综合利用表层土和生物炭培育饲用仙人掌(Opuntia cochenillifera (L.) Mill.)土壤的生产力和健康状况

Rafaela Felix da França, Erika Valente de Medeiros, Renata Oliveira Silva, Diogo Paes da Costa, Ronaldo Anderson da Silva Fausto, Carlos Alberto Fragoso de Souza, Argemiro Pereira Martins Filho, José Romualdo de Sousa Lima, C. Hammecker, Adelson Paulo Araújo
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引用次数: 0

摘要

半干旱环境下的农业生产是一项重大挑战,因为这些地区的土壤养分有限,降水稀少,需要采取适应性创新战略。生物炭在改善土壤质量和提高生产力方面的应用已得到深入研究。然而,关于生物炭与不同表层土壤的结合使用对植物生长和土壤健康的影响,仍然存在空白。这项技术已成为生产者提高土壤肥力的替代方法。这种技术已成为生产者提高土壤肥力的一种替代方法。 本研究的假设是,使用与表层土技术相关的生物炭可以提高仙人掌的生产力和产量,这主要是通过改变土壤的性质及其微生物之间的相互作用实现的。为了验证这一假设,我们使用了不同来源的生物炭(豆壳、咖啡渣和酸果渣)与两种表土(Acrisol 和 Luvisol)。我们的分析显示了植物生长、土壤化学和微生物属性的变化。表层土技术对平均杆长(COM)、茎直径(DI)、株高(AL)、pH 值、Na+、K+ 和脲酶活性有明显影响,而生物炭则对微生物呼吸速率有明显影响。总之,我们的研究结果拓展了人们对表层土壤中生物炭使用的认识,表明这是一种前景广阔、成本低廉的方法,可确保农业生态系统的保护和健康,为开发传统技术的替代技术提供了重要信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Productivity and health of soil cultivated with forage cactus (Opuntia cochenillifera (L.) Mill.) with combined use of topsoil and biochar
Agricultural production in semi-arid environments represents a significant challenge, as these are areas that have soils with limited nutrient availability and scarcity of precipitation, which require adaptive and innovative strategies. The application of biochar to improve soil quality and increase productivity has been well studied. However, there is still a gap regarding the use of biochar with the technique of incorporating different topsoils on plant development and soil health. This technique has emerged as an alternative for producers to increase soil fertility. This technique is emerging as an alternative for producers to enhance soil fertility.  The hypothesis of the present study is that the use of biochar associated with the topsoil technique increases the productivity and yield of cactus, mainly by changing the properties of the soil and its microbiological interactions. To test this hypothesis, we used different sources of biochar (bean husk, coffee grounds and soursop residue) in association with two types of topsoil (Acrisol and Luvisol). Our analyzes revealed changes on plants development, chemical and microbiological soil attributes. The topsoil technique significantly interfered with mean cladode length (COM), stem diameter (DI), plant height (AL), pH, Na+, K+ and urease enzymatic activity, while biochar had a significant effect on microbial respiration rate. In general, our results expand the knowledge about the use of biochar associated with topsoil, suggesting it as a promising, low-cost way that guarantees the conservation and health of the agroecosystem, contributing with important information for the development of alternative technologies to conventional ones.
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