Latitudinal and Altitudinal Patterns and Influencing Factors of Soil Humus Carbon in the Low-Latitude Plateau Regions

Author:

Zhou Hong123,Yan Youjin134,Dai Quanhou13,He Zhongjun2,Yi Xingsong13

Affiliation:

1. College of Forestry, Guizhou University, Guiyang 550025, China

2. College of Resources and Environment, Yunnan Agricultural University, Kunming 650201, China

3. Research Center for Soil Erosion & Ecological Restoration, Guizhou University, Guiyang 550025, China

4. Institute for Forest Resources & Environment of Guizhou, Guizhou University, Guiyang 550025, China

Abstract

The composition of forest soil organic matter is an important part of the global carbon cycle, which is effective by temperature and moisture. As we all know, the temperature and moisture in the low-latitude plateau regions are very sensitive to changes in latitude and altitude. However, the composition of soil organic matter response to changes in latitude and altitude in the low-latitude plateau regions is unknown. In this study, the effects of latitude (21–29° N) and altitude (500–4000 m) on soil organic carbon (SOC) and humic acid carbon (HAC), fulvic acid carbon (FAC), and humin carbon (HMC) in forest surface soil (0–10 cm) were investigated. The results showed that the contents of soil organic carbon and humus increased with the increase in altitude and latitude. The effect of altitude on the composition of organic matter was significant only at 23° N to 25° N. The composition of organic matter is not only regulated by mean annual temperature (MAT) and soil moisture content (SMC) but also affected by soil pH, carbon to nitrogen ratio (C/N), and powder. The soil surface layer (0–10 cm) carbon sequestration capacity in high-latitude and high-altitude areas is stronger than that in low-latitude and low-altitude areas. As a consequence, in today’s response to global climate change, the high carbon sequestration capacity of high latitude and high altitude areas should be given attention and protection.

Funder

Foundation of Postgraduate of Guizhou Province

General project of Natural Science Foundation of science and Technology Department of Yunnan Province

The fourth forest resources planning and design survey in Yunnan Province forest soil professional survey

Publisher

MDPI AG

Subject

Forestry

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