The effect of biochar from plant materials on agricultural acid sulfate soil: a laboratory incubation

S. Sulaiman, N. Navaranjan, Guillermo Hernandez-Ramirez, Zohrah Sulaiman, Kathereen Liew
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Abstract

The scarcity of suitable arable land has led to the development of acid sulfate soil for cultivation. The major problems of acid sulfate soil are the inherent low pH and available phosphorus (P) as well as the mobilization of toxic elements such as aluminium (Al) and iron (Fe), rendering the soil unfavourable for crop production. The present work aimed to evaluate the effect of biochar from plant materials on the selected parameters of acid sulfate soil in a laboratory incubation, with unamended control and dolomite treatment soils for comparison. The application of biochar signi fi cantly increased ( P < 0.05) soil pH by 0.4 e 0.6 units as well as the soil available P by 13.1 mg kg ¡ 1 relative to the control. The soil exchangeable Al was signi fi cantly reduced (by 2.4 cmol kg ¡ 1 when compared with the control treatment. The dolomite treatment was superior relative to biochar application in increasing soil pH and decreasing Al. The dolomite application, however, was inferior to biochar treatment in increasing soil available P. Moreover, no favourable change was observed in available Fe with the applications of either biochar or lime. These results indicated that biochar has the potential for the amelioration of acid sulfate soil, especially in increasing available P. Further studies should explore the effectiveness of biochar and lime co-application in altering a wider range of soil chemical parameters to inform management options of acid sulfate soil for cultivation.
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从植物材料中提取的生物炭对农业酸性硫酸盐土壤的影响:实验室培养
由于缺少合适的耕地,人们开始开发硫酸盐酸性土壤进行耕种。酸性硫酸盐土壤的主要问题是其固有的低 pH 值和可利用磷(P),以及铝(Al)和铁(Fe)等有毒元素的移动,从而使土壤不利于作物生产。本研究的目的是在实验室培养过程中,评估从植物材料中提取的生物炭对酸性硫酸盐土壤选定参数的影响,并与未经改良的对照土壤和白云石处理土壤进行比较。与对照组相比,施用生物炭显著提高了(P < 0.05)土壤 pH 值 0.4 和 0.6 个单位,土壤可利用钾提高了 13.1 毫克/千克-1。与对照组相比,土壤中的可交换铝显著减少(2.4 厘米摩尔/千克 1)。在提高土壤 pH 值和降低 Al 值方面,白云石处理优于生物炭处理。此外,施用生物炭或石灰都没有观察到可用铁的有利变化。这些结果表明,生物炭具有改善酸性硫酸盐土壤的潜力,特别是在增加可利用钾方面。进一步的研究应探索生物炭和石灰共同施用在改变更广泛的土壤化学参数方面的有效性,为酸性硫酸盐土壤的种植管理方案提供信息。
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来源期刊
Asean Journal on Science and Technology for Development
Asean Journal on Science and Technology for Development Environmental Science-Waste Management and Disposal
CiteScore
1.50
自引率
0.00%
发文量
10
审稿时长
14 weeks
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