Water Systems and Global Change, Wageningen University & Research, Droevendaalsesteeg 3a, 6708 PB, Wageningen, The Netherlands.
National University of Life and Environmental Sciences of Ukraine, Heroiv Oborony 15, Kiev, 03041, Ukraine.
Ambio. 2023 Feb;52(2):339-356. doi: 10.1007/s13280-022-01780-6. Epub 2022 Sep 8.
The population in the Black Sea region is expected to decline in the future. However, a better understanding of how river pollution is affected by declining trends in population and increasing trends in economic developments and urbanization is needed. This study aims to quantify future trends in point-source emissions of nutrients, microplastics, Cryptosporidium, and triclosan to 107 rivers draining into the Black Sea. We apply a multi-pollutant model for 2010, 2050, and 2100. In the future, over half of the rivers will be more polluted than in 2010. The population in 74 sub-basins may drop by over 25% in our economic scenario with poor wastewater treatment. Over two-thirds of the people will live in cities and the economy may grow 9-fold in the region. Advanced wastewater treatment could minimize trade-offs between economy and pollution: our Sustainability scenario projects a 68-98% decline in point-source pollution by 2100. Making this future reality will require coordinated international efforts.
黑海地区的人口预计将在未来减少。然而,我们需要更好地了解人口减少趋势、经济发展和城市化趋势如何影响河流污染。本研究旨在量化未来 107 条流入黑海的河流中,点源排放的营养物、微塑料、隐孢子虫和三氯生的未来趋势。我们应用多污染物模型对 2010 年、2050 年和 2100 年进行了模拟。在未来,超过一半的河流将比 2010 年更加污染。在我们的经济情景中,由于污水处理不佳,74 个子流域的人口可能会减少 25%以上。超过三分之二的人将生活在城市,该地区的经济可能增长 9 倍。先进的污水处理可以将经济和污染之间的权衡降到最低:我们的可持续发展情景预测到 2100 年,点源污染将减少 68-98%。要使这一未来成为现实,需要国际社会的协调努力。