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1.
缙云山不同土地利用方式土壤有机碳组分特征   总被引:9,自引:6,他引:9  
李鉴霖  江长胜  郝庆菊 《生态学报》2015,35(11):3733-3742
探讨了我国西南地区缙云山亚热带常绿阔叶林(以下简称林地)、果园、坡耕地以及撂荒地4种土地利用方式对土壤有机碳(SOC)组分含量及其分配比例的影响。采用物理分组技术,将SOC分为粗颗粒有机碳(cPOC)、细颗粒有机碳(fPOC)、微团聚体内颗粒有机碳(iPOC)、微团聚体内粉+黏颗粒(s+c_m)有机碳及粉+黏颗粒(s+c)有机碳。研究结果表明:在0—60cm的土壤深度范围内,SOC、cPOC、fPOC、iPOC、s+c_m组分以及s+c组分有机碳平均含量均为林地(9.02、3.14、1.61、0.33、0.42、3.53g/kg)显著高于果园(3.27、0.93、0.27、0.10、0.24、1.73g/kg)和坡耕地(2.58、0.51、0.10、0.12、0.08、1.77g/kg),说明林地开垦会导致SOC及各组分的流失;而撂荒地上述SOC及其各组分含量分别为14.90、5.17、2.36、0.42、0.59和6.36g/kg,均显著高于坡耕地,表明耕地撂荒后SOC及其组分能得到有效的恢复和截存。在SOC的各物理组分中,iPOC的有机碳分配比例最低,4种土地利用方式下均为3%左右;cPOC和fPOC作为活性较强的非保护有机碳库,在林地和撂荒地中所占SOC分配比例最高,达到50%以上;而果园和坡耕地中53um的粉+黏颗粒有机碳组成的化学保护有机碳库分配比例最大,分别为65.9%和71.6%,表明林地和撂荒地土壤有机碳的活性远远大于坡耕地及果园,支持更高的土壤肥力。在SOC及其组分中,fPOC可作为评估土地利用变化对土壤有机碳库影响的良好指标。  相似文献   

2.
不同土地利用类型下土壤活性有机碳库的变化   总被引:18,自引:0,他引:18  
宇万太  马强  赵鑫  周桦  李建东 《生态学杂志》2007,26(12):2013-2016
分析了中国科学院沈阳生态试验站不同土地利用类型长期定位试验土壤0~40cm活性有机碳含量,结果表明:0~20cm土层内荒地土壤有机碳、易氧化碳、微生物生物量碳、溶解性有机碳和轻组有机碳含量高于割草地和裸地,而割草地颗粒有机碳含量略高于荒地;在20~40cm土层,割草地土壤有机碳、易氧化碳和颗粒有机碳含量较高,而荒地微生物量碳、溶解性有机碳和轻组有机碳含量较高。不同土地利用类型土壤活性有机碳含量均随着土层加深而递减。土壤微生物量碳、溶解性有机碳和轻组有机碳的分配比例为荒地>割草地>裸地,易氧化碳和颗粒有机碳的分配比例为割草地>荒地>裸地。土壤活性有机碳的分配比例随土层加深而下降,但溶解性有机碳的分配比例变化趋势相反。  相似文献   

3.
Khomutova  T. E.  Shirshova  L. T.  Tinz  S.  Rolland  W.  Richter  J. 《Plant and Soil》2000,219(1-2):13-19
The conversion of natural forests into cultivated lands causes changes of the carbon cycle, which are of particular importance for fragile landscapes. We examined the mobilization of organic carbon in undisturbed soil monoliths of a deciduous forest, a pine plantation, and a pasture under constant temperature (20°C) and moisture via a leaching experiment. Soil percolation was performed with synthetic rainfall solution (pH 5) for a period of 20 weeks. The leachates of the first 12 weeks were analyzed for the pH, DOC content, light absorbance at 260 and 330 nm. At the end of the experiment soil pH, total carbon, C:N ratio, content of fractions of humic substances were examined. After 20 weeks of the leaching experiment the decrease of soil total Corg reached 29, 23, and 50% in soil monoliths of deciduous forest, pasture, and coniferous forest, respectively. The amounts of DOC removed constituted 6.4, 3.8, and 6.2% of initial soil Corg, respectively. Cumulative values of DOC production decreased in the sequence coniferous forest > deciduous forest > pasture. UV-Vis absorptivities of DOC were similar in both forests and differed from those in pasture. UV-Vis characteristics showed that DOC composition changed during the experiment. The intensive soil percolation caused alterations of the properties of soil organic matter, in particular a change of fraction composition of humic substances occurred.  相似文献   

