BIOLOGY AND FERTILITY OF SOILS土壤生物学与肥力

BIOLOGY AND FERTILITY OF SOILS(英文缩写 BIOL FERT SOILS),ISSN 0178-2762,eISSN 1432-0789,中文译名:土壤生物学与肥力 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
6.800
JCR 分区
Q1
CAS 分区
B2
近一年发文量
1
本站 PubMed 收录统计

发文量统计区间:2025-09-24 至 2026-09-24,按本站收录文献的发表日期统计。

ISSN: 0178-2762 · eISSN: 1432-0789 · 缩写: BIOL FERT SOILS ·中文: 土壤生物学与肥力

期刊介绍

选择期刊介绍栏目

期刊简介

《Biology and Fertility of Soils》是土壤生物学与肥力领域的国际期刊,聚焦土壤生物群落、有机质转化与养分循环的相互作用。主要发表田间与实验室研究,涵盖微生物、动物及根系过程对土壤功能的影响。读者群为土壤学、生态学、农学及环境科学研究者,适合关注地下生态过程与可持续土壤管理的专业人士。

研究方向

主要方向包括土壤微生物与动物多样性、根际过程、有机质分解与固存、氮磷等养分循环、生物固氮、菌根共生及土壤健康指标。论文类型以原创研究为主,兼有综述和方法学文章,强调机制解析与田间验证的结合。

期刊特色

研究取向偏重生态机制与农业应用并重,要求实验设计严谨、数据充分,鼓励跨学科方法。论文通常需阐明生物过程与土壤功能的联系。适合从事土壤生态、微生物生态、植物营养及可持续农业的研究人员与研究生阅读和投稿。

投稿难度

投稿难度中等偏上,对创新性和机制深度有较高要求。建议在投稿前强化假设驱动、补充田间或长期数据,并清晰呈现生物与理化过程的关联。若仅描述性报告或重复验证,录用机会相对有限,需谨慎评估稿件与期刊范围的契合度。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20216.605Q1
20226.500Q1
20235.100Q1
20245.600Q1
20256.800Q1

BIOLOGY AND FERTILITY OF SOILS 最新收录文献

  1. JCR分区: Q1 CAS分区: B2 影响因子: 6.8

    1. Biochar reshapes soil bacterial community composition and survival strategies: a meta-analysis revealing trade-offs between microbial stability and functional complexity.

    作者:
    Jianwei Li, Jeewani H Peduruhewa, Robert W Brown, David R Chadwick, Robert I Griffiths, Haoran Fu, Hongfeng Bian, LianXi Sheng, Qinqxu Ma, Davey L Jones
    日期:
    2026-01-01

    As a promising strategy for improving soil health and mitigating climate change, biochar has received increasing attention in recent years. However, findings regarding its microbial effects are often …

  2. JCR分区: Q1 CAS分区: B2 影响因子: 6.8

    2. Fates of slurry-nitrogen applied to mountain grasslands: the importance of dinitrogen emissions versus plant N uptake.

    作者:
    Michael Dannenmann, Irina Yankelzon, Svenja Wähling, Elisabeth Ramm, Mirella Schreiber, Ulrike Ostler, Marcus Schlingmann, Claus Florian Stange, Ralf Kiese, Klaus Butterbach-Bahl, Johannes Friedl, Clemens Scheer
    日期:
    2025-01-01

    Intensive fertilization of grasslands with cattle slurry can cause high environmental nitrogen (N) losses in form of ammonia (NH), nitrous oxide (NO), and nitrate (NO ) leaching. Still, knowledge on s…

  3. JCR分区: Q1 CAS分区: B2 影响因子: 6.8

    3. Root exudation of contrasting drought-stressed pearl millet genotypes conveys varying biological nitrification inhibition (BNI) activity.

