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Field scale estimates of soil carbon stocks on ten heavy textured farms across Ireland

机译:爱尔兰十个沉重织地区农场土壤碳股的现场规模估计

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摘要

The world's soils store vast amounts (≈2,500 GT) of Carbon which acts as a vital sink to counterbalance the effects of increasing atmospheric carbon dioxide.There have been fruitful efforts to quantify soil Carbon stocks at national scales,which are required for policy level decisions but lack the high resolution required to support farm specific decisions.It is hypothesised that farm scale evaluations of soils can provide insight that is masked in national scale studies and can allow for spatially explicit management approaches to optimise soil Carbon storage and sequestration,such that it can be prioritized within profitable production systems.The objective of the present study was to estimate Carbon stocks on a range of heavy textured soils at field and farm scale and to quantify Carbon storage relative to national scale estimates.Ten grassland dairy farms (mean area of 52.2 Ha) were surveyed,sampled and classified to determine soil types and quantify soil Carbon stores.The level of Carbon present (mean: 346.0 T/Ha) at these sites was greater than previous averages on such soils quantified at national scale (by a factor of 1.1-3.9 depending on soil type).Furthermore,if Carbon saturation potential was realised,the amount of Carbon stored could be increased by an average of 792.1 T/Ha in each profile (from 346.0 to 1138.1 T/Ha).Current management has fostered the retention of large stores of soil Carbon on such soils/ farms which co-exist within highly productive farm systems.As there is a societal demand to retain and enhance soil carbon stores to mitigate climate change,high Carbon soils should be identified and,under appropriate policies,commodified to offer a direct incentive to retain soil Carbon.The value of this resource should be recognised and polices to ensure a spatially explicit approach for soil Carbon management should be adopted.
机译:世界的土壤储存了大量(≈2,500GT)的碳,它充当了一个重要的水池,以平衡增加大气二氧化碳的影响。在政策层面决定所需的国家尺度中量化土壤碳储存的效率效果富有成效但缺乏支持农场特定决定所需的高分辨率。它假设土壤的农业规模评估可以提供在国家规模研究中掩盖的洞察力,可以允许空间的明确管理方法优化土壤碳储存和封存,使其能够优化土壤碳储存和封存可以在有利可图的生产系统中优先考虑。本研究的目的是估算田间和农业规模的一系列重型织地状土壤上的碳储存,并定量相对于国家规模估计的碳储存。在草地乳制品农场(平均区域)调查,取样和分类,测定52.2公顷,以确定土壤类型和量化土碳储存。水平这些位点的碳存在(平均:346.0t / ha)大于以全国规模定量的土壤的之前的平均值(取决于土壤型,根据土壤类型的因素)。如果意识到碳饱和潜力,则储存的碳可以在每个轮廓中平均增加792.1 T / HA(从346.0到1138.1 T / HA).Current管理层促进了在高度存在的土壤/农场上保留了土壤碳的大型碳储备生产农场系统。有一个社会要求保留和增强土壤碳储存,以减轻气候变化,应识别高碳土壤,并在适当的政策下,被规定提供直接动力,以保留土壤碳。这一资源的价值应认可并确保应采用策略,以确保应采用空间碳管理的空间显式方法。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|111903.1-111903.8|共8页
  • 作者单位

    Animal and Grassland Research and Innovation Centre Teagasc Moorepark Fermoy Co. Cork Ireland;

    Environment Research Centre Teagasc Johnstown Castle Wexford Co. Wexford Ireland;

    Environment Research Centre Teagasc Johnstown Castle Wexford Co. Wexford Ireland;

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

    GHG mitigation; Land management; Sequestration; Scale effect;

    机译:温室气体缓解;土地管理;封存;规模效应;

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