土地肥力能力类地图,为确定问题和策略稻田管理的基础

Christanti Agustina, Novalia Kusumarini, Mochtar Lutfi Rayes
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引用次数: 0

摘要

农民对农地特征缺乏了解,导致农地经营不准确。因此,本研究旨在对土壤肥力进行分类,并基于限制因子设计土壤管理策略。这项研究在玛琅摄政的图仁区进行。土壤样本取自15个lmu(陆地地图单元)的45个观测点。利用土壤质地、pH、有机碳、CEC、阳离子碱(K、Na、Ca、Mg)和碱饱和度对土壤肥力分类进行评价。土人区生育能力分为8个等级,分别为Chm(3- 8%)、Chm(8- 15%)、CLhm(0- 3%)、CLhm(3- 8%)、LChm(3- 8%)、Lhm(0- 3%)、Lhm(3- 8%)和Lhm(8- 15%)。单符号C对表土和底土都解释为粘土质地,单符号L解释为壤土质地。符号CL被解释为表土上的粘土质地和底土上的壤土质地。符号LC解释为表土的壤土结构和底土的粘土结构。FCC分类中的符号h表示低pH(酸性),符号m表示低有机C。土壤pH和有机C含量是土壤肥力的两个最重要的限制参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PEMETAAN KELAS KAPABILITAS KESUBURAN TANAH SEBAGAI DASAR IDENTIFIKASI PERMASALAHAN DAN STRATEGI PENGELOLAAN LAHAN SAWAH
Farmers' lack of understanding of agricultural land characteristics leads to inaccuracy in farm management. As a result, this research aimed to classify soil fertility capability and design soil management strategies based on the limiting factor. This study took place in Malang Regency's Turen District. Soil samples were taken from 45 observation locations throughout 15 LMUs (Land Map Unit). The Fertility Capability Classification (FCC) technique was used to evaluate soil fertility classification utilizing soil texture, pH, organic C, CEC, cation base (K, Na, Ca, Mg), and base saturation. Turen District was found to have eight fertility capability classifications, including Chm (3-8 %), Chm (8-15 %), CLhm (0-3 %), CLhm (3-8 %), LChm (3-8 %), Lhm (0-3 %), Lhm (3-8 %), and Lhm (8-15 %). Single symbol C is interpreted as clay texture for both top and subsoil, as well as a single symbol for L as loamy texture. Symbol CL is interpreted as clay texture on topsoil and loamy texture on subsoil. Symbol LC is interpreted as loamy texture on topsoil and clay texture on subsoil. Symbol h in FCC class is interpreted as low pH (acid), and symbol m as low organic C. Soil pH and organic C content are the two most important limiting parameters for soil fertility.
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