生态环境学报
生態環境學報
생태배경학보
ECOLOGY AND ENVIRONMENT
2013年
4期
689-704
,共16页
魏书精%罗碧珍%孙龙%魏书威%刘芳芳%胡海清
魏書精%囉碧珍%孫龍%魏書威%劉芳芳%鬍海清
위서정%라벽진%손룡%위서위%류방방%호해청
森林生态系统%土壤呼吸%时空异质性%影响因子%模型模拟
森林生態繫統%土壤呼吸%時空異質性%影響因子%模型模擬
삼림생태계통%토양호흡%시공이질성%영향인자%모형모의
forest ecosystem%soil respiration%spatial and temporal heterogeneity%effect factors%model simulating
土壤呼吸是全球碳循环的一个重要流通途径,是大气CO2的重要来源之一,是陆地碳循环的重要环节,对温室气体的排放产生直接影响,且关系到科学把握全球变化背景下CO2的排放动态,在全球碳收支中占据重要地位,越来越受到各国学者的广泛关注。在全球变化背景下研究土壤呼吸的时空异质性及其影响因子,可为探索陆地生态系统在碳循环方面的碳源/碳汇功能和揭示“碳失汇之迷”,以及减缓气候变暖等方面提供有力的依据。作为一个复杂的生物学与生态学过程,土壤呼吸受到气候、生物以及非生物等因子的影响而呈现时空异质性,并随着各种干扰因子影响的增强,人为因素的作用亦越来越大,该文阐述了森林生态系统土壤呼吸作用的时空动态变化规律、并探讨了影响土壤呼吸速率的各种影响因子,剖析了导致土壤呼吸时空异质性的影响因子,指出自然因子、生物因子和干扰因子共同驱动着土壤呼吸的时空动态变化。并对森林生态系统土壤呼吸作用的模型模拟方面的研究进展进行了综述。最后讨论了森林土壤呼吸时空异质性研究中存在的相关问题,同时提出了今后土壤呼吸研究中应关注的问题,同时对森林生态系统土壤呼吸时空异质性及影响因子的研究方向进行了展望。
土壤呼吸是全毬碳循環的一箇重要流通途徑,是大氣CO2的重要來源之一,是陸地碳循環的重要環節,對溫室氣體的排放產生直接影響,且關繫到科學把握全毬變化揹景下CO2的排放動態,在全毬碳收支中佔據重要地位,越來越受到各國學者的廣汎關註。在全毬變化揹景下研究土壤呼吸的時空異質性及其影響因子,可為探索陸地生態繫統在碳循環方麵的碳源/碳彙功能和揭示“碳失彙之迷”,以及減緩氣候變暖等方麵提供有力的依據。作為一箇複雜的生物學與生態學過程,土壤呼吸受到氣候、生物以及非生物等因子的影響而呈現時空異質性,併隨著各種榦擾因子影響的增彊,人為因素的作用亦越來越大,該文闡述瞭森林生態繫統土壤呼吸作用的時空動態變化規律、併探討瞭影響土壤呼吸速率的各種影響因子,剖析瞭導緻土壤呼吸時空異質性的影響因子,指齣自然因子、生物因子和榦擾因子共同驅動著土壤呼吸的時空動態變化。併對森林生態繫統土壤呼吸作用的模型模擬方麵的研究進展進行瞭綜述。最後討論瞭森林土壤呼吸時空異質性研究中存在的相關問題,同時提齣瞭今後土壤呼吸研究中應關註的問題,同時對森林生態繫統土壤呼吸時空異質性及影響因子的研究方嚮進行瞭展望。
토양호흡시전구탄순배적일개중요류통도경,시대기CO2적중요래원지일,시륙지탄순배적중요배절,대온실기체적배방산생직접영향,차관계도과학파악전구변화배경하CO2적배방동태,재전구탄수지중점거중요지위,월래월수도각국학자적엄범관주。재전구변화배경하연구토양호흡적시공이질성급기영향인자,가위탐색륙지생태계통재탄순배방면적탄원/탄회공능화게시“탄실회지미”,이급감완기후변난등방면제공유력적의거。작위일개복잡적생물학여생태학과정,토양호흡수도기후、생물이급비생물등인자적영향이정현시공이질성,병수착각충간우인자영향적증강,인위인소적작용역월래월대,해문천술료삼림생태계통토양호흡작용적시공동태변화규률、병탐토료영향토양호흡속솔적각충영향인자,부석료도치토양호흡시공이질성적영향인자,지출자연인자、생물인자화간우인자공동구동착토양호흡적시공동태변화。병대삼림생태계통토양호흡작용적모형모의방면적연구진전진행료종술。최후토론료삼림토양호흡시공이질성연구중존재적상관문제,동시제출료금후토양호흡연구중응관주적문제,동시대삼림생태계통토양호흡시공이질성급영향인자적연구방향진행료전망。
Soil respiration is an important process in carbon cycling. Soil respiration of forest ecosystems is an important hot issue in research on regional carbon budget and global change. Understanding the processes and controlling factors of soil respiration are crucial in investigating the terrestrial carbon cycling. Soil respiration is an important distribution channel in global carbon cycle, is one of the important sources of atmospheric CO2, important part of the terrestrial carbon cycle, have a direct impact on greenhouse gas emissions, and related to the science to grasp the context of global change CO2 emissions dynamic, occupy an important position in the global carbon budget, are causing increasingly attention to researchers all over the world. The study of the temporal and spatial heterogeneity of soil respiration and its influencing factors in the context of global change can explore the carbon, the carbon sink function of terrestrial ecosystems in the carbon cycle and reveal the “missing sink”, provide strong evidence. As a complex biological processes, and ecological processes, soil respiration has been the impact of climate, biological and abiotic factors showed the temporal and spatial heterogeneity, and a variety of confounding factors affect the enhanced role of human factors is also growing large. This paper describes the spatial and temporal dynamic changes of soil respiration in forest ecosystems, and to explore the various factors affecting soil respiration rate, analysis of the impact factors lead to spatial and temporal heterogeneity of soil respiration, and pointed out that natural factors, biological factors and confounding factors driven by the spatial and temporal dynamic changes of soil respiration. We reviewed the research progress of the model simulating of soil respiration in forest ecosystem. Finally, we discuss issues related to temporal and spatial heterogeneity of soil respiration in forest ecosystems, and studies of soil respiration should be concerned about the problem in the future. At the same time, we discuss temporal heterogeneity of soil respiration in forest ecosystems and the impact factor the research direction of the prospect.