Israel Oceanographic and Limnological Research, Kinneret Limnological Laboratory, Migdal, Israel.
J Environ Manage. 2012 Jun 30;101:111-7. doi: 10.1016/j.jenvman.2012.01.030. Epub 2012 Mar 8.
We outlined a methodological framework for sustainable water resource management comprising of ecological monitoring, quantified water quality and an ecosystem model. We tested the proposed framework on the subtropical Lake Kinneret (Israel), a major national water resource. Methodologically, this study linked the economic activities in Lake Kinneret and its watershed (i.e. nutrient loads and water supply regimes) with lake water quality, sustaining of which was considered as the management objective. Based on analysis of the monitoring data and model scenario simulations we established quantitative relationships between changes to lake water level and nutrient loading and water quality. We assessed a set of ranges of nutrient loads from the watershed and water levels that will allow conservation of the lake water quality within pre-defined limits thereby defining limits for a sustainable management policy for the lake water resources. The defined sustainable management policy is in good correspondence with the loads and water level permissible ranges estimated from the ecological monitoring of the lake.
我们概述了一个可持续水资源管理的方法框架,包括生态监测、量化水质和生态系统模型。我们在亚热带的加利利湖(以色列)上测试了这个框架,加利利湖是一个主要的国家水资源。从方法上看,本研究将加利利湖及其流域的经济活动(即养分负荷和供水制度)与湖水水质联系起来,维持湖水水质被认为是管理目标。基于监测数据和模型情景模拟的分析,我们建立了湖泊水位和营养负荷变化与水质之间的定量关系。我们评估了一组来自流域的养分负荷和允许的湖泊水位范围,这些范围将允许在预先定义的限制内保护湖泊水质,从而为湖泊水资源的可持续管理政策定义限制。所定义的可持续管理政策与从湖泊生态监测中估计的负荷和允许的水位范围非常吻合。