Correlation between Soil Carbon Potential and Soil Quality Index in Various Types of Dry Land Use in Aceh Besar District

U. H. A, Endiyani Endiyani, S. Agustina, Irhami Irhami, Yusran Akbar
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Abstract

Soil quality is a useful concept when assessing the sustainability of an agricultural business and demonstrating the ability of soil to maintain plant and animal productivity, improve water and air quality, and protect human health. SQI is a soil variable with the following characteristics: 1) well correlated with ecosystem processes; 2) integration of physical, chemical, and biological soil properties; 3) good sensitivity to human-induced soil changes; 4) simple measurement and interpretation; and 5) Reproducibility Soil quality index (SQI) is a diagnostic procedure to evaluate soil function and overall health. This research was carried out on a unit of land in a dry area in Aceh Besar District with a study area of 239,439.63 ha. Analysis of biomass samples and soil samples was carried out at the Laboratory of Soil and Plant Sciences and Soil Physics Laboratory, Faculty of Agriculture, University of Syiah Kuala. The tools used in this study include a set of computers with the Microsoft Windows 10 operating system that are equipped with several software for analysis, writing instruments, and other supporting tools. The main materials used in this study were soil samples, tree diameter measurement data, and land use maps, including geology, climate, slope class, soil, and topography. The results of the correlation analysis test showed a value of 0.6358. This shows that the relationship between soil C potential and soil quality index is a strong correlation. The distribution of carbon in the soil also has a close relationship with the soil quality index and is an effort to maintain carbon stocks in the soil. C - organic content is a very important parameter in compiling soil quality index criteria. Soil quality can be affected by many factors, such as parent material, environmental factors, land use type, and human activities. The percentage of soil organic C is an indicator of the percentage of soil organic matter (BOT), and BOT is able to improve soil structure and aggregates. Soil organic carbon (SOC) concentration is closely related to soil quality and vegetation productivity. This relationship occurs because of the many contributions of soil carbon to soil properties such as the improvement of soil structure and water retention, provision of cation exchange capacity, and supply of plant nutrients through mineralization. This effect is especially important in small-scale tropical farming systems where the use of external inputs is often limited, and SOC concentrations have been positively correlated with yield levels for a variety of tropical soils.
亚齐贝萨尔地区不同旱地利用类型土壤碳势与土壤质量指数的相关性
在评估农业企业的可持续性和展示土壤维持动植物生产力、改善水和空气质量以及保护人类健康的能力时,土壤质量是一个有用的概念。SQI是一个土壤变量,具有以下特点:1)与生态系统过程有较好的相关性;2)土壤物理、化学和生物特性的整合;3)对人为土壤变化具有良好的敏感性;4)简单的测量和解释;5)可重复性土壤质量指数(SQI)是评价土壤功能和整体健康的诊断方法。这项研究是在亚齐Besar地区干旱地区的一块土地上进行的,研究面积为239,439.63公顷。生物量样本和土壤样本的分析在马来西亚西亚吉隆坡大学农学院土壤与植物科学实验室和土壤物理实验室进行。本研究使用的工具包括一套装有微软Windows 10操作系统的计算机,这些计算机配备了几种分析软件、写作工具和其他辅助工具。本研究使用的主要资料是土壤样品、树木直径测量数据和土地利用图,包括地质、气候、坡类、土壤和地形。相关分析检验结果为0.6358。说明土壤C势与土壤质量指标之间存在较强的相关性。土壤中碳的分布也与土壤质量指数密切相关,是维持土壤碳储量的一种努力。有机碳含量是编制土壤质量指标标准的重要参数。土壤质量受多种因素的影响,如母质、环境因素、土地利用类型、人类活动等。土壤有机碳含量是土壤有机质含量(BOT)的一个指标,BOT能够改善土壤结构和团聚体。土壤有机碳(SOC)浓度与土壤质量和植被生产力密切相关。这种关系的发生是由于土壤碳对土壤性质的许多贡献,如改善土壤结构和保水,提供阳离子交换能力,以及通过矿化提供植物养分。这种效应在小型热带农业系统中尤为重要,因为在这些系统中,外部投入物的使用往往有限,而且在各种热带土壤中,有机碳浓度与产量水平呈正相关。
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