Phosphorus Adsorption and Its Correlation with Physicochemical Properties of Volcanic-Influenced Soils of Meupi-Awing in Northwest Cameroon

IF 2.1 Q3 SOIL SCIENCE Applied and Environmental Soil Science Pub Date : 2022-08-24 DOI:10.1155/2022/6890503
Mofor Nelson Alakeh, Njoyim Estella Buleng Tamungang, Fai Joel Alongifor
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引用次数: 1

Abstract

This study evaluated the physicochemical properties and phosphorus adsorption characteristics of surface soils (0–30 cm) of Meupi on the flank of Mount Lefo-Awing. In volcanic-influenced soils, usually characterized by high acidity, phosphorus is often not readily available to plants, and this deficit tends to limit plant growth. Soil physicochemical properties and phosphorus adsorption studies were carried out using standard techniques. Results of soil physicochemical studies showed that the soils were strongly acidic (pH ranged from 4.7 to 5.1), with low available phosphorus (5.47 to 6.97 mg/kg). The apparent equilibrium time for phosphorus to be adsorbed in the analyzed soils was 24 hours. Phosphorus sorption studies revealed that the rate of phosphorus adsorption increased with an increase in the concentration of added phosphorus but decreased at a certain level at higher concentrations because the soil had no more capacity to adsorb phosphorus. The degree of fitness (R2) of the phosphorus adsorption data for the different adsorption models was in the order Langmuir < Temkin < Van Huay < Freundlich. This suggested that the Freundlich isotherm model was the best fit to describe P sorption processes in soils. The pseudo-second-order kinetics model, which assumed that the rate of phosphorus sorption was dependent on the number of active sites, gave a good fit to predict and describe the kinetics of phosphorus sorption from the soil solution. The capacity of the soil to adsorb phosphorus significantly correlated positively with amorphous Fe (r = 0.953 and p < 0.05 ), free Fe (r = 0.984, 0.976 and p < 0.05 ), free Al (r = 0.994 and p < 0.01 , r = 0.988 and p < 0.05 ), and clay (r = 0.968 and p < 0.05 ), which were the main parameters considered as predictors of phosphorus adsorption activities in the soils.
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喀麦隆西北部Meupi-Awing火山影响土壤磷吸附及其与理化性质的相关性
本研究对乐佛阿翁山山麓梅皮表层土壤(0 ~ 30 cm)的理化性质和磷吸附特性进行了研究。在通常以高酸度为特征的火山影响土壤中,植物往往不容易获得磷,而这种缺乏往往限制了植物的生长。采用标准技术对土壤理化性质和磷吸附进行了研究。土壤理化研究结果表明,土壤呈强酸性(pH值为4.7 ~ 5.1),有效磷较低(5.47 ~ 6.97 mg/kg)。磷在土壤中吸附的表观平衡时间为24小时。土壤对磷的吸附研究表明,土壤对磷的吸附速率随着磷添加浓度的增加而增加,但随着磷添加浓度的增加,土壤对磷的吸附速率在一定程度上下降。不同吸附模型对磷吸附数据的拟合度R2为Langmuir < Temkin < Van Huay < Freundlich。这表明Freundlich等温线模型最适合描述土壤中磷的吸收过程。拟二级动力学模型假设磷的吸附速率取决于活性位点的数量,可以很好地预测和描述土壤溶液中磷的吸附动力学。土壤对磷的吸附能力与无定形铁(r = 0.953, p < 0.05)、游离铁(r = 0.984, 0.976, p < 0.05)、游离铝(r = 0.994, p < 0.01, r = 0.988, p < 0.05)和粘土(r = 0.968, p < 0.05)呈极显著正相关,这是土壤对磷吸附活性的主要预测参数。
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来源期刊
Applied and Environmental Soil Science
Applied and Environmental Soil Science Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
4.00
自引率
4.50%
发文量
55
审稿时长
18 weeks
期刊介绍: Applied and Environmental Soil Science is a peer-reviewed, Open Access journal that publishes research and review articles in the field of soil science. Its coverage reflects the multidisciplinary nature of soil science, and focuses on studies that take account of the dynamics and spatial heterogeneity of processes in soil. Basic studies of the physical, chemical, biochemical, and biological properties of soil, innovations in soil analysis, and the development of statistical tools will be published. Among the major environmental issues addressed will be: -Pollution by trace elements and nutrients in excess- Climate change and global warming- Soil stability and erosion- Water quality- Quality of agricultural crops- Plant nutrition- Soil hydrology- Biodiversity of soils- Role of micro- and mesofauna in soil
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