4.
Zhong  Li  Qiguo  Zhao 《Plant and Soil》2001,231(2):175-185
Tropical and subtropical China comprises a land area of about 215 Mha, but reports on its soil C storage and contents are limited. The objective of this study was to investigate the C density, stocks and distribution in soils of this region under different land uses by using soil species data from the Second National Soil Survey and the Vegetation Map of the People's Republic of China (1:4 M). It was estimated that there is a total of about 28.7±8.2 Pg organic C stored in the upper 1 m of soils of the entire region. Changes of C content (C) with depth (D) were observed following a relationship of C = (c + D)/ (a + bD), or C = 1/(a + bD). Of the various patterns of land uses in the region, soil C density was generally higher in the west than in the east, and while small differences were found in croplands, there were large variations in natural soils. In the west, the C density of meadow and herbaceous swamp soil was the highest (about 40 kg C/m2), followed by coniferous and broad-leaf forest soils (19.6 and 19.2 kg C/m2, respectively). The C density of paddy, bush and coppice forest soils showed a density of 12.6 and 14.6 kg C/m2, respectively. Upland and grass-savanah soils ranked the lowest (9.4 and 10.5 kg C/m2, respectively). In the east, meadow and herbaceous swamp soil had the highest C density (25.2 kg C/m2), but differences in C density among soils under coniferous forest, broad-leaf forest, bush and coppice forest, and rice were small, varying from 10.2 to 11.4 kg C/m2. The C density of upland soil (7.2 kg C/m2), appeared a little higher than that of grass-savanah soil (6.3 kg C/m2). For the various land uses in the region, the C density estimation is accompanied by relatively large variations.  相似文献   

5.
土壤碳库变化对于全球温室效应、全球碳循环有重大的影响.城市土壤是全球碳循环的重要环节,城市化对城市土壤有机碳库的影响不容忽视.在野外调查和样品分析的基础上,对深圳市0~10、11~20、21~30cm深度不同土地利用类型土壤有机碳碳含量、密度及分布特征进行实测统计分析.结果表明:(1)深圳市不同土地利用类型0~30cm土壤有机碳含量均值介于0.72~40.52g·kg-1.土壤有机碳密度均值介于0.27~13.36kg·m-2.(2)土壤有机碳含量与密度随土层深度的增加而降低.0~10cm土壤有机碳含量均值介于1.56~71.88g·kg-1,有机碳密度均值介于0.18~7.05kg·m-2之间;11~20cm土壤有机碳含量均值介于0.59~36.79g·kg-1,土壤有机碳密度均值介于0.09~4.5kg·m-2,21~30cm土壤有机碳含量均值介于0~12.90g·kg-1,土壤有机碳密度均值介于0~1.78kg·m-2.(3)林地土壤有机碳含量和密度随着海拔高度的升高而降低,城市建设用地与闲置土地土壤有机碳含量与密度很低.(4)土地利用方式的变化可以改变有机碳在土壤中的贮存与分布.  相似文献   

6.
Soil organic carbon (SOC), the largest terrestrial carbon pool, plays a significant role in soil‐related ecosystem services such as climate regulation, soil fertility and agricultural production. However, its fate under land use change is difficult to predict. A major issue is that SOC comprised of numerous organic compounds with potentially distinct and poorly understood turnover properties. Here we use spatiotemporal measurements of the particulate (POC), mineral‐associated (MOC) and charred SOC (COC) fractions from 176 trials involving changes in land use to assess their underlying controls. We find that the initial pool sizes of each of the three fractions consistently and dominantly control their temporal dynamics after changes in land use (i.e. the baseline effects). The effects of climate, soil physicochemical properties and plant residues, however, are fraction‐ and time‐dependent. Climate and soil properties show similar importance for controlling the dynamics of MOC and COC, while plant residue inputs (in term of their quantity and quality) are much less important. For POC, plant residues and management practices (e.g. the frequency of pasture in crop‐pasture rotation systems) are substantially more important, overriding the influence of climate. These results demonstrate the pivotal role of measuring SOC composition and considering fraction‐specific stabilization and destabilization processes for effective SOC management and reliable SOC predictions.  相似文献   