    作者:
    Arindam Ghatak, Florian Schindler, Gert Bachmann, Doris Engelmeier, Prasad Bajaj, Martin Brenner, Lena Fragner, Rajeev K Varshney, Guntur Venkata Subbarao, Palak Chaturvedi, Wolfram Weckwerth
    日期:
    2022-01-01

    Roots secrete a vast array of low molecular weight compounds into the soil broadly referred to as root exudates. It is a key mechanism by which plants and soil microbes interact in the rhizosphere. Th…

  4. JCR分区: Q1 CAS分区: B2 影响因子: 6.8

    4. The effect of agroecosystem management on the distribution of C functional groups in soil organic matter: A review.

    作者:
    Yuki Audette, Katelyn A Congreves, Kimberley Schneider, Geovanna C Zaro, Amanda L P Nunes, Hongjie Zhang, R Paul Voroney
    日期:
    2021-01-01

    To improve soil health and to aid in climate change mitigation, the quantity of soil organic matter (SOM) should be maintained or increased over the long run. In doing so, not only the total quantity …

  5. JCR分区: Q1 CAS分区: B2 影响因子: 6.8

    5. Effects of urease and nitrification inhibitors on soil N, nitrifier abundance and activity in a sandy loam soil.

    作者:
    Qingling Fu, Maïder Abadie, Aimeric Blaud, Alison Carswell, Tom H Misselbrook, Ian M Clark, Penny R Hirsch
    日期:
    2020-01-01

    Inhibitors of urease and ammonia monooxygenase can limit the rate of conversion of urea to ammonia and ammonia to nitrate, respectively, potentially improving N fertilizer use efficiency and reducing …

  6. JCR分区: Q1 CAS分区: B2 影响因子: 6.8

    6. Exotic earthworms maintain soil biodiversity by altering bottom-up effects of plants on the composition of soil microbial groups and nematode communities.

    作者:
    Yuanhu Shao, Weixin Zhang, Nico Eisenhauer, Tao Liu, Olga Ferlian, Xiaoli Wang, Yanmei Xiong, Chenfei Liang, Shenglei Fu
    日期:
    2019-04-01

    Bottom-up effects of plants on soil communities can be modified by the activity of exotic earthworms, by altering resource availability for soil food webs through feeding, burrowing, and casting activ…

  7. JCR分区: Q1 CAS分区: B2 影响因子: 6.8

    7. Nature and mechanisms of aluminium toxicity, tolerance and amelioration in symbiotic legumes and rhizobia.

    作者:
    Sanjay K Jaiswal, Judith Naamala, Felix D Dakora
    日期:
    2018-01-01

    Recent findings on the effect of aluminium (Al) on the functioning of legumes and their associated microsymbionts are reviewed here. Al represents 7% of solid matter in the Earth's crust and is an imp…

  8. JCR分区: Q1 CAS分区: B2 影响因子: 6.8

    8. Stoichiometric constraints on the microbial processing of carbon with soil depth along a riparian hillslope.

    作者:
    Laura L de Sosa, Helen C Glanville, Miles R Marshall, Andrea Schnepf, David M Cooper, Paul W Hill, Andrew Binley, Davey L Jones
    日期:
    2018-01-01

    Soil organic matter (SOM) content is a key indicator of riparian soil functioning and in the provision of ecosystem services such as water retention, flood alleviation, pollutant attenuation and carbo…

  9. JCR分区: Q1 CAS分区: B2 影响因子: 6.8

    9. {"_":"An assessment of factors controlling NO and CO emissions from crop residues using different measurement approaches.","sub":["2","2"]}

    作者:
    Giuseppe Badagliacca, Paolo Ruisi, Robert M Rees, Sergio Saia
    日期:
    2017-01-01

    Management of plant residues plays an important role in maintaining soil quality and nutrient availability for plants and microbes. However, there is considerable uncertainty regarding the factors con…

  10. JCR分区: Q1 CAS分区: B2 影响因子: 6.8

    10. Crop residues exacerbate the negative effects of extreme flooding on soil quality.

    作者:
    Antonio R Sánchez-Rodríguez, Paul W Hill, David R Chadwick, Davey L Jones
    日期:
    2017-01-01

    Extreme flood events are predicted to have a negative impact on soil quality. Currently, there is a lack of information about the effect of agricultural practices on soil functioning and microbial pro…

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指标接近的期刊