continues as business as
usual. Possibilities of reducing groundwater abstraction and opportunities of artificially enhanced groundwater
recharge will be analyzed. Combination of decreasing abstraction and increasing recharge may lead to a
sustainable plan of future groundwater resources development.
DE: 1831 Groundwater quality
DE: 1834 Human impacts
DE: 1848 Monitoring networks
DE: 1871 Surface water quality
DE: 1880 Water management (6334)
SC: Hydrology [H]
MN: 2007 Fall Meeting