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EUROPEAN JOURNAL OF AGRONOMY
基本信息
期刊名称 EUROPEAN JOURNAL OF AGRONOMY
EUR J AGRON
期刊ISSN 1161-0301
期刊官方网站 http://www.elsevier.com/wps/find/journaldescription.cws_home/600108/description#description
是否OA
出版商 Elsevier
出版周期 Bimonthly
始发年份 1992
年文章数 138
最新影响因子 5.2(2022)  scijournal影响因子  greensci影响因子
中科院SCI期刊分区
大类学科 小类学科 Top 综述
农林科学1区 AGRONOMY 农艺学2区
CiteScore
CiteScore排名 CiteScore SJR SNIP
学科 排名 百分位 4.13 1.371 1.653
Agricultural and Biological Sciences
Soil Science
11 / 116 90%
Agricultural and Biological Sciences
Agronomy and Crop Science
21 / 320 93%
Agricultural and Biological Sciences
Plant Science
28 / 404 93%
补充信息
自引率 6.90%
H-index 85
SCI收录状况 Science Citation Index Expanded
官方审稿时间
网友分享审稿时间 数据统计中,敬请期待。
PubMed Central (PML) http://www.ncbi.nlm.nih.gov/nlmcatalog?term=1161-0301%5BISSN%5D
投稿指南
期刊投稿网址 http://ees.elsevier.com/euragr/
收稿范围

The European Journal of Agronomy, the official journal of the European Society for Agronomy, publishes original research papers reporting experimental and theoretical contributions to field-based agronomy and crop science. The journal will consider research at the field level for agricultural, horticultural and tree crops, that uses comprehensive and explanatory approaches. The EJA covers the following topics:

  • crop physiology
  • crop production and management including irrigation, fertilization and soil management
  • agroclimatology and modelling
  • plant-soil relationships
  • crop quality and post-harvest physiology
  • farming and cropping systems
  • agroecosystems and the environment
  • crop-weed interactions and management
  • organic farming
  • horticultural crops
  • papers from the European Society for Agronomy bi-annual meetings

In determining the suitability of submitted articles for publication, particular scrutiny is placed on the degree of novelty and significance of the research and the extent to which it adds to existing knowledge in agronomy. Confirmatory research and results routine cultivar or agronomy trials in which there are no identified biological processes will not normally be considered for publication. Modelling studies have to be informative and innovative and used to illustrate important generic issues facing agronomy. Studies in which a model is only tested against observed data for its goodness-of-fit are not generally welcome. Field experiments need to be either multi-locational or multi-year and normally three at least and be accompanied by appropriate statistical analysis. Glasshouse experiments are only accepted in exceptional circumstances. Review articles are normally written on invitation from the Editor-in-Chief. Authors intending to prepare review papers for the Journal are advised to consult the Editor-in-Chief before writing their reviews. Forthcoming special issues are focusing on uncertainty analysis in models and the status of non-renewable resources in agriculture.


收录体裁
Original research papers (regular papers)
Review articles
投稿指南
投稿模板
参考文献格式
编辑信息
Editor-in-Chief
Natural Resources Institute Finland, HELSINKI, Finland Adaptation to climate change, sustainable intensification of agricultural systems, diversification of crop production, designing crop rotations, resilience to climatic variability, land use change and optimization, yield trends, yield gaps, genetic changes, crop physiology, yield and quality formationCereals, grain legumes, rapeseed, other grain/seed crops, sugar beet, potato, grasslands
Associate Editors-in-Chief

B. Basso

Michigan State University, East Lansing, Michigan, United States Crop simulation models (applications, validation, improvements), precision agriculture, remote sensing, GIS in agronomy, climate change, climate variability impact on crop yield and environmental outcomes (N leaching, GHG emissions), nitrogen and water management, soil health, soil organic matter dynamics, ecophysiology, resource use efficiency, cropping systems ecology, conservation agricultureMaize, wheat and other cereals, legumes
University of Seville, Sevilla, Spain Fertilization management (all nutrients), soil management (tillage, amendments), plant-soil relationships, conservation agriculture, water management, soil fertility, soil functions as affected by crop management, soil degradation control (erosion, salinity, acidity), pest and diseases, weeds, quality issuesCereals, tree orchards (in particular olive), horticultural crops

