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Biomass Production Potential in a River under Climate Change Scenarios

机译:气候变化情景下的河流中的生物质生产潜力

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摘要

Excessive production of biomass, in times of intensification of agriculture and climate change, is again becoming one of the biggest environmental issues. Identification of sources and effects of this phenomenon in a river catchment in the space-time continuum has been supported by advanced environmental modules combined on a digital platform (Macromodel DNS/SWAT). This tool enabled the simulation of nutrient loads and chlorophyll "a" for the Nielba River catchment (central-western Poland) for the biomass production potential (defined here as a TN:TP ratio) analysis. Major differences have been observed between sections of the Nielba River with low biomass production in the upper part, controlled by TN:TP ratios over 65, and high chlorophyll "a" concentrations in the lower part, affected by biomass transport for the flow-through lakes. Under the long and short-term RCP4.5 and RCP8.5 climate change scenarios, this pattern will be emphasized. The obtained results showed that unfavorable biomass production potential will be maintained in the upper riverine sections due to a further increase in phosphorus loads induced by precipitation growth. Precipitation alone will increase biomass production, while precipitation combined with temperature can even enhance this production in the existing hot spots.
机译:在集约化农业和气候变化的情况下,生物量过度生产,再次成为最大的环境问题之一。在空间连续内的河流集水区中识别这种现象的来源和效果已由高级环境模块在数字平台上(Macromodel DNS / SWAT)支持。该工具使Nielba河流域(中西部波兰)的营养负荷和叶绿素“A”的模拟用于生物质生产电位(定义为TN:TP比率)分析。在尼尔巴河的核心生物产量下,在上部的低生物量产生的部分之间观察到主要差异,由TN:TP比率超过65次,下部的高叶绿素“A”浓度,受到流动的生物质输送的影响湖泊。在长期和短期的RCP4.5和RCP8.5气候变化场景下,将强调这种模式。所得结果表明,由于沉淀生长诱导的磷载量进一步增加,不利的生物质生产潜力将保持在上河内部分。单独沉淀将增加生物质生产,而沉淀加上温度甚至可​​以增强现有的热点中的这种生产。

著录项

  • 来源
    《Environmental Science & Technology》 |2021年第16期|11113-11124|共12页
  • 作者单位

    Institute of Meteorology and Water Management National Research Institute Warsaw 01-673 Poland;

    Faculty of Geology Geophysics and Environmental Protection AGH University of Science and Technology Krakow 30-059 Poland;

    Institute of Meteorology and Water Management National Research Institute Warsaw 01-673 Poland;

    Faculty of Geology Geophysics and Environmental Protection AGH University of Science and Technology Krakow 30-059 Poland;

    Institute of Meteorology and Water Management National Research Institute Warsaw 01-673 Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biomass production potential; chlorophyll 'a'; river basin; Macromodel DNS/SWAT;

    机译:生物质生产潜力;叶绿素'A';流域;Macromodel DNS / SWAT;
  • 入库时间 2022-08-19 03:04:16

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