Biomass-derived chars as soil amendments for sustainable agricultural management.

Chemosphere Pub Date : 2025-09-01 Epub Date: 2025-08-08 DOI:10.1016/j.chemosphere.2025.144618
Daniela Quiñones, Mariona Gil I Cortiella, Luis Morales-Quintana, Po S Poon, Conchi O Ania, Juan Matos
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Abstract

The application of biomass-derived chars in soil amendment has revealed as a promising strategy as a bio-stimulant aimed to futuristic agriculture. Despite the good performance, the rationalization of the mechanisms and the influence of biochars properties upon driving such performance is far from been achieved. In this review we analyze the impact of the application of biochars and related biomass-derived carbons in agriculture soil management, with a focus on the characteristics of the biochars including the pH, ash content, macronutrients contents (mainly N,P,K), surface area, electron conductivity, cation exchange capacity, and the dose of biochars. Interesting results were found for some of these variables. As an attend to normalize the influence of the biochars properties upon different types of crop yields, an increase factor was introduced and up to 72 values were correlated with the dose of biochars. In addition, the effects of the crop type, irrigation, type of soil on crop yields in presence of biochars are also discussed, as well as the effect of biochars on density and microbial contents of soil. Thus, we do believe the quantity of data and the variety variables included in this review are statistically acceptable to stablish a proper assessment about the influence of using biochars as a sustainable amendment for agriculture management. A critical discussion is presented raising the importance of providing a detailed characterization and analysis of the biochars to understand the impact of their application on different crops at various stages of the seasonal crop cycle.

生物质炭在可持续农业管理中的土壤改良剂作用。
生物质炭在土壤改良剂中的应用已成为未来农业发展的一种有前景的生物刺激剂。尽管具有良好的性能,但机制的合理化以及生物炭特性对驱动这种性能的影响还远远没有实现。本文分析了生物炭及其相关生物质碳在农业土壤管理中的应用,重点介绍了生物炭的pH、灰分、常量营养元素(主要是N、P、K)、表面积、电导率、阳离子交换容量和剂量等特性。对其中一些变量发现了有趣的结果。为了使生物炭特性对不同类型作物产量的影响归一化,引入了一个增加因子,并与生物炭剂量相关的值高达72。此外,还讨论了作物类型、灌溉方式、土壤类型对生物炭存在下作物产量的影响,以及生物炭对土壤密度和微生物含量的影响。因此,我们相信本综述中包含的数据量和变量种类在统计上是可以接受的,可以对使用生物炭作为农业管理的可持续修订的影响进行适当的评估。提出了重要的讨论,提出了提供生物炭的详细特征和分析的重要性,以了解它们在季节性作物周期的不同阶段对不同作物的应用的影响。
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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