Nonlinear trends of vegetation changes in different geomorphologic zones and land use types of the Yangtze River basin, China

Author:

Zhang Mingyang12,Liu Huiyu34ORCID,Wang Kelin12ORCID,Chen Yu134,Ren Yujia34,Yue Yuemin12,Deng Zhenhua5,Zhang Chunhua6

Affiliation:

1. Key Laboratory of Agro‐ecological Processes in Subtropical Region, Institute of Subtropical Agriculture Chinese Academy of Sciences Changsha PR China

2. Huanjiang Observation and Research Station for Karst Ecosystems Chinese Academy of Sciences Huanjiang PR China

3. Jiangsu Center for Collaborative Innovation in Geographical Information Resource Development and Application Nanjing Normal University Nanjing PR China

4. School of Geography Science Nanjing Normal University Nanjing PR China

5. Hydroelectricity Branch of Hunan Electricity Power Company State Grid Corporation of China Changsha PR China

6. Department of Geography and Geology Algoma University Sault Ste. Marie Ontario Canada

Abstract

AbstractHow land use changes and geomorphologic zones impact on vegetation nonlinear trends remains unclear in economically developed areas with complicated terrain. This paper explores the nonlinear trends of vegetation changes with normalized vegetation index (NDVI) in the Yangtze River basin, China, and further analyzes the effect of geomorphologic zones and land use changes on the nonlinear trend. The results show that: (1) Although monotonic increasing is the main trend type of vegetation NDVI (32.46%), reversal trends from decreasing to increasing and from increasing to decreasing account for 11.87% and 24.95%, respectively. (2) The vegetation change is mainly monotonically increasing in low altitude and relief zones, while that is mainly a reversal trend in high altitude and relief zones, indicating an increased risk of vegetation degradation with altitude and relief increasing. (3) The trends in most land use types are mainly monotonically increasing, but those in urban, forest, and grassland are mainly from increasing to decreasing, with area percentages as high as 32.29%, 27.25%, and 35.97%, indicating degradation risk. (4) The conversion of cropland and wetland to forestland has greatly promoted the vegetation restoration. However, a risk of vegetation degradation exists in land conversions between grassland and other land use types, especially the afforestation of grassland. Over all, considering the effects of both geomorphic zones and land use changes can help us better explore the driving of the nonlinear trends of vegetation changes and understand the process of vegetation dynamics.

Funder

National Natural Science Foundation of China

National Key Research and Development Program of China

Publisher

Wiley

Subject

Soil Science,General Environmental Science,Development,Environmental Chemistry

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