Relationship between allophane with labile carbon and nitrogen fractions of soil in organic and conventional vegetable farming systems

Q3 Earth and Planetary Sciences Polish Journal of Soil Science Pub Date : 2020-12-26 DOI:10.17951/PJSS.2020.53.2.273-291
F. Hidayanto, B. Purwanto, S. Utami
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Abstract

Allophane is a characteristic of Andisols whose presence can absorb soil organic matter. One of soil organic matter fractions called the “labile fraction” is currently an appropriate indicator in determining soil quality. However, there is limited information concerning the relationship between allophane and the labile fraction. This study assessed the content of allophane by selective dissolution methods and calculated the labile fraction of particulate organic matter and microbial activity related to the carbon (C) and nitrogen (N) soil cycles in organic and conventional vegetable farming systems of two depths (0–25 cm and 25–50 cm). The content of the labile fractions of C and N in organic farming systems is higher than in conventional farming systems, which is also higher in the upper layer compared to the lower layer. However, the availability of allophane in the upper layer and organic system tends to be low. Therefore, allophane has a strong negative correlation with the labile fractions of carbon and nitrogen. The results of this study estimate that phosphorus (P) sorption is higher in soils containing quite high allophane. Hence, an organic farming system that has low allophane content will result in higher P availability for plants.
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有机与常规蔬菜种植系统中磷素与土壤活性碳、氮组分的关系
Allophane是andiols的一个特征,它的存在可以吸收土壤有机质。土壤有机质组分中的一种称为“不稳定组分”,目前是确定土壤质量的适当指标。然而,关于allophane和不稳定分数之间的关系的信息有限。本研究采用选择性溶出法评估了有机蔬菜和传统蔬菜两种深度(0-25 cm和25-50 cm)土壤中磷素的含量,并计算了颗粒有机质的不稳定组分和与土壤碳(C)和氮(N)循环相关的微生物活性。有机耕作系统中C和N的活性组分含量高于常规耕作系统,且上层高于下层。然而,在上层和有机系统中,allophane的有效性往往较低。因此,磷烷与碳和氮的不稳定组分具有较强的负相关关系。本研究结果估计磷(P)的吸收量较高的土壤含有相当高的allophane。因此,有机耕作系统中磷素含量低,植物的磷素利用率就高。
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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来源期刊
Polish Journal of Soil Science
Polish Journal of Soil Science Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
1.00
自引率
0.00%
发文量
5
期刊介绍: The Journal focuses mainly on all issues of soil sciences, agricultural chemistry, soil technology and protection and soil environmental functions. Papers concerning various aspects of functioning of the environment (including geochemistry, geomophology, geoecology etc.) as well as new techniques of surveing, especially remote sensing, are also published.
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