Reviews and syntheses: A scoping review evaluating the potential application of ecohydrological models for northern peatland restoration

Mariana P. Silva, Mark G. Healy, Laurence Gill
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Abstract

Abstract. Peatland restoration and rehabilitation action has become more widely acknowledged as a necessary response to mitigating climate change risks and improving global carbon storage. Peatland ecosystems require restoration time spans of the order of decades and, thus, cannot be dependent upon the shorter-term monitoring often carried out in research projects. Hydrological assessments using geospatial tools provide the basis for planning restoration works as well as analysing associated environmental influences. “Restoration” encompasses applications to pre-restoration and post-restoration scenarios for both bogs and fens, across a range of environmental impact fields. The aim of this scoping review is to identify, describe, and categorize current process-based modelling uses in peatlands in order to investigate the applicability and appropriateness of ecohydrological and/or hydrological models for northern peatland restoration. Two literature searches were conducted using the entire Web of Science database in September 2022 and August 2023. Of the final 211 papers included in the review, models and their applications were categorized according to this review's research interests in seven distinct categories aggregating the papers' research themes and model outputs. Restoration site context was added by identifying 229 unique study site locations from the full database, which were catalogued and analysed against raster data for the Köppen–Geiger climate classification scheme. A majority of northern peatland sites were in temperate oceanic zones or humid continental zones that experienced snow. Over one in five models from the full database of papers were unnamed and likely intended for single use. Key themes emerging from topics covered by papers in the database included the following: modelling restoration development from a bog growth perspective, the prioritization of modelling greenhouse gas (GHG) emissions dynamics as a part of policymaking, the importance of spatial connectivity within or alongside process-based models to represent heterogeneous systems, and the increased prevalence of remote sensing and machine learning techniques to predict restoration progress with little physical site intervention. Models are presented according to their application to peatlands or broader ecosystem and organized from most to least complex. This review provides valuable context for the application of ecohydrological models in determining strategies for peatland restoration and evaluating post-intervention development over time.
审查与综合:评估生态水文模型在北部泥炭地恢复中的潜在应用的范围审查
摘要泥炭地恢复和复原行动已被越来越多的人视为减轻气候变化风险和改善全球碳储存的必要对策。泥炭地生态系统的恢复需要数十年的时间跨度,因此不能依赖于研究项目中经常开展的短期监测。利用地理空间工具进行的水文评估为规划恢复工程以及分析相关的环境影响奠定了基础。"恢复 "包括应用于沼泽和沼泽地的恢复前和恢复后方案,涉及一系列环境影响领域。本次范围审查的目的是确定、描述和分类当前泥炭地使用的基于过程的建模方法,以调查生态水文和/或水文模型在北方泥炭地恢复中的适用性和适当性。2022 年 9 月和 2023 年 8 月,我们使用整个科学网数据库进行了两次文献检索。在最终纳入综述的 211 篇论文中,根据本综述的研究兴趣,将模型及其应用分为七个不同的类别,汇总了论文的研究主题和模型输出。从完整数据库中确定了 229 个独特的研究地点,并根据柯本-盖革气候分类方案的栅格数据对这些地点进行了编目和分析,从而增加了恢复地点的背景信息。大部分北方泥炭地位于温带海洋区或下雪的湿润大陆区。在完整的论文数据库中,每五篇论文中有一篇以上的模型未命名,很可能是为了一次性使用。数据库中的论文所涉及的主题包括:从沼泽生长的角度模拟恢复发展;作为决策的一部分,优先模拟温室气体(GHG)排放动态;在基于过程的模型中或与之并存的空间连通性对于表现异质系统的重要性;以及遥感和机器学习技术在预测恢复进展方面的日益普及,而对现场的实际干预很少。本综述根据模型在泥炭地或更广泛的生态系统中的应用情况,从最复杂到最不复杂对模型进行了介绍。本综述为应用生态水文模型确定泥炭地恢复战略和评估干预后随时间推移的发展情况提供了宝贵的背景资料。
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