A shift in sulfur-cycle manipulation from atmospheric emissions to agricultural additions

ELS Hinckley, JT Crawford, H Fakhraei… - Nature Geoscience, 2020 - nature.com
Burning fossil fuels has resulted in a prominent yet unintended manipulation of the global
sulfur cycle. Emissions of sulfur dioxide and reactive sulfur to the atmosphere have caused …

Responses of forest ecosystems to increasing N deposition in China: A critical review

D Tian, E Du, L Jiang, S Ma, W Zeng, A Zou… - Environmental …, 2018 - Elsevier
China has been experiencing a rapid increase in nitrogen (N) deposition due to intensified
anthropogenic N emissions since the late 1970s. By synthesizing experimental and …

Nitrogen deposition accelerates soil carbon sequestration in tropical forests

X Lu, PM Vitousek, Q Mao, FS Gilliam… - Proceedings of the …, 2021 - National Acad Sciences
Terrestrial ecosystem carbon (C) sequestration plays an important role in ameliorating
global climate change. While tropical forests exert a disproportionately large influence on …

Long‐term, amplified responses of soil organic carbon to nitrogen addition worldwide

C Xu, X Xu, C Ju, HYH Chen, BJ Wilsey… - Global Change …, 2021 - Wiley Online Library
Soil organic carbon (SOC) is the largest carbon sink in terrestrial ecosystems and plays a
critical role in mitigating climate change. Increasing reactive nitrogen (N) in ecosystems …

Nitrogen addition stimulates soil aggregation and enhances carbon storage in terrestrial ecosystems of China: A meta‐analysis

X Lu, E Hou, J Guo, FS Gilliam, J Li… - Global Change …, 2021 - Wiley Online Library
China is experiencing a high level of atmospheric nitrogen (N) deposition, which greatly
affects the soil carbon (C) dynamics in terrestrial ecosystems. Soil aggregation contributes to …

Global response patterns of plant photosynthesis to nitrogen addition: A meta‐analysis

X Liang, T Zhang, X Lu, DS Ellsworth… - Global Change …, 2020 - Wiley Online Library
A mechanistic understanding of plant photosynthetic response is needed to reliably predict
changes in terrestrial carbon (C) gain under conditions of chronically elevated atmospheric …

Long‐term nitrogen addition modifies microbial composition and functions for slow carbon cycling and increased sequestration in tropical forest soil

J Tian, JAJ Dungait, X Lu, Y Yang… - Global change …, 2019 - Wiley Online Library
Nitrogen (N) deposition is a component of global change that has considerable impact on
belowground carbon (C) dynamics. Plant growth stimulation and alterations of fungal …

[HTML][HTML] Effects of soil pH and texture on soil carbon and nitrogen in soil profiles under different land uses in Mun River Basin, Northeast Thailand

W Zhou, G Han, M Liu, X Li - PeerJ, 2019 - peerj.com
Soil carbon and nitrogen are essential factors for agricultural production and climate
changes. A total of 106 soil samples from three agricultural lands (including two rice fields …

[HTML][HTML] 模拟大气氮沉降对中国森林生态系统影响的研究进展

鲁显楷, 莫江明, 张炜, 毛庆功, 刘荣臻, 王聪… - 热带亚热带植物 …, 2019 - jtsb.ijournals.cn
人类活动加剧了活性氮的生产和排放, 并导致氮沉降日益增加并全球化. 目前,
人类活动对全球氮循环的干扰已经超出了地球系统安全运行的界限. 中国已成为全球氮沉降的 …

Environmental controls on soil pH in planted forest and its response to nitrogen deposition

S Hong, P Gan, A Chen - Environmental research, 2019 - Elsevier
Background Soil pH is important for controlling many soil properties. The variation in soil pH
can be associated with changes in climate, soil buffering system, nitrogen deposition, and …