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温带沼泽地水产养殖的温室气体减排潜力

Greenhouse Gas Mitigation Potential of Temperate Fen Paludicultures.

作者信息

Bockermann Carla, Eickenscheidt Tim, Drösler Matthias

机构信息

Weihenstephan-Triesdorf University of Applied Sciences, Peatland Science Centre (PSC), Freising, Germany.

Technical University of Munich, TUM School of Life Sciences, Freising, Germany.

出版信息

Glob Chang Biol. 2025 Aug;31(8):e70385. doi: 10.1111/gcb.70385.

DOI:10.1111/gcb.70385
PMID:40739741
Abstract

Peatlands lose their valuable carbon (C) sink function under intensive land use and turn into greenhouse gas (GHG) emission hotspots. Despite scarce empirical evidence, paludiculture is expected to have significant GHG mitigation potential for organic soils. This study provides the first comprehensive dataset on full GHG balances for newly established fen paludicultures over a water table (WT) gradient spanning an annual mean WT of -0.29 to +0.04 m, stratified into moderately rewetted conditions (-0.30 < WT < -0.10 m) and rewetted conditions (WT ≥ -0.10 m). We used manual and novel automated chambers to measure annual carbon dioxide (CO), methane, and nitrous oxide emissions from five typical fen plant species (Carex acutiformis, Phalaris arundinacea, Phragmites australis, Typha angustifolia, and Typha latifolia) newly established as peatland biomass crops in three temperate fen peatlands in southern Germany. Our study confirms a significant GHG mitigation potential for the tested plant species and found a C sink function of paludiculture. The results yield preliminary emission factors of -0.1 and -12.0 t CO-equivalents ha year under moderately rewetted conditions (n = 39) and under rewetted conditions (n = 43), respectively. We further identify an optimal annual mean WT of -0.07 m for maximizing GHG reduction across all plant species and sites with a net C sink achieved at a mean annual WT of ≥ -0.12 m. Presuming the conversion of arable land into paludiculture, a mitigation potential of up to -51.9 t CO-equivalents is attainable per hectare and year. These findings highlight that well-managed paludiculture could make a considerable contribution toward achieving the politically targeted CO sink function in the LULUCF sector.

摘要

在集约土地利用下,泥炭地失去了其宝贵的碳汇功能,变成了温室气体排放热点。尽管实证证据稀少,但预计草本沼泽栽培对有机土壤具有显著的温室气体减排潜力。本研究提供了首个关于新建立的富营养草本沼泽栽培在地下水位梯度上完整温室气体平衡的综合数据集,该梯度的年平均地下水位为-0.29至+0.04米,分为适度再湿润条件(-0.30<地下水位<-0.10米)和再湿润条件(地下水位≥-

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本文引用的文献

1
Global peatland greenhouse gas dynamics: state of the art, processes, and perspectives.全球泥炭地温室气体动态:现状、过程与展望
New Phytol. 2025 Apr;246(1):94-102. doi: 10.1111/nph.20436. Epub 2025 Feb 1.
2
The hidden roots of wetland methane emissions.湿地甲烷排放的隐藏根源。
Glob Chang Biol. 2024 Feb;30(2):e17127. doi: 10.1111/gcb.17127.
3
Sources of nitrous oxide emissions from agriculturally managed peatlands.农业管理泥炭地中一氧化二氮排放的来源。
Glob Chang Biol. 2024 Jan;30(1):e17144. doi: 10.1111/gcb.17144.
4
High-resolution (1 km) Köppen-Geiger maps for 1901-2099 based on constrained CMIP6 projections.高分辨率(1 公里)的柯本-盖格尔气候分类图,时间范围为 1901 年至 2099 年,基于约束的 CMIP6 投影。
Sci Data. 2023 Oct 23;10(1):724. doi: 10.1038/s41597-023-02549-6.
5
Full-cycle greenhouse gas balance of a Sphagnum paludiculture site on former bog grassland in Germany.德国前泥炭草地沼泽地栽培泥炭藓的全生命周期温室气体平衡。
Sci Total Environ. 2023 Jun 15;877:162943. doi: 10.1016/j.scitotenv.2023.162943. Epub 2023 Mar 20.
6
Carbon and climate implications of rewetting a raised bog in Ireland.爱尔兰再湿化高位沼泽的碳和气候影响。
Glob Chang Biol. 2022 Nov;28(21):6349-6365. doi: 10.1111/gcb.16359. Epub 2022 Aug 15.
7
Responsible agriculture must adapt to the wetland character of mid-latitude peatlands.负责任的农业必须适应中纬度泥炭地的湿地特性。
Glob Chang Biol. 2022 Jun;28(12):3795-3811. doi: 10.1111/gcb.16152. Epub 2022 Mar 17.
8
Overriding water table control on managed peatland greenhouse gas emissions.超越地下水层对管理泥炭地温室气体排放的控制。
Nature. 2021 May;593(7860):548-552. doi: 10.1038/s41586-021-03523-1. Epub 2021 Apr 21.
9
The impact of occasional drought periods on vegetation spread and greenhouse gas exchange in rewetted fens.间歇性干旱期对湿地恢复区植被扩散和温室气体交换的影响。
Philos Trans R Soc Lond B Biol Sci. 2020 Oct 26;375(1810):20190685. doi: 10.1098/rstb.2019.0685. Epub 2020 Sep 7.
10
Nutrient removal potential and biomass production by Phragmites australis and Typha latifolia on European rewetted peat and mineral soils.芦苇和香蒲对欧洲回灌泥炭和矿质土壤的养分去除潜力和生物量生产。
Sci Total Environ. 2020 Dec 10;747:141102. doi: 10.1016/j.scitotenv.2020.141102. Epub 2020 Jul 24.