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文献清单:“森林生态与管理”方向 | MDPI Forests

期刊名:Forests

期刊主页:https://www.mdpi.com/journal/forests

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1.

The Myth That Eucalyptus Trees Deplete Soil Water—A Review

桉树消耗土壤水分的误区——综述

https://www.mdpi.com/1999-4907/16/3/423

Medeiros, P.L.d.; Pimenta, A.S.; Miranda, N.d.O.; Melo, R.R.d.; Amorim, J.d.S.; Azevedo, T.K.B.d. The Myth That Eucalyptus Trees Deplete Soil Water—A Review. Forests 2025, 16, 423.

2.

Global Meta-Analysis of Mangrove Primary Production: Implications for Carbon Cycling in Mangrove and Other Coastal Ecosystems

全球红树林初级生产力荟萃分析:对红树林及其他沿海生态系统碳循环的启示

https://www.mdpi.com/1999-4907/16/5/747

Alongi, D.M. Global Meta-Analysis of Mangrove Primary Production: Implications for Carbon Cycling in Mangrove and Other Coastal Ecosystems. Forests 2025, 16, 747.

3.

The Impact of Forest Fires on Ecosystem Services: The Case of Greece

森林火灾对生态系统服务的影响:以希腊为例

https://www.mdpi.com/1999-4907/16/3/533

Misseyanni, A.; Christopoulou, A.; Kougkoulos, I.; Vassilakis, E.; Arianoutsou, M. The Impact of Forest Fires on Ecosystem Services: The Case of Greece. Forests 2025, 16, 533.

4.

Mangrove Damage and Early-Stage Canopy Recovery Following Hurricane Roslyn in Marismas Nacionales, Mexico

墨西哥马里斯马斯国家公园飓风罗斯林后的红树林破坏和早期树冠恢复

https://www.mdpi.com/1999-4907/16/8/1207

Velázquez-Salazar, S.; Valderrama-Landeros, L.; Villeda-Chávez, E.; Cervantes-Rodríguez, C.G.; Troche-Souza, C.; Alcántara-Maya, J.A.; Vázquez-Balderas, B.; Rodríguez-Zúñiga, M.T.; Cruz-López, M.I.; Flores-de-Santiago, F. Mangrove Damage and Early-Stage Canopy Recovery Following Hurricane Roslyn in Marismas Nacionales, Mexico. Forests 2025, 16, 1207.

5.

Edge Feathering Across Forest-Meadow Ecotones Increases Light Heterogeneity and Understory Plant Diversity

森林-草甸过渡带边缘羽状变色增加了光照异质性和林下植物多样性

https://www.mdpi.com/1999-4907/16/3/441

Kadawatha, A.D.; Mecaskey, J.M.; Swab, R.M.; Burns, J.H. Edge Feathering Across Forest-Meadow Ecotones Increases Light Heterogeneity and Understory Plant Diversity. Forests 2025, 16, 441.

6.

Climate Change Drives the Adaptive Distribution and Habitat Fragmentation of Betula albosinensis Forests in China

气候变化驱动中国白桦林适应性分布和生境破碎化

https://www.mdpi.com/1999-4907/16/1/184

Zhang, H.; Zhou, Y.; Ji, X.; Wang, Z.; Liu, Z. Climate Change Drives the Adaptive Distribution and Habitat Fragmentation of Betula albosinensis Forests in China. Forests 2025, 16, 184.

7.

Growth Rate, Tree Rings, and Wood Anatomy of a Tropical Cloud Forest Tree Invader

热带云雾林入侵树种的生长速率、年轮和木材解剖结构

https://www.mdpi.com/1999-4907/16/2/258

Williams-Linera, G.; Díaz-Toribio, M.H.; Angeles, G. Growth Rate, Tree Rings, and Wood Anatomy of a Tropical Cloud Forest Tree Invader. Forests 2025, 16, 258.

8.

The Effects of Drought Timing on Height Growth and Leaf Phenology in Pedunculate Oak (Quercus robur L.)

干旱发生时间对欧洲栎(Quercus robur L.)株高生长和叶片物候的影响

https://www.mdpi.com/1999-4907/16/3/397

Ba?urin, M.; Kati?i? Bogdan, I.; Sever, K.; Bogdan, S. The Effects of Drought Timing on Height Growth and Leaf Phenology in Pedunculate Oak (Quercus robur L.). Forests 2025, 16, 397.

9.