7.
土地利用变化对川西米亚罗林土壤活性碳库的影响   总被引:5,自引:0,他引:5  
为了揭示土地利用变化对土壤活性有机碳库的影响,在四川省亚高山米亚罗林区,以原始冷杉林(M-Y)和由原始林转化成的45年龄云杉人工林(M-60)、25年龄云杉人工林(M-80)和菜地(M-C)等4种土地利用类型为研究对象,进行了土壤的微生物量碳(MBC)、水溶性有机碳(WDOC)和易氧化有机碳(LOC)的含量和季节变化研究.结果表明,土地利用变化明显影响土壤活性有机碳组分的含量,其中微生物量碳和水溶性有机碳的变化趋势为M-Y>M-60>M-80>M-C,易氧化有机碳的变化趋势则为M-60>M-Y.土地利用变化没有改变活性有机碳各组分的垂直分布,各组分均随着土层深度的增加而降低,季节变化幅度较小,但枯落物层和表层土壤的变化幅度明显高于深层土壤,而各组分的分配比例变化幅度明显小于活性有机碳含量的变化.  相似文献   

8.
张俊华  李国栋  南忠仁 《生态学报》2012,32(12):3745-3753
土地利用方式是影响土壤粒径分布、土壤有机碳及其组成含量的重要因素。研究显示:黑河中游典型土地利用类型下,不同土壤粒径分布和土壤总有机碳(TOC)、活性有机碳(AOC)、非活性有机碳(NOC)的含量存在差异。剖面上TOC、AOC、NOC含量较高的旱地、水田、中覆盖度草地与含量较低的戈壁、裸土地、沙地、盐碱地相比,<1μm、1—5μm、5—10μm、10—50μm的粒径含量较高,而50—250μm、250—1000μm的含量较低,这种变化以50μm为分界,分析表明<50μm的粉粒和粘粒可起到固碳作用,而50—250μm、250—1000μm的砂粒起碳损失作用。统计结果表明,以50μm为分界,水田、戈壁、中覆盖度草地剖面上TOC、AOC、NOC与1—5μm、5—10μm、10—50μm呈正相关,与50—250μm、250—1000μm呈负相关。分析发现,粉粒和粘粒与土壤TOC、AOC、NOC的关系较显著,是影响和控制团聚体形成和稳定的重要因素。增加地表植被覆盖度、退化生态系统的植被恢复、农田耕种、防风固沙措施是提高土壤有机碳、粘粒和粉粒含量的方式,也为土壤团聚体的形成和稳定提供基础。  相似文献   

9.
苏北沿海不同土地利用方式土壤水溶性有机碳含量特征   总被引:5,自引:0,他引:5  
土壤水溶性有机碳(WSOC)是土壤碳循环最活跃的组成部分之一。土地利用方式的改变可能显著影响土壤有机碳的组成和结构,进而影响到大气与土壤间的碳交换。本研究以苏北沿海地区农田、杨农复合经营、杨树纯林以及草地等4种不同土地利用方式土壤为研究对象,采用TOC-VCPN总有机碳仪测定了4种不同土地方式下土壤WSOC含量的变化。分析了土壤WSOC与土壤总有机碳(TOC)、易氧化碳(ROC)及理化性质的相关关系。结果表明:WSOC和TOC、土壤全氮(TN)、ROC呈显著正相关,与碳氮比、pH、土壤容重呈显著负相关;WSOC的含量随土层的加深而减少,与总有机碳的变化特征一致,在各个土层,不同土地利用方式WSOC含量差异不显著;农田和草地的WSOC含量在0~10cm土层与10~25cm土层之间差异显著(P<0.05),杨农复合经营的WSOC含量在10~25cm土层与25~40cm土层之间差异显著(P<0.05),其他3种类型差异不显著。  相似文献   

10.
Soil organic carbon (SOC) sequestration is a promising climate change mitigation option. In this context, the formation of the relatively long-lived mineral-associated organic carbon (MAOC) is key. To date, soils are considered to be limited in their ability to accumulate MAOC, mainly by the amount of clay and silt particles present. Using the comprehensive German Agricultural Soil Inventory, we selected 189 samples with a wide range of SOC (5–118 g kg−1) and clay contents (30–770 g kg−1) to test whether there is a detectable upper limit of MAOC content. We found that the proportion of MAOC was surprisingly stable for soils under cropland and grassland use across the whole range of bulk SOC contents. Soil texture influenced the slope of the relationship between bulk SOC and MAOC, but no upper limit was observed in any texture class. Also, C content in the fine fraction (g C kg−1 fraction) was negatively correlated to fine fraction content (g kg−1 bulk soil). Both findings challenge the notion that MAOC accumulation is limited by soil fine fraction content per se.  相似文献   

