欢迎访问《生态学杂志》官方网站,今天是 分享到:

生态学杂志

• 研究论文 • 上一篇    下一篇

湖泊-流域系统硅循环及其对碳和养分循环的影响

杨伟华,郝倩,夏少攀,马楠,宋照亮*   

  1. (天津大学表层地球系统科学研究院, 天津 300072)
  • 出版日期:2018-03-10 发布日期:2018-03-10

Silicon cycle in lake-watershed system and its effects on carbon and nutrient cycles.

YANG Wei-hua, HAO Qian, XIA Shao-pan, MA Nan, SONG Zhao-liang*   

  1. (Institute of the SurfaceEarth System Science Research, Tianjin University, Tianjin 300072, China).
  • Online:2018-03-10 Published:2018-03-10

摘要: 硅是环境中最为常见的元素之一,在地壳中的丰度为28.8%,是多数植物生长的有益元素。在生态系统中,硅循环与碳和营养元素的循环密切相关。以往国内外对于硅循环的研究大多针对海洋和陆地生态系统,而湖泊-流域系统中硅的循环过程及其对碳和营养元素循环影响的研究尚且不多。本文结合国内外研究进展,综述硅在湖泊-流域系统的存在形态及分布,阐述硅在湖泊-流域系统中的基本循环过程,以及该循环过程对碳和养分循环的影响及其作用机制。在此基础上,提出了今后的研究工作应对湖泊硅素来源进行分析,并确定湖泊沉积物中植硅体与硅藻固碳量,同时完善湖泊氮、磷、硅含量及其生态化学计量关系,最后建立湖泊-流域系统硅-碳-养分耦合循环模型。本文有助于更好地了解湖泊-流域系统硅循环过程以及硅循环对碳、养分循环的影响机制,为缓解湖泊-流域水体富营养化现象和全球气候变化提供科学参考。

关键词: 非结构性碳水化合物, 物种, 氮添加, 叶片

Abstract: Silicon, with the abundance of 28.8%, is one of the most abundant elements in the earth’s crust. It is a beneficial element for the growth of most plants. In ecosystems, silicon cycle is closely related to the cycles of carbon and other nutrient elements. Most researches of silicon cycle are focused on marine or terrestrial ecosystems. Few studies focused on the processes of silicon cycle and their effects on carbon and nutrient cycles in lake-watershed systems. This review summarized the speciation and distribution of silicon in lake-watershed systems, elaborated the basic processes of silicon cycle in lakewatershed systems, and illustrated the underlying mechanisms for the controlling of silicon cycle on carbon and nutrient cycles. We suggest that futureresearch should analyze silicon sources of lakes and quantify the amount of carbon sequestered by phytoliths and diatoms in lake sediments. It is necessary to strengthen the study on the stoichiometric relationships of nitrogen, phosphorus and silicon in lakes and to build ecosystem models coupled with silicon carbon-nutrient cycles for lake-watershed system. This review is helpful for fully understanding silicon cycle and its effects on carbon and nutrient cycles, and provides reference for mitigating the eutrophication of lake-watershed systems and the impacts of global climate change.

Key words: nitrogen addition, species, leaf, non-structural carbohydrates