密西西比河冲积谷地秃柏膝的甲烷排放量

IF 1.8 4区 环境科学与生态学 Q3 ECOLOGY
Melinda Martinez, Robert L. Bordelon, Beth A. Middleton, Jorge A. Villa, Hojeong Kang, Inyoung Jang
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引用次数: 0

摘要

在淡水森林湿地中,秃柏膝(Taxodium distichum (L.) Rich.)有可能排放大量甲烷(CH4),但只有少数研究考察了它们对温室气体的贡献。在这项研究中,我们测量了美国中南部密西西比河冲积谷地不同气候和洪水梯度下与柏树膝相关的 CH4 通量。我们使用便携式气体分析仪测量温室气体,并在膝盖上放置了一个定制的腔室。我们还使用智能手机对膝盖进行了三维激光雷达扫描,以估算膝盖的表面积和体积。我们进行了以下研究:(1) 哪些参数会影响 CH4 通量(即膝关节高度、与溪流的距离、温度、相对湿度、水位、降水量)? (2) 哪种膝关节形状测量方式(即锥形、挫面或激光雷达扫描)最适合模型数据,同时又能最大限度地提高测量效率?我们发现,膝面 CH4 通量率范围在 - 0.005 到 182 mmol m- 2 d- 1 之间。甲烷通量、水位和温度之间呈正相关,而与膝部高度呈负相关。与土壤保持饱和的地点相比,干燥时间较长的地点排放的甲烷较少。折线形状产生的膝部体积估计值在激光雷达扫描值的 12% 范围内,而圆锥形状则低估了膝部尺寸(-100%)。对柏树膝部排放和通量的进一步研究可以填补碳循环方面的知识空白,并可能成为湿地甲烷预算的主要组成部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Methane Emissions Associated with Bald Cypress Knees Across the Mississippi River Alluvial Valley

Methane Emissions Associated with Bald Cypress Knees Across the Mississippi River Alluvial Valley

In freshwater forested wetlands, bald cypress knees (Taxodium distichum (L.) Rich.) have the potential to emit large amounts of methane (CH4), but only a few studies have examined their greenhouse gas contribution. In this study, we measured CH4 fluxes associated with cypress knees across various climate and flooding gradients of the Mississippi River Alluvial Valley in southcentral United States. Greenhouse gases were measured using a portable gas analyzer with a custom-made chamber placed over the knees. We also conducted 3D lidar scans of knees using a smartphone to estimate the surface area and volume of knees. We investigated the following: (1) What parameters influence CH4 fluxes (i.e., knee height, distance to stream, temperature, relative humidity, water level, precipitation)? and (2) Which type of knee shape measurement (i.e., cone, frustrum, or lidar scan) provides the best fit to model data while maximizing measurement efficiency? We found that knee CH4 flux rates ranged from − 0.005 to 182 mmol m− 2 d− 1. There were positive correlations between CH4 fluxes, water levels, and temperature, and a negative correlation with knee height. Sites that had been dry for longer periods of time emitted less CH4 than sites where the soil remained saturated. The frustrum shape produced a knee volume estimate that was within 12% of lidar scans, whereas cone shapes underestimate knee dimensions (-100%). Further research of emissions and fluxes in cypress knees could fill knowledge gaps within the carbon cycle and could represent a major component of wetland CH4 budgets.

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来源期刊
Wetlands
Wetlands 环境科学-环境科学
CiteScore
4.00
自引率
10.00%
发文量
108
审稿时长
4.0 months
期刊介绍: Wetlands is an international journal concerned with all aspects of wetlands biology, ecology, hydrology, water chemistry, soil and sediment characteristics, management, and laws and regulations. The journal is published 6 times per year, with the goal of centralizing the publication of pioneering wetlands work that has otherwise been spread among a myriad of journals. Since wetlands research usually requires an interdisciplinary approach, the journal in not limited to specific disciplines but seeks manuscripts reporting research results from all relevant disciplines. Manuscripts focusing on management topics and regulatory considerations relevant to wetlands are also suitable. Submissions may be in the form of articles or short notes. Timely review articles will also be considered, but the subject and content should be discussed with the Editor-in-Chief (NDSU.wetlands.editor@ndsu.edu) prior to submission. All papers published in Wetlands are reviewed by two qualified peers, an Associate Editor, and the Editor-in-Chief prior to acceptance and publication. All papers must present new information, must be factual and original, and must not have been published elsewhere.
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