首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >The dynamics pattern of soil carbon and nutrients as soil thawing proceeded in the alpine/subalpine forest.
【24h】

The dynamics pattern of soil carbon and nutrients as soil thawing proceeded in the alpine/subalpine forest.

机译:在高山/亚高山森林中,土壤碳和养分随土壤融化的变化而变化。

获取原文
获取原文并翻译 | 示例
           

摘要

Little attention has been given to the dynamics of soil C and nutrients during the soil thawing period in subalpine/alpine forests. To understand the ecological linkages between the non-growing and growing seasons, soil C and nutrients were measured in the primary fir (Abies faxoniana) forest, fir and birch (Betula albosinensis) mixed forest and secondary fir forest in the subalpine/alpine regions of western China. Soils were sampled as soil thawing proceeded from 5 March, 15 March, 25 March, 5 April and 15 April to 25 April 2009, based on monitored soil temperatures. Frequencies of temperature fluctuations (below and above 0 degrees C) during the soil thawing period depended on the altitude. The soil organic layer showed higher contents and stocks of C, N and P compared with the mineral soil layer. Since the soil organic layer was more directly exposed to environmental changes, the variations of soil C and nutrients in the soil organic layer were more apparent than those in the mineral soil layer. The fluctuations of soil C and nutrients varied with the altitude during soil thawing period. Soil C and nutrient concentrations decreased sharply at the beginning of soil thawing, and thereafter increased in the mixed and secondary forest, which were different to the changes in the primary forest. Soil available nutrients, except for NH4+-N in the primary forest, showed an increasing tendency in the early stage of the thawing period, but soil available N and P decreased in the later stage of the thawing period. The increasing soil temperature had little effect on soil nutrient availability during the thawing period. The results indicated that soil carbon and nutrients were significantly affected by the length of freeze - thaw period, which is beneficial towards understanding the interactions between wintertime and the growing season.
机译:在亚高山/高山森林解冻期间,土壤碳和养分的动态很少受到关注。为了了解非生长季节和生长季节之间的生态联系,在亚高山/高山地区的原始冷杉(Abies Faxoniana)森林,冷杉和桦木(桦木Betula albosinensis)混交林和次生冷杉森林中测量了土壤C和养分中国西部。根据监测到的土壤温度,从2009年3月5日,3月15日,3月25日,4月5日和4月15日至4月25日解冻,对土壤进行采样。土壤融化期间温度波动的频率(低于和高于0摄氏度)取决于海拔高度。与矿质土壤层相比,土壤有机层的碳,氮,磷含量更高。由于土壤有机层更直接暴露于环境变化中,因此土壤有机碳中土壤碳和养分的变化要比矿物土壤中的变化更为明显。土壤融化期间土壤碳和养分的波动随海拔的变化而变化。在融化开始时,土壤碳和养分浓度急剧下降,然后在混交林和次生林中增加,这与原始林的变化不同。原始森林中除NH 4 + -N以外的土壤速效养分在融化初期均呈增加趋势,而土壤速效N和P下降在解冻期的后期。解冻期土壤温度升高对土壤养分有效性的影响很小。结果表明,冻融期的长短对土壤碳和养分有显着影响,有利于理解冬季与生长季节之间的相互作用。

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