Agronomic Evaluation of Biochar, Compost and Biochar-Blended Compost across Different Cropping Systems: Perspective from the European Project FERTIPLUS

被引:85
作者
Sanchez-Monedero, Miguel A. [1 ]
Cayuela, Maria L. [1 ]
Sanchez-Garcia, Maria [1 ]
Vandecasteele, Bart [2 ]
D'Hose, Tommy [2 ]
Lopez, Guadalupe [3 ]
Martinez-Gaitan, Carolina [3 ]
Kuikman, Peter J. [4 ]
Sinicco, Tania [5 ]
Mondini, Claudio [5 ]
机构
[1] CSIC, Ctr Edafol & Biol Aplicada Segura, Dept Soil & Water Conservat & Organ Waste Managem, POB 4195, Murcia 30080, Spain
[2] Flanders Res Inst Agr Fisheries & Food ILVO, Plant Sci Unit, Burg van Gansberghelaan 109, B-9820 Merelbeke, Belgium
[3] Fdn Tecnol Auxiliares Agr TECNOVA, Avda Innovac 23, El Alquian 04131, Almeria, Spain
[4] Wageningen UR, Wageningen Environm Res, POB 47, NL-6700 AA Wageningen, Netherlands
[5] CREA Res Ctr Viticulture & Enol, Branch Gorizia, Via Trieste 23, I-34170 Gorizia, Italy
来源
AGRONOMY-BASEL | 2019年 / 9卷 / 05期
基金
欧盟第七框架计划;
关键词
fertilization; nutrient recycling; organic waste management; pyrolysis; composting; soil organic matter; soil fertility; crop yield; ORGANIC-MATTER; AMENDMENTS; SOILS; PRODUCTIVITY; QUALITY; CARBON;
D O I
10.3390/agronomy9050225
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
This paper reports the results on the agronomic performance of organic amendments in the EU 7th FP project FERTIPLUSreducing mineral fertilizers and agro-chemicals by recycling treated organic waste as compost and bio-char. Four case studies on field-scale application of biochar, compost and biochar-blended compost were established and studied for three consecutive years in four distinct cropping systems and under different agro-climatic conditions in Europe. These included the following sites: olive groves in Murcia (Spain), greenhouse grown tomatoes in Almeria (Spain), an arable crop rotation in Oost-Vlaanderen (Merelbeke, Belgium), and three vineyards in Friuli Venezia Giulia (Italy). A slow pyrolysis oak biochar was applied, either alone or in combination with organic residues: compost from olive wastes in Murcia (Spain), sheep manure in Almeria (Spain), and compost from biowaste and green waste in Belgium and Italy. The agronomical benefits were evaluated based on different aspects of soil fertility (soil total organic carbon (TOC), pH, nutrient cycling and microbial activity) and crop nutritional status and productivity. All amendments were effective in increasing soil organic C in all the field trials. On average, the increase with respect to the control was about 11% for compost, 20% for biochar-blended compost, and 36% for biochar. The amendments also raised the pH by 0.15-0.50 units in acidic soils. Only biochar had a negligible fertilization effect. On the contrary, compost and biochar-blended compost were effective in enhancing soil fertility by increasing nutrient cycling (25% mean increase in extractable organic C and 44% increase in extractable N), element availability (26% increase in available K), and soil microbial activity (26% increase in soil respiration and 2-4 fold enhancement of denitrifying activity). In general, the tested amendments did not show any negative effect on crop yield and quality. Furthermore, in vineyards and greenhouse grown tomatoes cropping systems, compost and biochar-blended compost were also effective in enhancing key crop quality parameters (9% increase in grape must acidity and 16% increase in weight, 9% increase in diameter and 8% increase in hardness of tomato fruits) important for the quality and marketability of the crops. The overall results of the project suggest that the application of a mixture of biochar and compost can benefit crops. Therefore, biochar-blended compost can support and maintain soil fertility.
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页数:19
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