...
首页> 外文期刊>Open Journal of Soil Science >Morphological, Physical and Chemical Characteristics of Hill Forest Soils at Chittagong University, Bangladesh
【24h】

Morphological, Physical and Chemical Characteristics of Hill Forest Soils at Chittagong University, Bangladesh

机译:孟加拉国吉大港大学山林土壤的形态,理化特性

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Forty five soil samples were collected from the four pedons of the hill areas at Chittagong University based on the depth of soil horizon. Soil profiles on hill top were relatively well developed and belonged to Ultisols according to USDA soil Taxonomy. The profiles at the piedmont were relatively young soils and classified as Inceptisols and Entisols. The soils of all profiles were characterized by coarse texture (38% to 73%, sand fraction), high bulk density (1.15 to 1.32 Mg·m-3), low organic-C content (0.26% to 1.73%), acid soil reaction ( varied from 4.44 to 5.52 and pHKCl from 3.57 to 4.90). Soils in all pedons were poor in exchangeable bases and base saturation. The CEC values ranged from 9.12 cmolc·kg-1 to 14.5 cmolc·kg-1 while ECEC varied from 1.96 to 4.78 cmolc·kg-1. The exchangeable Al (aluminum) concentration ranged from 0.41 to 0.66 cmolc·kg-1. Exchangeable acidity level ranged from 0.74 to 1.25 cmolc·kg-1. Exchangeable Al and aluminum saturation increased with depth and their concentrations were below the toxic range for tree stands. The study revealed that more young soils formed on the piedmont sites had somewhat better properties as compared to matured hill top soils. The variation in physico-chemical properties of the soils seemed to be influenced by the topography to a greater extent in the studied area.
机译:根据土壤层的深度,从吉大港大学的四个山坡上收集了45个土壤样品。根据美国农业部土壤分类法,山顶上的土壤剖面相对发达,属于Ultisols。山麓的剖面是相对较年轻的土壤,被分类为Inceptisols和Entisols。所有剖面的土壤都具有质地粗糙(38%至73%,沙分数),高堆积密度(1.15至1.32 Mg·m-3),有机碳含量低(0.26%至1.73%)的特征。 ),酸性土壤反应(从4.44至5.52不等,pHKCl从3.57至4.90不等)。所有上的土壤均缺乏可交换的碱和碱饱和度。 CEC值范围从9.12 cmolc·kg-1到14.5 cmolc·kg-1,而ECEC从1.96到4.78 cmolc·kg-1。可交换的Al(铝)浓度范围为0.41至0.66 cmolc·kg-1。可交换酸度范围为0.74至1.25 cmolc·kg-1。可交换的铝和铝的饱和度随深度的增加而增加,且其浓度低于林木的毒性范围。研究表明,与成熟的山顶土壤相比,在山麓地带形成的更多年轻土壤具有更好的特性。在研究区域中,土壤理化性质的变化似乎在很大程度上受到地形的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号