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文献清单:“森林土壤”方向 | MDPI Forests |
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期刊名: Forests
期刊主页:https://www.mdpi.com/journal/forests
还在为筛选文献而发愁?别急,这份“森林土壤”方向的文献清单,也许能为你提供灵感!
1.
Forest Soil Microbiomes: A Review of Key Research from 2003 to 2023
森林土壤微生物组:2003年至2023年关键研究综述
https://www.mdpi.com/1999-4907/16/1/148
Onet, A.; Grenni, P.; Onet, C.; Stoian, V.; Crisan, V. Forest Soil Microbiomes: A Review of Key Research from 2003 to 2023. Forests 2025, 16, 148.
2.
Soil Aggregation, Aggregate Stability, and Associated Soil Organic Carbon in Huron Mountains Forests, Michigan, USA
美国密歇根州休伦山脉森林的土壤团聚体、团聚体稳定性和相关土壤有机碳
https://www.mdpi.com/1999-4907/16/2/219
Chen, X.; Gsell, T.; Yunger, J.; Randa, L.; Peng, Y.; Carrington, M. Soil Aggregation, Aggregate Stability, and Associated Soil Organic Carbon in Huron Mountains Forests, Michigan, USA. Forests 2025, 16, 219.
3.
Relationship Between Forest Structure and Soil Characteristics with Flooded and Non-Flooded Rainforests of Northern Amazonia (Brazil)
亚马逊北部(巴西)淹没区和非淹没区雨林的森林结构与土壤特征之间的关系
https://www.mdpi.com/1999-4907/16/5/793
Barbosa Pimentel, E.N.; Botelho Jerônimo, L.; Tavares de Paula, M.; Lencinas, M.V.; Martínez Pastur, G.; Rubio, G. Relationship Between Forest Structure and Soil Characteristics with Flooded and Non-Flooded Rainforests of Northern Amazonia (Brazil). Forests 2025, 16, 793.
4.
Patterns of Soil Microbial Residue Carbon Accumulation in Different Plantation Forest Types: A Case Study from Beijing
不同人工林类型土壤微生物残留碳积累模式:以北京为例
https://www.mdpi.com/1999-4907/16/2/288
Kang, X.; Li, S.; Sun, X.; Wang, C.; Li, J.; Xu, J. Patterns of Soil Microbial Residue Carbon Accumulation in Different Plantation Forest Types: A Case Study from Beijing. Forests 2025, 16, 288.
5.
Effects of Wood-Derived Biochar on Soil Respiration of a European Beech Forest Under Current Climate and Simulated Climate Change
木质生物炭对当前气候和模拟气候变化下欧洲山毛榉林土壤呼吸作用的影响
https://www.mdpi.com/1999-4907/16/3/474
Vannini, A.; Tarasconi, D.; Pietropoli, F.; Forte, T.G.W.; Grillo, F.; Carbognani, M.; Petraglia, A. Effects of Wood-Derived Biochar on Soil Respiration of a European Beech Forest Under Current Climate and Simulated Climate Change. Forests 2025, 16, 474.
6.
The Influence of the Root Diameter of Cunninghamia lanceolata (Chinese Fir) on the Strength and Deformation Behavior of Sand
杉木根径对砂土强度和变形行为的影响
https://www.mdpi.com/1999-4907/16/1/135
Xia, X.; Jiang, Y.; Hu, X.; Zhu, Y.; Shah, I. The Influence of the Root Diameter of Cunninghamia lanceolata (Chinese Fir) on the Strength and Deformation Behavior of Sand. Forests 2025, 16, 135.
7.
Farmland Afforestation by Poplar Shelterbelts Increased Soil Inorganic Carbon but Showed Ambiguous Effects on Soil Organic Carbon as Revealed by Carbon Isotopic Composition: Inter-Fraction and Inter-Site Differences in Northern China
杨树防护林造林增加了土壤无机碳,对土壤有机碳的影响尚不明确——基于碳同位素组成的证据:中国北方不同组分和不同地点间的差异
https://www.mdpi.com/1999-4907/16/2/328
Ji, Q.; Jiang, H.; Xu, Z.; Zhu, M.; Zhang, S.; Wang, H.; Tang, Z.; Wang, Q.; Wang, W. Farmland Afforestation by Poplar Shelterbelts Increased Soil Inorganic Carbon but Showed Ambiguous Effects on Soil Organic Carbon as Revealed by Carbon Isotopic Composition: Inter-Fraction and Inter-Site Differences in Northern China. Forests 2025, 16, 328.
8.