T. Döring

University of Bonn, Bonn, Germany Organic agriculture; Cropping system; Crop rotation; Legume; Diversification; Insect-plant-interactions
Editorial Board

M. Acutis

University of Milan–Bicocca, Milano, Italy

S. Archontoulis

Iowa State University, Ames, Iowa, United States Crop modeling; Crop physiology; APSIM; Soil carbon and nitrogen cycling; Soil water; Maize; Soybean; Management practices; Root growth; Groundwater table

S. Asseng

University of Florida, Gainesville, Florida, United States Cropping systems analysis; Crop productivity and sustainability; Atmosphere-crop-soil systems; Managing climate variability; Climate change impact and adaptation

G. Bergkvist

Swedish University of Agricultural Sciences, Uppsala, Sweden Cropping systems; Agronomy; Weed control; Nutrient use efficiency; Cover crops; Intercropping

L. Borrás

National University of Rosario, Rosario, Argentina Crop management; Yield; Yield components; Grain quality; Maize; Soybean; Sorghum; Dry milling; Seed development; Seed weight

G. Bragato

Research Centre for the Soil-Plant System Branch of Gorizia, Gorizia, Italy

H. Brown

Plant and Food Research Lincoln, Christchurch, New Zealand

D. Cammarano

The James Hutton Institute, Dundee, United Kingdom Agronomy; Crop Simulation Models; Precision Agriculture; Remote Sensing; Climate Change; Climate Variability; Nitrogen Management
Kansas State University, Manhattan, Kansas, United States Crop eco-physiology and agronomy, Crop modelling, Corn, soybean, sorghum and oilseeds, Rainfed and Irrigated farming systems, Remote sensing

N. Colbach

Institut Nationale de la Recherche Agronomique (INRA), Dijon Cedex, France

C.A.C. Crusciol

Sao Paulo State University Julio de Mesquita Filho - Botucatu Campus, BOTUCATU, Brazil

J.P.M. De Melo e Abreu

University of Lisbon, Lisboa, Portugal

P. Debaeke

Institut Nationale de la Recherche Agronomique (INRA), Castanet Tolosan, France
University of Bonn, Bonn, Germany Climate change (impacts); Agroecosystems (ecophysiology); Resource use and management (land, water); Systems analysis and modelling; Agricultural sustainability assessment

M. Fotyma

Institute of Soil Science and Plant Cultivation, Pulawy, Poland

M. Fuller

University of Plymouth, Plymouth, United Kingdom

A. Gardarin

Physical Chemistry and Ecotoxicology of Contaminated Agrosystem Soils, Thiverval Grignon, France Weed science : analysing their life-cycle, their biology, their ecology, accounting for their diversity using concepts from ecology, modelling their dynamics, analysing and modelling their interactions with soil, climate and cropping systems;spatial dynamics of plants (weeds and feral oilseed rape) in agroecosystems (agronomical and landscape ecology approaches, metapopulation models), intercropping (mainly plant establishment and early growth in cereal-legume intercrops, effects on weed control); forage quality in grasslands with a strong ecological approach (functional ecology, plant traits, community ecology, effects of management regimes); biological regulations in plurispecific cropping systems. The originality of my background lies in the fact that I use concepts and methods from ecology to address agronomical questions.

C. Hoffmann

B.W. Hütsch

Martin Luther University Halle Wittenberg, Halle, Germany

C.R. Jensen

University of Copenhagen Section for Crop Sciences, Taastrup, Denmark

Y. Kato

The University of Tokyo, Bunkyo-Ku, Tokyo, Japan Crop physiology and agronomy; Rice; Rainfed and irrigated rice production systems in the tropical, sub-tropical and temperate regions of Asia

J. Kirkegaard

Commonwealth Scientific and Industrial Research Organisation, Canberra, Australia

