Effects of Lotus (Nelumbo nucifera Gaertn.) on the Methane Emission in Littoral Zones of a Subtropical Lake, China

Author:

Zhou Wenchang1ORCID,Yuan Xiangjuan2ORCID,He Liangkang3,Shi Yuhu14,Xu Xiuhuan14,Ou Wenhui14,Xiang Shanshan14,Yang Jiawei1,Fu Tian1

Affiliation:

1. Institute of Wetland Research, Hubei Academy of Forestry, Wuhan 430075, China

2. School of Environmental Engineering, Wuhan Textile University, Wuhan 430073, China

3. College of Horticulture and Gardening, Yangtze University, Jingzhou 434025, China

4. Hubei Hong Lake Wetland Ecosystem Research Station, Honghu 433200, China

Abstract

Freshwater lakes represent a potential source of methane (CH4) emission into the atmosphere. However, the CH4 emission contribution to the total emission in the littoral zones of lakes, especially emergent macrophytes (e.g., lotus), is poorly known. Lotus has been cultivated in almost all provinces in China; it is not only an aquatic plant, but also a kind of vegetable. In this study, two sampling zones (lotus plant and open water) were established in the lake of the middle reaches of the Yangtze River. The CH4 emission was measured using a floating opaque chamber and gas chromatography between April and December in the years 2021 and 2022. The results indicated that the flux of CH4 emissions ranged from 0.10 to 59.75 mg m−2 h−1, with an average value of 5.61 mg m−2 h−1, in the open water, while ranging from 0.19 to 57.32 mg m−2 h−1, with an average value of 17.14 mg m−2 h−1, in the lotus plant zone. The maximal CH4 emissions occurred in July and August for the open water, which was highly related to the air and water temperature, whereas it happened in September for the lotus plant zone, possibly due to the high vegetation biomass, indirectly enhancing the high soil organic carbon content, plant-mediated CH4 emission, as well as the lower dissolved oxygen concentration, thus strengthening the production and emissions of CH4. Considering the carbon emissions (both CH4 and CO2) and plant productivity, although greater CH4 emission occurred in the lotus plant zone, it could still represent a potential carbon sink (213 g m−2 yr−1) compared to the open water.

Funder

National Natural Foundation of China

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference50 articles.

1. A global inventory of lakes based on high-resolution satellite imagery;Verpoorter;Geophys. Res. Lett.,2014

2. Freshwater methane emissions offset the continental carbon sink;Bastviken;Science,2011

3. Masson-Delmotte, V., Zhai, P., Pirani, A., Connors, S.L., Péan, C., Berger, S., Caud, N., Chen, Y., Goldfarb, L., and Gomis, M.I. (2021). Climate Change 2021: The Physical Science Basis, Cambridge University Press.

4. The global methane budget 2000–2012;Saunois;Earth Syst. Sci. Data,2016

5. Methane feedbacks to the global climate system in a warmer world;Dean;Rev. Geophys.,2018

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