11.
喀斯特不同土地利用类型裂隙土壤有机碳及磷素赋存特征   总被引:3,自引:0,他引:3  
以喀斯特石漠化区不同土地利用类型裂隙土壤为研究对象,运用野外调查和实验室内分析相结合方法,探索其有机碳和磷素含量变化及其赋存特征,以期为喀斯特地区开展石漠化治理和植被恢复提供理论依据。结果表明:4种土地利用类型裂隙土层土壤有机碳赋存含量变化范围为16.067-39.436 g/kg,总体呈现出随土层深度增加而降低的变化趋势;土壤全磷、有效磷赋存含量变化范围分别为0.093-0.274 g/kg、3.836-8.025 mg/kg,整体上在裂隙表层显著高于其他土层,具有上层高下层低的特点;同时,土壤有机碳和磷素总体上属于中度变异。乔木林地和灌丛地的C/P总体上表现出随土层的加深而减小的趋势,而草地和撂荒地先减小后增加,土壤C/P在各土地利用类型裂隙土层变化范围为86.499-268.343,磷的有效性较低;随土层深度的增加,各土地利用类型裂隙土壤有机碳、全磷和有效磷含量逐渐在减少,有机碳对土壤碳磷比、有效磷含量变化有一定影响。  相似文献   

12.
Land use change and the global carbon cycle: the role of tropical soils   总被引:31,自引:4,他引:31  
Millions of hectares of tropical forest are cleared annually for agriculture, pasture, shifting cultivation and timber. One result of these changes in land use is the release of CO2 from the cleared vegetation and soils. Although there is uncertainty as to the size of this release, it appears to be a major source of atmospheric CO2, second only to the release from the combustion of fossil fuels. This study estimates the release of CO2 from tropical soils using a computer model that simulates land use change in the tropics and data on (1) the carbon content of forest soils before clearing; (2) the changes in the carbon content under the various types of land use; and (3) the area of forest converted to each use. It appears that the clearing and use of tropical soils affects their carbon content to a depth of about 40 cm. Soils of tropical closed forests contain approximately 6.7 kg C · m-2; soils of tropical open forests contain approximately 5.2 kg C · m-2 to this depth. The cultivation of tropical soils reduces their carbon content by 40% 5 yr after clearing; the use of these soils for pasture reduces it by about 20%. Logging in tropical forests appears to have little effect on soil carbon. The carbon content of soils used by shifting cultivators returns to the level found under primary forest about 35 yr after abandonment. The estimated net release of carbon from tropical soils due to land use change was 0.11–0.26 × 1015 g in 1980.  相似文献   

13.
任荣秀  杜章留  孙义亨  宋学姝  陆森 《生态学报》2020,40(19):6991-6999
土地利用变化影响土壤团聚性及有机碳分布,进而改变土壤碳循环过程。对太行山南部50年刺槐人工林(R50)、17年刺槐人工林(R17)、自然恢复林(NR)和农田(CL)等不同土地利用方式下的表层土壤(0-20 cm)进行了系统研究,利用湿筛法对土壤团聚体进行分级,并计算土壤结构稳定性参数(平均重量直径MWD,团聚体比例AR)及不同粒径团聚体有机碳贡献率,进而分析弃耕后土壤团聚体分布及团聚体有机碳含量变化。结果表明,土地利用方式对土壤团聚体粒径分布及团聚体有机碳含量有显著影响,自然恢复林与刺槐林的大团聚体(>0.25 mm)含量都高于农田,且自然恢复林的大团聚体增加更显著。MWD的计算结果表明:自然恢复林 > 刺槐人工林 > 农田,说明该区域的自然恢复方式更容易促进大团聚体的形成,并显著改良土壤结构及增强土壤团聚体稳定性。弃耕后,不同土地利用方式0-10 cm土层各粒径团聚体有机碳含量均高于农田,且团聚体有机碳含量与团聚体稳定性呈正相关。这些结果说明,研究区域的自然植被恢复和人工造林都可以显著提高土壤的固碳能力,且储存的有机碳主要存于大团聚体中,而农田的有机碳大都存于粘粒+粉粒团聚体中。自然植被恢复和人工造林均提高了土壤结构稳定性,是改善团粒结构、提高土壤质量的有效方式。  相似文献   

