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Sustainable intensification through doublecropping and plant-based fertilization: production and plant-soil nitrogen interactions in a 5-year crop rotation of organic vegetables

Hefner, Margita; Sørensen, Jørn Nygaard; de Visser, Richard and Kristensen, Hanne Lakkenborg (2022) Sustainable intensification through doublecropping and plant-based fertilization: production and plant-soil nitrogen interactions in a 5-year crop rotation of organic vegetables. Agroecology and Sustainable Food Systems, 46 (8), pp. 1118-1144.

[thumbnail of Hefner et al 2022 Agroecology and Sustainable Food Systems_Sustainable intensification through double cropping and plant based fertilization_published.pdf] PDF - Published Version - English
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Document available online at: https://pure.au.dk/portal/da/persons/hanne-lakkenborg-kristensen(d0863c00-6ca9-4b0e-95be-46d836e1be62)/publications/sustainable-intensification-through-doublecropping-and-plantbased-fertilization(59f6e6de-e094-476c-b15c-947e6779b177).html


Summary

A sustainably intensified (SI) organic vegetable rotation, employing plant-based fertilizers, more crops, reduced tillage, and cover crops was compared to common practice (CP) where plants were fertilized with animal manure, typically one crop was grown per season, soil was plowed and often left bare over winter. Second and third-year results are presented. Nitrogen (N) input obtained within the rotation from N2 fixed by legume cover crops was higher under SI (34% potential self-sufficiency) than CP (5%). Marketable yields of cabbage, celeriac, leek, lettuce, and onion were similar, and aboveground dry matter increased by 16% under SI (8.6 Mg ha−1) compared to CP (7.5 Mg ha−1). Nitrogen use efficiency (N output/ N input) was 8–16% higher under SI compared to CP, mainly due to the full year clover. Nitrogen surface balance (N input – N output) was higher for SI compared to CP, indicating increased N leaching risk under SI. Short season and shallow-rooted crops under SI left more mineral N to 2.5 m depth in autumn than deeper rooted crops under CP. Cover crops indicated to mitigate N leaching risk. Vegetable production can be intensified sustainably using more yielding crops, cover crops, reduced tillage, and plant-based fertilizers.


EPrint Type:Journal paper
Agrovoc keywords:
Language
Value
URI
English
vegetables
http://aims.fao.org/aos/agrovoc/c_8174
English
sustainable agricultural intensification -> sustainable intensification
http://aims.fao.org/aos/agrovoc/c_cfbabc3e
English
nitrogen balance
http://aims.fao.org/aos/agrovoc/c_eb390701
English
cover crops -> cover plants
http://aims.fao.org/aos/agrovoc/c_1936
English
tillage
http://aims.fao.org/aos/agrovoc/c_7771
English
UNSPECIFIED
UNSPECIFIED
Subjects: Crop husbandry > Crop combinations and interactions
Crop husbandry > Soil tillage
Crop husbandry > Production systems > Vegetables
Environmental aspects
Farming Systems > Farm nutrient management
Research affiliation: Denmark > Organic RDD 3 > DoubleCrop
Denmark > AU - Aarhus University > Faculty of Science and Technology > Department of Food Science
DOI:10.1080/21683565.2022.2104419
Deposited By: Kristensen, Ph.D. Hanne Lakkenborg
ID Code:46041
Deposited On:08 May 2023 08:49
Last Modified:08 May 2023 08:49
Document Language:English
Status:Published
Refereed:Peer-reviewed and accepted

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