Effect of Biochar on Tomato Productivity and Soil chemical Properties under Acidic Soil Condition

Tania Sultana, kabil Hossain, Md. Forhad Hossain, Alok Kumar Paul, N. Naher
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Abstract

Biochar is being evaluated globally as a means to improve soil fertility, ecosystem services and sequester carbon. This study presents an attempt to analysing the influence of biochar application on the soil properties, growth, yield of tomato plant under acid soil. The study was conducted at Sher-e-Bangla Agricultural University during Robi season 2022 with 2 factor Randomized Completely Block Design. Factor A was the different acid soils with pH 6.5, 5.5, 5.0 and 4.5 and Factor B was the control, biocar and biochar+compost. The results showed that soil pH, bulk density, water content and soil organic matter were improved significantly as biochar and biochar + compost application. Biochar application also enhanced plant height, leaf number and yield components of tomato plant. It also revealed that combined application of biochar and compost increased the uptake and available of N, P, K than biochar alone and control in different level of acid soils. It was found that biochar + compost treatment in the whole growing period was best to improve tomato plant growth and yield, providing a biochar amendment recommendation for tomato production in field. Moreover, biochar application improved the soil physical and chemical properties. Therefore, biochar amendment could be an effective option to improve acidity affected croplands.
生物炭对酸性土壤条件下番茄产量和土壤化学性质的影响
生物炭作为一种改善土壤肥力、提供生态系统服务和固碳的手段,正在接受全球评估。本研究试图分析在酸性土壤中施用生物炭对土壤特性、番茄生长和产量的影响。研究于 2022 年罗比季在谢尔-班加罗尔农业大学进行,采用 2 因子随机完全区组设计。因素 A 是 pH 值分别为 6.5、5.5、5.0 和 4.5 的不同酸性土壤,因素 B 是对照、生物炭和生物炭+堆肥。结果表明,施用生物炭和生物炭+堆肥后,土壤的 pH 值、容重、含水量和土壤有机质都得到了显著改善。施用生物炭还提高了番茄的株高、叶片数和产量成分。研究还发现,在不同的酸性土壤中,生物炭和堆肥的联合施用比单独施用生物炭和对照组提高了氮、磷、钾的吸收和利用率。研究发现,在整个生长期施用生物炭+堆肥最能改善番茄植株的生长和产量,为番茄田间生产提供了生物炭改良建议。此外,施用生物炭还能改善土壤的物理和化学性质。因此,生物炭添加剂是改善受酸度影响的耕地的有效选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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