14.
分析对比了4个剖面(稻田、旱地、城墙岩群组林地、蓬莱镇组林地)Zn形态的分布特征,结果表明,稻田各形态Zn的剖面分布比旱地复杂,农地土层深厚,Zn各形态分配在层次间的变化较林地复杂.DTPA-Zn(有效态锌)在表层分配的相对较高,说明作物根系层及林木根系层缺Zn突出.对各种形态在不同剖面中的分配进行了显著性分析,结果表明,农地的碳酸盐结合态锌(3.65%)、紧结有机结合态锌(2.81%)、晶形氧化铁结合态锌(22.04%)显著大于林地(1.86%、0.84%、11.59%).  相似文献   

15.
长春市不同土地利用生境土壤弹尾虫群落结构特征   总被引:8,自引:3,他引:8  
吴东辉  张柏  陈鹏 《生态学杂志》2006,25(2):180-184
对长春市郊区天然次生林、农田、防护林和市区公园绿地等典型土地利用生境进行土壤弹尾虫调查,研究土地利用差异对土壤弹尾虫群落结构的影响.结果表明,长春市土地利用差异对弹尾虫群落结构特征影响明显,地表凋落物移除和耕作活动是影响弹尾虫群落结构特征的主要因素,地表凋落物移除显著减少弹尾虫的个体数量和群落多样性,耕作活动影响弹尾虫个体数量在土体中的垂直分布;地表植物群落类型对土壤弹尾虫群落结构特征也有一定影响.  相似文献   

16.
土地利用对崇明岛围垦区土壤有机碳库和土壤呼吸的影响   总被引:6,自引:0,他引:6  
张容娟  布乃顺  崔军  方长明 《生态学报》2010,30(24):6698-6706
土地利用方式是影响农业土壤碳固持和温室气体减排的关键因子之一,而准确地评价土地利用变化的影响往往因土壤本底的不均一和土地利用历史多变而复杂化。为此,在崇明东滩湿地围垦区选取了本底均匀、利用历史简单的几种土地利用类型(水-旱轮作农田、人工林、鱼塘撂荒地),研究其土壤有机碳库和土壤呼吸的变化及其与土壤环境间的关系,以期评价其各自的固碳和温室气体减排潜力。农田土壤的表层(20cm)有机碳和微生物生物量碳含量最高,分别为12.62g/kg和225.34mg/kg,包括苗圃栾树林、水杉林带以及桔园在内的人工林地次之,鱼塘撂荒地最低;但撂荒地深层土壤(40—100cm)的有机碳含量高于其它类型,反映了围垦前湿地土壤有机碳累积的残留影响。土壤呼吸强度的顺序则为鱼塘撂荒地农田桔园苗圃栾树林水杉林带。农耕地在前作小麦收割种植水稻后,土壤CO2通量显著下降,不及旱作时的10%。除农田和撂荒地以外,土壤表层5 cm深处温度可以很好地解释土壤呼吸速率的变化,但在高温高湿季节呼吸速率较为离散。研究表明:在有机质含量较低的土壤中,水-旱轮作可增加土壤有机碳的储量;受人类活动干扰较小的林地土壤,有机碳含量反而有可能低于农田土壤。在中国南方湿润亚热带地区,水旱轮作可较好地协调农业土壤的碳固持和释放过程的矛盾,可能具有相当大的农业减排潜力。  相似文献   

17.
上海市不同土地利用方式下的土壤碳氮特征   总被引:10,自引:1,他引:10  
在野外采样和试验分析的基础上,研究了上海市土地利用方式及其变化对土壤有机碳、总氮含量及土壤有机碳密度的影响.结果表明: 上海不同土地利用方式下的土壤有机碳、总氮含量及有机碳密度均存在显著差异.不同土地利用方式下的土壤有机碳密度大小依次为:水稻田(3.86 kg·m-2)>旱地(3.17 kg·m-2)>林地(3.15 kg·m-2)>撂荒地(2.73 kg·m-2)>城市草坪(2.65 kg·m-2)>园地(2.13 kg·m-2)>滩涂(1.38 kg·m-2).通过相邻样地法,分析了水田转变为旱地、农田撂荒及水田转变为人工林地等3种土地利用变化对土壤有机碳、总氮的影响.由水田转化为旱地将导致土壤有机碳、总氮含量及有机碳密度显著降低;在水热充足、土壤肥沃、农田管理水平较高的长三角平原地区,农田撂荒并不是一种提高土壤有机碳储量的有效方式;水田转变为人工林地4~5年后,林地土壤有机碳、总氮含量及有机碳密度均低于相邻的水稻田,表明水田转变为林地并未引起土壤碳、氮的增加,从短期来看,人工林土壤有机碳的汇集效应因植被生产力水平的限制还处于较低水平.  相似文献   

