bioRxiv · 10.1101/2021.03.16.435628
Climate Change Controls Phosphorus Transport from the Watershed into Lake Kinneret (Israel)
Abstract
Part of the Kinneret watershed, the Hula Valley, was modified from wetlands - shallow lake for agricultural cultivation. Enhancement of nutrient fluxes into Lake Kinneret was predicted. Therefore, a reclamation project was implemented and eco-tourism partly replaced agriculture. Since the mid-1980s, regional climate change has been documented. Statistical evaluation of long-term records of TP (Total Phosphorus) concentrations in headwaters and potential resources in the Hula Valley was carried out to identify efficient management design targets. Significant correlation between major headwater river discharge and TP concentration was indicated, whilst the impact of external fertilizer loads and 50,000 winter migratory cranes was probably negligible. Nevertheless, confirmed severe bdamage to agricultural crops carried out by cranes led to their maximal deportation and optimization of their feeding policy. Consequently, the continuation of the present management is recommended.
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Gophen, M.. 2021-03-16. Climate Change Controls Phosphorus Transport from the Watershed into Lake Kinneret (Israel). https://doi.org/10.1101/2021.03.16.435628
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