Temperature and soil moisture control CO2 flux and CH4 oxidation in urban ecosystems

IF 2.6 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Chemie Der Erde-Geochemistry Pub Date : 2023-09-01 DOI:10.1016/j.chemer.2023.125989
Yaroslav Bezyk , Maxim Dorodnikov , Maciej Górka , Izabela Sówka , Tymoteusz Sawiński
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引用次数: 1

Abstract

Climate-driven shifts in soil temperature and soil moisture are crucial factors that control the ecosystem-atmosphere greenhouse gas (GHG) balance. In the present study, the relationship between CO2, CH4 fluxes and soil moisture content and temperature sensitivity was examined in three dominating types of urban ecosystems: grassland, city park and arable land. The analysis was based on the field measurements at biweekly intervals over a year using a static closed chamber method in Wroclaw urban area, Poland. The observed patterns of land-atmosphere CO2 and CH4 exchange varied across land cover types and were strongly influenced by seasonal variations in temperature and soil water content. Emission of CO2 from grassland and the city park was two times higher than from the arable land. The calculated CH4 oxidation rate was one and half times higher (p < 0.05) under grassland and the city park as compared to arable land.

The estimated Q10 values ranged between 1.68 and 1.79 for CO2 and from 1.26 to 1.49 for CH4, depending on the ecosystem type. The temperature sensitivity of soil respiration decreased when the temperature was above 24.5 °C across the moisture gradient from 20 to 25 % m/v. Results suggest that despite the urban areas with agricultural land use revealed the lowest CO2 fluxes compared to grassland and city park, the former showed the lowest seasonal mean CH4 oxidation. This indicates that with ongoing warming, the higher Q10 of CO2 production vs. CH4 oxidation will further shift the carbon balance towards the source and this shift will be especially critical for arable lands in urban areas.

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温度和土壤湿度控制着城市生态系统中的二氧化碳通量和甲烷氧化作用
气候导致的土壤温度和土壤湿度变化是控制生态系统-大气温室气体(GHG)平衡的关键因素。本研究考察了草地、城市公园和耕地这三种主要城市生态系统中二氧化碳、甲烷通量和土壤水分含量与温度敏感性之间的关系。该分析基于在波兰弗罗茨瓦夫城区采用静态封闭室法每两周进行一次的实地测量。观察到的土地-大气二氧化碳和甲烷交换模式因土地覆被类型而异,并受到温度和土壤含水量季节性变化的强烈影响。草地和城市公园的二氧化碳排放量是耕地的两倍。根据生态系统类型的不同,计算得出的草地和城市公园的 CH4 氧化率是耕地的 1.5 倍(p < 0.05)。在 20% 至 25% m/v 的湿度梯度范围内,当温度高于 24.5 °C 时,土壤呼吸的温度敏感性降低。结果表明,尽管与草地和城市公园相比,使用农业用地的城市地区显示出最低的二氧化碳通量,但前者显示出最低的季节平均甲烷氧化量。这表明,随着气候的不断变暖,二氧化碳产生量与甲烷氧化量之比的 Q10 越高,碳平衡将进一步向碳源方向转变,这种转变对城市地区的耕地尤为重要。
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来源期刊
Chemie Der Erde-Geochemistry
Chemie Der Erde-Geochemistry 地学-地球化学与地球物理
CiteScore
7.10
自引率
0.00%
发文量
40
审稿时长
3.0 months
期刊介绍: GEOCHEMISTRY was founded as Chemie der Erde 1914 in Jena, and, hence, is one of the oldest journals for geochemistry-related topics. GEOCHEMISTRY (formerly Chemie der Erde / Geochemistry) publishes original research papers, short communications, reviews of selected topics, and high-class invited review articles addressed at broad geosciences audience. Publications dealing with interdisciplinary questions are particularly welcome. Young scientists are especially encouraged to submit their work. Contributions will be published exclusively in English. The journal, through very personalized consultation and its worldwide distribution, offers entry into the world of international scientific communication, and promotes interdisciplinary discussion on chemical problems in a broad spectrum of geosciences. The following topics are covered by the expertise of the members of the editorial board (see below): -cosmochemistry, meteoritics- igneous, metamorphic, and sedimentary petrology- volcanology- low & high temperature geochemistry- experimental - theoretical - field related studies- mineralogy - crystallography- environmental geosciences- archaeometry
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