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首页> 外文期刊>Aceh International Journal of Science and Technology >Charge Characteristics and Cation Exchanges Properties of Hilly Dryland Soils Aceh Besar, Indonesia
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Charge Characteristics and Cation Exchanges Properties of Hilly Dryland Soils Aceh Besar, Indonesia

机译:丘陵旱地土壤Aceh Besar,印度尼西亚的收费特点和阳离子交换性能

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Soil surface charge and cation exchange are important parameters of soil fertility in tropical soils. This study was conducted to investigate characteristics of surface charges and cation exchanges on four soil orders of the dryland in Aceh Besar district. The soil order includes Entisols Jantho (05 o 16’58.41” N; 95 o 37’51.82” E), Andisols Saree (05 o 27'15.6" N; 95 o 44'09,1" E), Inceptisols Cucum (05o18’18,37” N; 95o32’48,04” E), dan Oxisols Lembah Seulawah (05 o 27’19,4” N; 95 o 46’19,2” E). The charge characteristics of surface charge are evaluated from the parameter of DpH (pH H2O -pH KCl ), variable charge (Vc), permanent charge (Pc), and point of zero charges (PZC). In contrast, cation exchange properties are evaluated from several soil chemical properties, such as soil organic matter (SOM), base saturation (BS), cation exchange capacity (CEC), and effective CEC (E CEC ). The results show that the four pedons of soil in the hilly dryland of Aceh Besar include a variable charge because it has a PZC, which is characterized by a negative surface charge with a PZC of pH H2O and has CEC dependent soil pH. PZC value varies from 3.21 – 5.26 and sequentially PZC Andisols Oxisols Entisols Inceptisols. The total CEC value differs considerably from ECEC and the sum of cations. CEC total of the soils varies from 12.8 – 34.4 cmol kg -1 , whereas the ECEC values vary from 2.72 – 8.66 cmol kg -1 . The highest variable charge percentage is found in Andisols Saree. In contrast, the highest permanent charge is found in Inceptisols Cucum and is positively correlated with pH H20 , PZC, CEC, and sums of cations or ECEC. Improving soil quality in hilly dryland soils in Aceh Besar District can be done by decreasing the PZC status of soils with organic amendments and fertilizers or increasing the pH by using liming.
机译:土壤表面电荷和阳离子交换是热带土壤中土壤肥力的重要参数。本研究旨在调查亚齐布尔区旱地四个土壤秩序的表面收费和阳离子交换的特点。土壤命令包括奥罗斯·吉诺(05 o 16'58.41“n; 95 o 37'51.82”e),andisols纱丽(05 o 27'15.6“n; 95 o 44'09,1”e),Inceptisols cucum(05O18 '18,37“n; 95032'48,04”e),Dan Oxisols Lembah Seulawah(05 o 27'19,4“n; 95 o 46'19,2”e)。从DPH(pH H2O -PH KCl),可变电荷(Vc),永久电荷(PC)和零充电点(PZC)的参数评价表面电荷的电荷特性。相比之下,从几种土壤化学性质,例如土壤有机物质(SOM),基础饱和度(BS),阳离子交换能力(CEC)和有效CEC(E CEC)中评价阳离子交换性能。结果表明,亚齐BALAR的丘陵旱地中的四个土壤施用包括可变电荷,因为它具有PZC,其特征在于具有H H 2 O的PZC的负面电荷,并且具有CEC依赖性土壤pH。 PZC值从3.21 - 5.26变化,并且顺序PZC和溶剂> Oxisols> Entisols> Inceptizols。总CEC值与ECEC和阳离子的总和不同。 CEC的土壤总量从12.8-34.4 CMOL KG -1变化,而ECEC值在2.72-8.66 CMOL KG -1之间变化。在Andisols Saree中发现了最高的可变电荷百分比。相比之下,在Inceptisols Cucum中发现了最高的永久性电荷,并与pH H20,PCH,CEC和阳离子或eCEC的总和呈正相关。通过减少有机修正和肥料的土壤的PZC状态,通过减少有机修正和肥料的PZC地位或通过使用跛行来增加丘陵地区丘陵旱地土壤的土壤质量。

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