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1.
鼎湖山常绿针阔叶混交林CO2通量估算   总被引:1,自引:0,他引:1  
鼎湖山通量站是中国通量网络(ChinaFLUX)中4个森林站之一,采用开路涡度相关方法,对南亚热带常绿针阔叶混交林进行生态系统尺度的CO2通量长期定位观测.利用2003,2004年2整年观测资料,分析该生态系统CO2通量时间变化特征及其受环境因子的制约关系.通过坐标转换、WPL订正和质量控制后,发现本通量站存在明显的夜间泄漏问题,因此采用Michaelis- Menten模型,利用白天(PAR>1.0μmol-1 Photons·m-2·s-1)湍流充分条件-F(u*>0.2 m·s-1)的通量资料,逐月拟合净生态系统CO2交换NEE对光合有效辐射PAR的响应,利用拟合Michaelis-Menten方程得到的生态系统呼吸Reco,建立Reco与5 cm土壤温度的指数关系,借此反演夜间呼吸.主要结论包括:(i)逐月拟合的光能利用效率a平均为0.0027(±0.0011)mgCO2·μmol-1 Photons,最大光合速率Amax平均为1.102(±0.288)mgCO2·m-2·s-1,a与Amax季节性变化规律均不明显,表明林内旱季没有明显的缺水和低温胁迫存在,这与南亚热带常绿混交林叶面积指数(LAI)季节性变化较小的特点是一致的.(ii)生态系统呼吸月总量平均为95.3(±21.1)gC·mm-2month-1,约占生态系统总初级生产力GPP的68%.NEE月总量平均为-43.2(±29.6)gC·m-2·month-1,大部分月份NEE为负号,表明该生态系统全年均具有较强的碳汇功能.估算得到2003,2004年NEE总量分别为-563,-441.2gC·m-2·a-1,占GPP的32%.  相似文献   
2.
鼎湖山针阔叶混交林生态系统能量平衡分析   总被引:8,自引:0,他引:8       下载免费PDF全文
能量平衡分析作为评价涡度相关法通量观测数据可靠性方法,备受学界重视。应用OLS(Ordinary least squares)和EBR(Energy Balance Ratio)2种方法,系统分析了广东省鼎湖山针阔叶混交林生态系统能量平衡特点,并分析各种涡度通量修正方法对能量平衡的影响,结果表明鼎湖山通量站平均能力平衡不闭合度为33%-47%,略高于普遍报道的不闭合度范围(10%-30%)。WPL修正、μ*订正和坐标转换,使得能量平衡闭合度有所提高,但夜间特别是冬季能量平衡较差问题依然没有得到根本解决,表明夜间弱湍流并不是导致夜间能量平衡闭合度差的主要原因。为客观评价本通量站以及ChinaFLUX能量平衡状况和通量数据质量,确定涡度相关法CO2通量数据分析方法和改进策略提供依据。  相似文献   
3.
The Liangshui Natural Reserve in Heilongjiang Province of China was selected as the study area. The authors collected the samples of forest litter (Tilia amurensis, Fraxinus mandshurica, Pinus koraiensis, Acer mono, Betula costata, and mixed litter), soil in humus horizon (0--5cm) and soil horizon (5-20cm), and soil macrofauna (Oligochaeta, Geophiloporpha and Juliformia) from 2001 to 2002. The role of soil macrofauna in the material cycle was analyzed through comparing the macro-element contents among various parts of the subsystems and using enrichment index (El). The results indicate that dynamic changes of various litters are very complicated. The contents of Fe in each kind of litter increase firstly, and then decrease in the study period. The changes of macro-element contents are greater in the broad-leaf litter than in the coniferous litter, and the mixed litter is in the middle level, but the differences among them are not significant. The contents of Mg and Fe in humus are higher than those in soil, but the contents of Ca in soil are higher than that in humus. The dynamic changes of macro-element contents in soil and soil fauna are not consistent with those in litter. The diplopod presented obvious enrichment of Ca and Mg (E1〉1), but it does not significantly enrich Fe. Earthworm has a stronger enrichment ability of Fe than diplopod and scolopendra, but E1〈1. Soil fauna can make great influences on the material cycle of the subsystems.  相似文献   
4.
Earthworms are the important constituents in the decayed food web and the main ecological conditioners in the process of decomposition and nutrient mineralization. The transformation of organic carbon (C) and total nitrogen (N) in the broad-leaved litters ingested by earthworms was researched by means of a laboratory experiment. Experimental samples were collected from broad-leaved Korea Pine mixed forest in Liangshui National Natural Reserve (47°10′50″N, 128°53′20″E) in the northeastern Xiao Hinggan Mountains of Northeast China. The contents of organic C and total N in earthworms, leaf litters and earthworm faeces were analyzed. Results show that the organic C content was in the fol- lowing order: leaf litters>faeces>earthworms, while total N content was contrary to that of the organic C. The organic C contents in the different leaf litters were in the following order: Tilia amurensis>Betula costata>Acer mono, whereas the total N contents in the different leaf litters were: Betula costata>Tilia amurensis>Acer mono. The contents of organic C and total N in the faeces from the different leaf litters were almost consistent with the contents of the leaf litters. After the leaf litters were ingested by earthworms, the organic C, which was transformed to increase earthworms' weights, ac- counted for 3.90%-13.31% of the total ingestion by earthworms, while that in the earthworm faeces accounted for 6.14%-13.70%. The transformed organic C through the other metabolism (e.g., respiration) of earthworms accounted for 75.04%-89.92%. The ingested organic C by earthworms was mostly used for metabolic activities. The N ingested by earthworms was less than organic C. It is estimated that 37.08% of total N was transformed to increase the earthworm's weight, 19.97% into earthworm faeces and 47.86% for the consumption of the earthworm's activities. The earthworms not only increased the content of organic C and total N in the soil, but also decreased the values of C/N in the soil and leaf litters. Earthworms play a major role in the leaf litters' decomposition and transformation.  相似文献   
5.