G. Lemaire

INRA Centre d'Orléans, Lusignan, France

R.J. Lopez-Bellido

University of Cordoba, Cordoba, Spain

B. Maerlaender

Gottingen University Institute of Sugar Beet Research, Göttingen, Germany

M. Mastrorilli

CREA Research Centre of Agriculture and Environment Bari, Bari, Italy

H. Meinke

University of Tasmania, Hobart, Australia Availability, Stability and Environment. 1) Agricultural systems, 2) Systems modelling, 3) Agricultural value chains, 4) Climate risk Assessment and management, 5) Societal impact of science, 6) Sustainable agricultural practices, 7) Food security and stability, 8) Food systems 9) Land and food, 10) Productive landscapes

D. Moot

Lincoln University Department of Agricultural Sciences, Christchurch, New Zealand

C. Nendel

Leibniz Centre for Agricultural Landscape Research, Muncheberg, Germany soil and crop modeling; climate change adaptation; soil organic matter mineralisation; C and N cycling in agro-ecosystems; yield assessment and regionalization

S.I. Nilsson

Max Planck Institute (MPI) for Chemical Ecology, Uppsala, Sweden

J.E. Olesen

International Centre for Research in Organic Food Systems, Viborg, Denmark
Research Centre for Soil Science and Agrobiology, Firenze, Italy

M. Quemada

Polytechnic University of Madrid Superior Technical School of Agricultural Engineering Food Science and Biosystems, Madrid, Spain Nitrogen fertilization; water and nitrogen management in agricultural systems; cover crops

A. Rashid

Pakistan Academy of Sciences, Islamabad, Pakistan Soil fertility; Plant nutrition; Micronutrients; Boron; Zinc; Phosphorus; Soil nutrient balances; Soil fertility mapping; Agronomic biofortification; Soil Testing; Plant Analysis

P. Reidsma

Wageningen University, Wageningen, Netherlands Climate change; Adaptation; Resilience; Integrated assessment; Yield gap analysis; Farming systems; Bio-economic farm modelling; Sustainable development

D.P. Rondanini

University of Buenos Aires, Buenos Aires, Argentina
Wageningen University, Wageningen, Netherlands farming systems, crop-pest interactions, farm-landscape interactions, systems analysis and simulation, innovation.

M.C. Rufino

Lancaster Environment Centre, Lancaster, United Kingdom

G. Russell

The University of Edinburgh, Edinburgh, United Kingdom
University of Lleida, Lleida, Spain Cereals (non-rice); Crop physiology; Grain quality; Abiotic stresses; Nitrogen use efficiency; Field crops (mainly wheat, barley, maize and sunflower)

J. Schellberg

University of Bonn, Bonn, Germany

H.W. Scherer

Institute of Plant Nutrition, Bonn, Germany

U. Schmidhalter

Technical University of Munich Chair of Plant Nutrition, Freising, Germany

J. Shrestha

Nepal Agricultural Research Council, Kathmandu, Nepal
University of Lleida, Lleida, Spain Wheat; Barley; Cereals; Crop-Physiology; Yield; Yield components; Water use efficiency; Nitrogen use efficiency; trait useful for breeding.

H. Stützel

Leibniz University Hanover, Hannover, Germany

M. Tagliavini

Free University of Bozen-Bolzano, Bolzano, Italy

F. Tao

Chinese Academy of Sciences, Beijing, China

E. Triboi

INRA Auvergne-Rhône-Alpes Centre, Clermont Ferrand, France

N. Vignozzi

Research Centre for Soil Science and Agrobiology, Firenze, Italy Plant-Soil relationships;Tillage and soil management

D. Wallach

Agroecology Innovation Territories, Castanet Tolosan Cedex, France

C. Watson

Scotland's Rural College Crop and Soil Systems Research Group, Aberdeen, United Kingdom

J. Wery

Montpellier SupAgro, Montpellier, France

B. Wollenweber

Aarhus Universitet Institut for Agrookologi - Flakkebjerg, Slagelse, Denmark
University of Melbourne Faculty of Veterinary and Agricultural Sciences, Melbourne, Victoria, Australia hyperspectral remote sensing, stress detection, manned and Unmanned Aerial Vehicles (UAV RPAS), thermal, water stress, nutrient stress, radiative transfer

X. Zhang

Institute of Genetics and Developmental Biology Center for Agricultural Resources Research, Shijiazhuang, China Agro-meteorology; Crop-water relationship; Crop root growth and soil water use; Deficit irrigation scheduling; Cultivars characters related to drought resistance; Improving crop water use efficiency


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