Soil Physicochemical Improvement in Coastal Saline–Alkali Lands Through Salix matsudana × alba Plantation
通过白柳种植改善沿海盐碱地土壤理化性质
https://www.mdpi.com/1999-4907/16/6/933
Chen, Z.; Chen, Z.; Gao, H. Soil Physicochemical Improvement in Coastal Saline–Alkali Lands Through Salix matsudana × alba Plantation. Forests 2025, 16, 933.
9.
Phytoaccumulation of Heavy Metals in Flowers of Tilia cordata Mill. and Soil on Background Enzymatic Activity
椴树(Tilia cordata Mill.)花朵和土壤中重金属的植物富集及其与背景酶活性的关系
https://www.mdpi.com/1999-4907/16/6/991
Figas, A.; Tomaszewska-Sowa, M.; Siwik-Ziomek, A.; Kobierski, M. Phytoaccumulation of Heavy Metals in Flowers of Tilia cordata Mill. and Soil on Background Enzymatic Activity. Forests 2025, 16, 991.
10.
Mycorrhizal Fungi, Heavy Metal Contamination, and Greenhouse Gas Fluxes in Forest Soils
森林土壤中的菌根真菌、重金属污染和温室气体通量
https://www.mdpi.com/1999-4907/17/1/12
Krchnavý, R.; Hudoková, H.; Kubov, M.; Jamnická, G.; Gren?íková, S.; Pavlík, M.; Kiiza, A.; Razzak, A.; Fleischer, P., Sr.; Fleischer, P., Jr. Mycorrhizal Fungi, Heavy Metal Contamination, and Greenhouse Gas Fluxes in Forest Soils. Forests 2026, 17, 12.
11.
Effect of Slope Gradient and Litter on Soil Moisture Content in Temperate Deciduous Broadleaf Forest
坡度和凋落物对温带落叶阔叶林土壤含水量的影响
https://www.mdpi.com/1999-4907/16/9/1495
Lee, M.; Seo, D.; Park, J.S.; Lee, J. Effect of Slope Gradient and Litter on Soil Moisture Content in Temperate Deciduous Broadleaf Forest. Forests 2025, 16, 1495.
12.
Functional Potential and Network-Based Insights into the Rhizosphere Microbiomes of Quercus mongolica and Larix kaempferi Stands
蒙古栎和落叶松根际微生物组的功能潜力和基于网络的见解
https://www.mdpi.com/1999-4907/16/6/883
Lee, S.H.; Park, J.Y.; Jeon, S.H.; Kim, D.S.; Lee, S.H.; Park, Y.D.; Kang, J.W. Functional Potential and Network-Based Insights into the Rhizosphere Microbiomes of Quercus mongolica and Larix kaempferi Stands. Forests 2025, 16, 883.
13.
Soil Structure Characteristics in Three Mountainous Regions in Bulgaria Under Different Land Uses
保加利亚三个山区不同土地利用方式下的土壤结构特征
https://www.mdpi.com/1999-4907/16/7/1065
Kercheva, M.; Paparkova, T.; Dimitrov, E.; Doneva, K.; Nedyalkova, K.; Perfanova, J.; Sechkova, R.; Velizarova, E.; Glushkova, M. Soil Structure Characteristics in Three Mountainous Regions in Bulgaria Under Different Land Uses. Forests 2025, 16, 1065.
14.
Temperature-Dependent Soil Organic Carbon Turnover in Taiwan’s Forests Revealed by Stable Carbon Isotope Analysis
稳定碳同位素分析揭示台湾森林土壤有机碳周转的温度依赖性
https://www.mdpi.com/1999-4907/16/2/342
Zheng, L.-W.; Wu, M.; Li, Q.; Zheng, Z.; Huang, Z.; Lee, T.-Y.; Kao, S.-J. Temperature-Dependent Soil Organic Carbon Turnover in Taiwan’s Forests Revealed by Stable Carbon Isotope Analysis. Forests 2025, 16, 342.
15.
Applicability of Visible–Near-Infrared Spectroscopy to Predicting Water Retention in Japanese Forest Soils
可见光-近红外光谱技术在预测日本森林土壤保水能力中的应用
https://www.mdpi.com/1999-4907/16/7/1182
Sekiguchi, R.; Tsurita, T.; Kobayashi, M.; Imaya, A. Applicability of Visible–Near-Infrared Spectroscopy to Predicting Water Retention in Japanese Forest Soils. Forests 2025, 16, 1182.
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。
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2025 Impact Factor
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3.1
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2025 CiteScore
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5.4
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Time to First Decision
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17.3 Days
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Acceptance to Publication
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2.6 Days
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