番茄种植土壤中肥料的比较研究:土壤质量、可持续性和碳/水足迹

IF 2.9 Q2 SOIL SCIENCE Soil Systems Pub Date : 2023-12-05 DOI:10.3390/soilsystems7040109
A. Maffia, F. Marra, F. Canino, Mariateresa Oliva, C. Mallamaci, Giuseppe Celano, A. Muscolo
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引用次数: 0

摘要

这份手稿深入探讨了可持续农业在解决环境挑战和满足迅速增长的全球人口的营养需求方面的关键作用。主要目的是评估最近开发的一种环保肥料的影响,这种肥料被称为SBO,它是由农业废物、硫和残余橙色材料中提取的有机和矿物成分混合而成的。这些元素用膨润土结合在一起。本研究比较了SBO与不同的肥料处理,包括马粪(HM)和氮磷钾(NPK),在两种不同的番茄生长土壤上,每一种土壤都具有独特的化学和生物特性。此外,研究扩展到评估这些肥料的环境影响,特别关注它们的碳和水足迹。对土壤进行了化学和生物化学分析,并评估了碳足迹和水足迹(分别为CF和WF)。结果表明,施用SBO肥可显著改善土壤质量。两种土壤都经历了向接近中性pH值的过渡,有机质含量增加,微生物生物量增加。sbo处理土壤的酶活性显著提高。生命周期评估(LCA)结果肯定了基于sbo的系统的可持续性,具有最低的CF,而NPK显示出最大的环境影响。世界粮食基金会的分析与这些发现一致,表明SBO对番茄生产所需的水最少。总之,本研究强调了采用可持续施肥措施对提高土壤质量和减少农业环境足迹的重要性。这些有希望的结果为粮食生产和环境保护提供了潜在的好处。
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Comparative Study of Fertilizers in Tomato-Grown Soils: Soil Quality, Sustainability, and Carbon/Water Footprints
This manuscript delves into the pivotal role of sustainable agriculture in addressing environmental challenges and meeting the nutritional demands of a burgeoning global population. The primary objective is to assess the impact of a recently developed eco-friendly fertilizer, denoted as SBO, which arises from the blend of organic and mineral components derived from agricultural waste, sulfur, and residual orange materials. These elements are bound together with bentonite. This study compares SBO with distinct fertilizer treatments, including horse manure (HM) and nitrogen–phosphorous–potassium (NPK), on two diverse tomato-growing soils, each characterized by unique chemical and biological properties. Furthermore, the research extends to evaluate the environmental implications of these fertilizers, with a specific focus on their carbon and water footprints. Soils have been chemically and biochemically analyzed, and carbon and water footprints (CF and WF, respectively) have been assessed. The results reveal substantial enhancements in soil quality with the application of SBO fertilizer. Both soils undergo a transition towards near-neutral pH levels, an increase in organic matter content, and heightened microbial biomass. SBO-treated soils exhibit notably superior enzyme activities. The Life Cycle Assessment (LCA) results affirm the sustainability of the SBO-based system, boasting the lowest CF, while NPK demonstrates the highest environmental impact. Consistently, the WF analysis aligns with these findings, indicating that SBO necessitates the least water for tomato production. In summary, this study underscores the critical importance of adopting sustainable fertilization practices for enhancing soil quality and reducing environmental footprints in agriculture. The promising results offer potential benefits for both food production and environmental conservation.
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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
期刊最新文献
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