The Liangshui Natural Reserve in Heilongjiang Province of China was selected as the study area.The authors collected the samples of forest litter (Tilia amurensis,Fraxinus mandshurica,Pinus koraiensis,Acer mono,Betula costata,and mixed litter),soil in humus horizon (0-5cm) and soil horizon (5-20cm),and soil macrofauna (Oligochaeta,Geophiloporpha and Juliformia) from 2001 to 2002.The role of soil macrofauna in the material cycle was analyzed through comparing the macro-element contents among various parts of the subsystems and using enrichment index (EI).The results indicate that dynamic changes of various litters are very complicated.The contents of Fe in each kind of litter increase firstly,and then decrease in the study period.The changes of macro-element contents are greater in the broad-leaf litter than in the coniferous litter,and the mixed litter is in the middle level,but the differences among them are not significant.The contents of Mg and Fe in humus are higher than those in soil,but the contents of Ca in soil are higher than that in humus.The dynamic changes of macro-element contents in soil and soil fauna are not consistent with those in litter.The diplopod presented obvious enrichment of Ca and Mg (EI>1),but it does not significantly enrich Fe.Earthworm has a stronger enrichment ability of Fe than diplopod and scolopendra,but EI<1.Soil fauna can make great influences on the material cycle of the subsystems.  相似文献   
6.
长白山红松阔叶混交林土壤动物生态分布   总被引:3,自引:1,他引:2  
对长白山红松阔叶混交林分布的上缘、典型分布区和分布下缘土壤动物群落进行研究。结果表明,红松阔叶混交林三个分布区土壤动物群落组成存在差异,其中典型分布区土壤动物多样性指数较高,群落组成均匀。甲螨亚目、辐螨亚目、节跳虫科、球角跳虫科、革螨亚目和山跳虫科相关性较大,共同出现在各分布区。土壤动物垂直分布具有明显的表聚性,且红松阔叶混交林的上缘和典型分布区表聚性更为突出。通过灰色综合关联度分析表明,土壤全钾、全氮和有机质含量对土壤动物群落影响较大,而土壤全磷含量和pH对土壤动物的影响次之。  相似文献   
7.
8.
本文探讨了利用NOAA极轨气象卫星资料监测森林草原火情时,过火区域的判读方法,同时介绍了如何计算过火面积,并且给出了对常绿林和落叶林、草场过火区域的分离手段。  相似文献   
9.
黄泥河自然保护区老白山南坡植被垂直带谱及其特点   总被引:4,自引:0,他引:4  
老白山南坡植被垂直分异现象明显,可划分为5个植被垂直带:蒙古栎阔叶林带、红松阔叶混交林带、鱼鳞云杉暗针叶林带、岳桦林带和偃松林带。由于山体小、下部受人为干扰以及上部被多条沟谷切割,故植被垂直带较窄。山体上部因受沟谷切割,加之分布冰缘地貌石河以及部分植物种具有较强的适应性,所以造成垂直带谱的破碎化。山顶冷湿,地势平坦、发育有沼泽。老白山比长白山白头山纬度高2°,海拔低995m,植被垂直带谱比其多一个偃松带;老白山比大兴安岭英吉里山纬度低7°,海拔高236m,植被垂直带谱比其多一个岳桦林带,说明老白山植被垂直带谱具有从温带向寒带过渡的特点。  相似文献   
10.
长白山温带针阔叶混交林作为典型的温带森林生态系统,对气候变化的反应比较敏感,其生长季及积温的变化是准确评价该我国东北林区气候变化的重要依据。本研究采用中国科学院长白山森林生态系统定位站获取的1982-2010年气温目值观测资料,分析了近20a该地区生长季长度及积温的变化,结果标明长白山温带针阔叶混交林29a的平均温度为3.6℃,29a中该地区气温有较弱的上升趋势;长白山温带针阔叶混交林1990-2010年生长季长度的平均值为174d,近20a中生长季长度呈弱增长趋势;长白山温带针阔叶混交林1990~2010年生长季起始日期变化较稳定,生长季终止日期有推后的趋势;长白山温带针阔叶混交林1990-2010年≥5℃的活动积温和有效积温平均值分别为2616.9℃、1744.8℃。近20a中,≥5℃活动积温和有效积温都有着缓慢升高的趋势。  相似文献   
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