Organic Carbon Storage and <sup>14</sup>C Apparent Age of Upland and Riparian Soils in a Montane Subtropical Moist Forest of Southwestern China

Upland and riparian soils usually differ in soil texture and moisture conditions, thus, likely varying in carbon storage and turnover time. However, few studies have differentiated their functions on the storage of soil organic carbon (SOC) in sub-tropical broad-leaved evergreen forests. In this stu...

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Main Authors: Xianbin Liu, Xiaoming Zou, Min Cao, Tushou Luo
Format: Article
Language:English
Published: MDPI AG 2020-06-01
Series:Forests
Subjects:
Online Access:https://www.mdpi.com/1999-4907/11/6/645
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spelling doaj-4fd24f04231c45d79769546ee7bbaedb2020-11-25T03:09:31ZengMDPI AGForests1999-49072020-06-011164564510.3390/f11060645Organic Carbon Storage and <sup>14</sup>C Apparent Age of Upland and Riparian Soils in a Montane Subtropical Moist Forest of Southwestern ChinaXianbin Liu0Xiaoming Zou1Min Cao2Tushou Luo3College of Chemistry, Biology and Environment, Yuxi Normal University, Yuxi 653100, ChinaDepartment of Environmental Sciences, College of Natural Sciences, University of Puerto Rico, P.O. Box 70377, San Juan, PR 00936-8377, USACAS Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Kunming 650223, ChinaResearch Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, ChinaUpland and riparian soils usually differ in soil texture and moisture conditions, thus, likely varying in carbon storage and turnover time. However, few studies have differentiated their functions on the storage of soil organic carbon (SOC) in sub-tropical broad-leaved evergreen forests. In this study, we aim to uncover the SOC storage and <sup>14</sup>C apparent age, in the upland and riparian soils of a primary evergreen broad-leaved montane subtropical moist forest in the Ailao Mountains of southwestern China. We sampled the upland and riparian soils along four soil profiles down to the parent material at regular intervals from two local representative watersheds, and determined SOC concentrations, δ<sup>13</sup>C values and <sup>14</sup>C apparent ages. We found that SOC concentration decreased exponentially and <sup>14</sup>C apparent age increased linearly with soil depth in the four soil profiles. Although, soil depth was deeper in the upland soil profiles than the riparian soil profiles, the weighted mean SOC concentration was significantly greater in the riparian soil (25.7 ± 3.9 g/kg) than the upland soil (19.7 ± 2.3 g/kg), but has an equal total SOC content per unit of ground area around 21 kg/m<sup>2</sup> in the two different type soils. SOC δ<sup>13</sup>C values varied between –23.7 (± 0.8) ‰ and –33.2 (± 0.2) ‰ in the two upland soil profiles and between –25.5 (± 0.4) ‰ and –36.8 (± 0.4) ‰ along the two riparian soil profiles, with greater variation in the riparian soil profiles than the upland soil profiles. The slope of increase in SOC <sup>14</sup>C apparent age along soil depth in the riparian soil profiles was greater than in the upland soil profiles. The oldest apparent age of SOC <sup>14</sup>C was 23260 (± 230) years BP (before present, i.e., 1950) in the riparian soil profiles and 19045 (± 150) years BP in the upland soil profiles. Our data suggest that the decomposition of SOC is slower in the riparian soil than in the upland soil, and the increased SOC loss in the upland soil from deforestation may partially be compensated by the deposition of the eroded upland SOC in the riparian area, as an under-appreciated carbon sink.https://www.mdpi.com/1999-4907/11/6/645Ailao Mountainsriparian soilSOC concentrationSOC δ13Csoil profilesoil residence time
collection DOAJ
language English
format Article
sources DOAJ
author Xianbin Liu
Xiaoming Zou
Min Cao
Tushou Luo
spellingShingle Xianbin Liu
Xiaoming Zou
Min Cao
Tushou Luo
Organic Carbon Storage and <sup>14</sup>C Apparent Age of Upland and Riparian Soils in a Montane Subtropical Moist Forest of Southwestern China
Forests
Ailao Mountains
riparian soil
SOC concentration
SOC δ13C
soil profile
soil residence time
author_facet Xianbin Liu
Xiaoming Zou
Min Cao
Tushou Luo
author_sort Xianbin Liu
title Organic Carbon Storage and <sup>14</sup>C Apparent Age of Upland and Riparian Soils in a Montane Subtropical Moist Forest of Southwestern China
title_short Organic Carbon Storage and <sup>14</sup>C Apparent Age of Upland and Riparian Soils in a Montane Subtropical Moist Forest of Southwestern China
title_full Organic Carbon Storage and <sup>14</sup>C Apparent Age of Upland and Riparian Soils in a Montane Subtropical Moist Forest of Southwestern China
title_fullStr Organic Carbon Storage and <sup>14</sup>C Apparent Age of Upland and Riparian Soils in a Montane Subtropical Moist Forest of Southwestern China
title_full_unstemmed Organic Carbon Storage and <sup>14</sup>C Apparent Age of Upland and Riparian Soils in a Montane Subtropical Moist Forest of Southwestern China
title_sort organic carbon storage and <sup>14</sup>c apparent age of upland and riparian soils in a montane subtropical moist forest of southwestern china
publisher MDPI AG
series Forests
issn 1999-4907
publishDate 2020-06-01
description Upland and riparian soils usually differ in soil texture and moisture conditions, thus, likely varying in carbon storage and turnover time. However, few studies have differentiated their functions on the storage of soil organic carbon (SOC) in sub-tropical broad-leaved evergreen forests. In this study, we aim to uncover the SOC storage and <sup>14</sup>C apparent age, in the upland and riparian soils of a primary evergreen broad-leaved montane subtropical moist forest in the Ailao Mountains of southwestern China. We sampled the upland and riparian soils along four soil profiles down to the parent material at regular intervals from two local representative watersheds, and determined SOC concentrations, δ<sup>13</sup>C values and <sup>14</sup>C apparent ages. We found that SOC concentration decreased exponentially and <sup>14</sup>C apparent age increased linearly with soil depth in the four soil profiles. Although, soil depth was deeper in the upland soil profiles than the riparian soil profiles, the weighted mean SOC concentration was significantly greater in the riparian soil (25.7 ± 3.9 g/kg) than the upland soil (19.7 ± 2.3 g/kg), but has an equal total SOC content per unit of ground area around 21 kg/m<sup>2</sup> in the two different type soils. SOC δ<sup>13</sup>C values varied between –23.7 (± 0.8) ‰ and –33.2 (± 0.2) ‰ in the two upland soil profiles and between –25.5 (± 0.4) ‰ and –36.8 (± 0.4) ‰ along the two riparian soil profiles, with greater variation in the riparian soil profiles than the upland soil profiles. The slope of increase in SOC <sup>14</sup>C apparent age along soil depth in the riparian soil profiles was greater than in the upland soil profiles. The oldest apparent age of SOC <sup>14</sup>C was 23260 (± 230) years BP (before present, i.e., 1950) in the riparian soil profiles and 19045 (± 150) years BP in the upland soil profiles. Our data suggest that the decomposition of SOC is slower in the riparian soil than in the upland soil, and the increased SOC loss in the upland soil from deforestation may partially be compensated by the deposition of the eroded upland SOC in the riparian area, as an under-appreciated carbon sink.
topic Ailao Mountains
riparian soil
SOC concentration
SOC δ13C
soil profile
soil residence time
url https://www.mdpi.com/1999-4907/11/6/645
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