18.
With a view to introducing white lupin (Lupinus albus L.) for cultivation in Tunisian calcareous soils, compatible indigenous rhizobia for nitrogen-fixing symbiosis were investigated and characterized. Two L. albus varieties, Mekna and Lumen, were used to trap rhizobia in soil samples collected from 56 sites with high active lime contents (0–49%). Nodulation occurred in only 15 soils. The local variety, Mekna, developed significantly more root nodules and had a trapping capacity in more soils than the imported variety Lumen. A phylogenetic analysis based on the partial 16S-23S ribosomal RNA internal transcribed spacer region (ITS) and multi-locus sequence analysis (MLSA) of three chromosomal housekeeping genes, recA, atpD and dnaK, showed that strains were affiliated to Agrobacterium, Rhizobium, and Neorhizobium, with large internal diversity, including separate lineages. Infectivity tests highlighted some nodulation specificity at the plant variety level, since the strains originating from Mekna could only nodulate this variety, while strains trapped in Lumen could nodulate both varieties. When inoculated, almost all strains resulted in a significant increase in plant shoot dry weight on L. albus. Although Agrobacterium sp. strains isolated from L. albus could nodulate and had a plant growth promoting effect, no nodA and nodC genes could be amplified. This is discussed together with the absence of bradyrhizobia and the general infrequency of L. albus–nodulating rhizobia in Tunisian soils. The adapted and efficient rhizobial strains reported here were promising candidates for inoculant development and represent a contribution towards successful cultivation of L. albus in Tunisia, especially the most promising Mekna variety.  相似文献   

19.
土地利用变化对土壤有机碳的影响研究进展   总被引:20,自引:0,他引:20  
陈朝  吕昌河  范兰  武红 《生态学报》2011,31(18):5358-5371
土壤有机碳是陆地碳库的重要组成部分,也是当前全球碳循环和全球变化研究的热点。土地利用/覆被变化及土地管理变化通过影响土壤有机碳的储量和分布,进而影响温室气体排放和陆地生态系统的碳通量。研究土地利用变化影响下的土壤有机碳储量及其动态变化规律,有助于加深理解全球气候变化与土地利用变化之间的关系。在阅读国内外有关文献的基础上,分别从土地利用及其管理方式变化的角度,概括了土地利用变化对土壤有机碳的影响过程与机理;针对当前研究的两大类方法,即实验方法和模型方法,分类详细介绍了它们各自的特点以及存在的一些问题。在此基础上,提出今后土地利用变化对土壤有机碳影响研究的发展趋势。  相似文献   

20.
不同土地利用对土壤有机碳储量及土壤呼吸的影响   总被引:2,自引:0,他引:2  
赵竑绯  赵阳  徐小牛 《生态学杂志》2012,31(7):1738-1744
为了探讨土地利用方式对土壤碳储及土壤呼吸的影响,对安徽沿淮洼地杞柳纯林、杞柳-杨树混交林及杨树纯林3种不同土地利用方式下土壤有机碳储量及土壤呼吸特点进行了比较。结果表明:杞柳纯林、杞柳-杨树混交林、杨树纯林0~30cm土壤有机碳含量分别为6.80、8.50和7.71g·kg-1,土壤有机碳密度分别为2.88、3.26和2.95kg·m-2,土壤有机碳含量和土壤碳密度随土层深度的增加而降低。不同土地利用类型土壤呼吸年平均值分别为1.68μmol·m-2·s-1(杞柳纯林)、2.33μmol·m-2·s-1(杞柳-杨树混交林)、1.61μmol·m-2·s-1(杨树纯林),土壤呼吸日均值最高出现在夏季(6.64μmol·m-2·s-1),最低为冬季(0.13μmol·m-2·s-1)。相关分析表明,土壤呼吸速率与地表气温之间呈显著的指数关系,杞柳纯林、杞柳-杨树混交林、杨树纯林的相关系数R2分别为0.71、0.62、0.54。杞柳-杨树混交林较杞柳纯林有利于土壤有机碳的固定,杞柳纯林土壤有机碳储量偏低,与其粗放经营有关。在今后的栽植管理中,应采取合理的耕作施肥措施,在提高土壤肥力的同时增强土壤的碳固定。  相似文献   

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