Holocene Forest Dynamics in Western Mediterranean Islands: Rates, Periodicity, and Trends

西地中海岛屿全新世森林动态:速率、周期性和趋势

https://www.mdpi.com/1999-4907/16/5/808

Michelangeli, F.; De Luca, E.; Magri, D.; De Santis, S.; Celant, A.; Ghilardi, M.; Vacchi, M.; Revelles, J.; Melis, R.T.; Ochando, J.; et al. Holocene Forest Dynamics in Western Mediterranean Islands: Rates, Periodicity, and Trends. Forests 2025, 16, 808.

10.

Long-Term Effects of Biochar Application on Soil Heterotrophic Respiration in a Warm–Temperate Oak Forest

生物炭施用对暖温带栎树林土壤异养呼吸的长期影响

https://www.mdpi.com/1999-4907/16/3/489

Yoshitake, S.; Enichi, K.; Tsukimori, Y.; Ohtsuka, T.; Koizumi, H.; Tomotsune, M. Long-Term Effects of Biochar Application on Soil Heterotrophic Respiration in a Warm–Temperate Oak Forest. Forests 2025, 16, 489.

11.

Allometric Growth and Carbon Sequestration of Young Kandelia obovata Plantations in a Constructed Urban Costal Wetland in Haicang Bay, Southeast China

中国东南海沧湾人工城市滨海湿地幼龄金盏花人工林异速生长及碳固存

https://www.mdpi.com/1999-4907/16/7/1126

Zheng, J.; Sun, L.; Zhong, L.; Yuan, Y.; Wang, X.; Wu, Y.; Lu, C.; Xue, S.; Song, Y. Allometric Growth and Carbon Sequestration of Young Kandelia obovata Plantations in a Constructed Urban Costal Wetland in Haicang Bay, Southeast China. Forests 2025, 16, 1126.

12.

Analysis of Wood Density to Compare the Amount of Accumulated Carbon Dioxide in the Stems of Selected Non-Native Tree Species in Poland

通过分析木材密度来比较波兰部分非本地树种树干中二氧化碳的积累量

https://www.mdpi.com/1999-4907/16/2/223

W?sik, R. Analysis of Wood Density to Compare the Amount of Accumulated Carbon Dioxide in the Stems of Selected Non-Native Tree Species in Poland. Forests 2025, 16, 223.

13.

Testing the Radial Increment and Climate–Growth Relationship Between Swiss Stone Pine European Provenances in the Romanian Carpathians

在罗马尼亚喀尔巴阡山脉测试欧洲种源瑞士石松的径向生长量与气候-生长关系

https://www.mdpi.com/1999-4907/16/3/391

Budeanu, M.; Besliu, E.; Pepelea, D. Testing the Radial Increment and Climate–Growth Relationship Between Swiss Stone Pine European Provenances in the Romanian Carpathians. Forests 2025, 16, 391.

14.

Seven Millennia of Cedrus atlantica Forest Dynamics in the Western Rif Mountains (Morocco)

摩洛哥西部里夫山脉七千年来大西洋雪松林动态

https://www.mdpi.com/1999-4907/16/9/1441

Alba-Sánchez, F.; Abel-Schaad, D.; López-Sáez, J.A.; Romera-Romera, D.; Pérez-Díaz, S.; González-Hernández, A. Seven Millennia of Cedrus atlantica Forest Dynamics in the Western Rif Mountains (Morocco). Forests 2025, 16, 1441.

15.

Long-Term Growth Trends of 18 Native and Non-Native Tree Species Based on Data from Experimental Plots Since 1878 in Brandenburg, Germany

基于德国勃兰登堡自1878年以来试验地块数据的18种本地和非本地树种的长期生长趋势

https://www.mdpi.com/1999-4907/16/2/225

Engel, M.; Hagemann, U.; Schröder, J. Long-Term Growth Trends of 18 Native and Non-Native Tree Species Based on Data from Experimental Plots Since 1878 in Brandenburg, Germany. Forests 2025, 16, 225.

Forests 期刊介绍

主编:Giacomo Alessandro Gerosa, Catholic University of Brescia, Italy

期刊主要涵盖林业及相关领域的最新科研成果。期刊目前已经被 Scopus、SCIE、Ei Compendex 等多个学术数据库收录。

2025 Impact Factor
3.1
2025 CiteScore
5.4
Time to First Decision
17.3 Days
Acceptance to Publication
2.6 Days
 
 
 
 
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