Nitrogen and Phosphorus Eutrophication in Marine Ecosystems

L. Ngatia, J. Grace, D. Moriasi, Robert Taylor
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引用次数: 57

Abstract

Nitrogen (N) and phosphorus (P) eutrophication in marine ecosystems is a global problem. Marine eutrophication has a negative impact on food security, ecosystem health and economy through disruptions in tourism, fisheries and health industries. Both N and P have known point and non-point sources. Control of point sources has been easier than non-point sources particularly agricultural sources for both N and P as well as fossil fuel combustion for N, which remains a major challenge. Implementing mitigation strategies for N has been reported to be effective for P mitigation; however, the converse is not true due to mobility and volatility of N. Excessive N and P cause algae blooms, anoxic conditions, and ocean acidification with these conditions leading to dead zones, fish kill, toxin production, altered plant species diversity, food web disruption, tourism disruption and health issues. Management of N and P pollution includes reduction of leaching from farms through crop selection, timely and precise application of fertilizer and building artificial wetlands, proper management of animal waste, reduction of fossil fuel N emission, mitigating N and P from urban sources and restoration of aquatic ecosystem. Mitigation measures need to focus on dual nutrient strategy for successful N and P reduction.
海洋生态系统的氮磷富营养化
海洋生态系统的氮、磷富营养化是一个全球性问题。海洋富营养化通过破坏旅游、渔业和卫生产业,对粮食安全、生态系统健康和经济产生负面影响。N和P都有已知的点源和非点源。控制点源比控制非点源更容易,特别是农业来源的氮和磷以及化石燃料燃烧的氮,这仍然是一个重大挑战。据报告,实施氮减排战略对磷减排是有效的;然而,由于氮的流动性和波动性,反过来就不正确了。过量的氮和磷会导致藻类大量繁殖、缺氧条件和海洋酸化,而这些条件会导致死区、鱼类死亡、毒素产生、植物物种多样性改变、食物网破坏、旅游中断和健康问题。氮磷污染的管理包括通过作物选择减少农场的淋滤,及时准确地施用肥料和建造人工湿地,适当管理动物粪便,减少化石燃料氮排放,减少城市来源的氮磷和恢复水生生态系统。缓解措施需要侧重于双重营养战略,以成功地减少氮和磷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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