Symbiotic and Asymmetric Causality of The Soil Tillage System and Biochar Application on Soil Carbon Sequestration and Crop Production

IF 2.9 Q2 SOIL SCIENCE
A. Bogale, A. A. Melash, A. Percze
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Abstract

Agriculture faces a significant challenge in maintaining crop production to meet the calorie demand of the ever-growing population because of limited arable land and climate change. This enforces a search for alternative multifarious agricultural-based solutions to meet the calorie demand. In search of alternatives, agricultural soil management has been highlighted and is expected to contribute to climate change mitigation through soil carbon sequestration and reduce greenhouse gas emissions through effective agricultural management practices. The addition of biochar to the soil significantly improves the soil nitrogen status, soil organic carbon, and phosphorus, with greater effects under the different tillage systems. This symbiosis association could further change the bacterial structure in the deeper soil layer which thus would be important to enhancing productivity, particularly in vertisols. Biochar also has an environmental risk and negative consequences. Heavy metals could be present in the final food products if we use contaminated raw materials to prepare biochar. However, there is a need to investigate biochar application under different climatic conditions, seasons, soil tillage systems, and crop types. These indicate that the positive effect of proper biochar fertilization on the physiology, yield formation, nutrient uptake, and soil health indicators substantiate the need to include biochar in the form of nutrients in the crop production sector, especially in light of the changing climate and soil tillage systems.
土壤耕作制度与生物炭对土壤固碳和作物生产的共生与非对称因果关系
由于可耕地有限和气候变化,农业在维持作物产量以满足不断增长的人口对卡路里的需求方面面临着重大挑战。这就迫使人们寻找各种以农业为基础的替代解决方案来满足卡路里需求。在寻找替代办法的过程中,农业土壤管理得到了强调,预计将通过土壤固碳和通过有效的农业管理做法减少温室气体排放,为减缓气候变化作出贡献。土壤中添加生物炭显著改善了土壤氮态、土壤有机碳和土壤磷,且不同耕作制度下的效果更大。这种共生关系可以进一步改变深层土壤中的细菌结构,从而对提高生产力非常重要,特别是在垂直土壤中。生物炭也有环境风险和负面后果。如果我们使用受污染的原料制备生物炭,最终食品中可能会存在重金属。然而,有必要研究生物炭在不同气候条件、季节、土壤耕作制度和作物类型下的应用。这些表明,适当的生物炭施肥对生理、产量形成、养分吸收和土壤健康指标的积极影响证实了在作物生产部门以养分形式纳入生物炭的必要性,特别是考虑到气候和土壤耕作制度的变化。
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来源期刊
Soil Systems
Soil Systems Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
5.30
自引率
5.70%
发文量
80
审稿时长
11 weeks
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