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1.
土地利用方式对土壤有机碳和团聚体组分特征的影响   总被引:4,自引:0,他引:4  
以广东省内第四纪红色黏土、玄武岩和花岗岩母质发育的土壤为研究对象,采集不同土地利用方式(水田、旱地、林地、果园/草地)下表层(0~15 cm)和亚表层(15~30 cm)土壤,研究土壤有机碳及其组分(腐殖质碳、易氧化有机碳)、土壤团聚体及其稳定性,分析土壤有机碳及其组分与土壤团聚体及其稳定性之间的相互关系。结果表明:土地利用类型、成土母质等影响土壤有机碳及其组分。3种母质发育的土壤中,各腐殖质组分占有机碳的比例是胡敏酸碳(HAC)<富里酸碳(FAC)<胡敏素碳(HMC),第四纪红色黏土母质发育土壤腐殖酸碳(HAC+FAC)以草地最高、水田最低;玄武岩、花岗岩母质发育土壤腐殖酸碳以果园最高。土壤中易氧化有机碳所占比例均高于惰性态,第四纪红色黏土母质发育土壤易氧化有机碳占有机碳比例以草地最高、旱地最低;玄武岩、花岗岩为果园最高、林地最低。3种母质发育土壤团聚体(湿筛)主要以<0.25 mm微团聚体为主,表层土壤>0.25 mm团聚体所占比例、团聚体平均重量直径(MWD)、团聚体破坏率(PAD)大于亚表层。土壤有机碳各组分均随着有机碳质量分数的增加而增加,>0.25 mm团聚体质量分数和团聚体MWD随着土壤有机碳及其组分质量分数的增加而增大;PAD随着土壤易氧化碳组分质量分数增加而降低,易氧化有机碳组分有利于土壤中形成较大的团聚体,并增加团聚体水稳性。  相似文献   

2.
Afforestation in China’s subtropics plays an important role in sequestering CO2 from the atmosphere and in storage of soil carbon (C). Compared with natural forests, plantation forests have lower soil organic carbon (SOC) content and great potential to store more C. To better evaluate the effects of afforestation on soil C turnover, we investigated SOC and its stable C isotope (δ13C) composition in three planted forests at Qianyanzhou Ecological Experimental Station in southern China. Litter and soil samples were collected and analyzed for total organic C, δ13C and total nitrogen. Similarly to the vertical distribution of SOC in natural forests, SOC concentrations decrease exponentially with depth. The land cover type (grassland) before plantation had a significant influence on the vertical distribution of SOC. The SOC δ13C composition of the upper soil layer of two plantation forests has been mainly affected by the grass biomass 13C composition. Soil profiles with a change in photosynthetic pathway had a more complex 13C isotope composition distribution. During the 20 years after plantation establishment, the soil organic matter sources influenced both the δ13C distribution with depth, and C replacement. The upper soil layer SOC turnover in masson pine (a mean 34% of replacement in the 10 cm after 20 years) was more than twice as fast as that of slash pine (16% of replacement) under subtropical conditions. The results demonstrate that masson pine and slash pine plantations cannot rapidly sequester SOC into long-term storage pools in subtropical China.  相似文献   

3.
中国亚热带地区造林对土壤碳周转的影响   总被引:5,自引:1,他引:4  
Afforestation in China’s subtropics plays an important role in sequestering CO2 from the atmosphere and in storage of soil carbon (C). Compared with natural forests,plantation forests have lower soil organic carbon (SOC) content and great potential to store more C. To better evaluate the effects of afforestation on soil C turnover,we investigated SOC and its stable C isotope (δ13C) composition in three planted forests at Qianyanzhou Ecological Experimental Station in southern China. Litter and soil samples were collected and analyzed for total organic C,δ13C and total nitrogen. Similarly to the vertical distribution of SOC in natural forests,SOC concentrations decrease exponentially with depth. The land cover type (grassland) before plantation had a significant influence on the vertical distribution of SOC. The SOC ?13C composition of the upper soil layer of two plantation forests has been mainly affected by the grass biomass 13C composition. Soil profiles with a change in photosynthetic pathway had a more complex 13C isotope composition distribution. During the 20 years after plantation establishment,the soil organic matter sources influenced both the δ13C distribution with depth,and C replacement. The upper soil layer SOC turnover in masson pine (a mean 34% of replacement in the 10 cm after 20 years) was more than twice as fast as that of slash pine (16% of replacement) under subtropical conditions. The results demonstrate that masson pine and slash pine plantations cannot rapidly sequester SOC into long-term storage pools in subtropical China.  相似文献   

4.
黑河上游山地青海云杉林土壤有机碳特征及其影响因素   总被引:5,自引:2,他引:3  
张鹏  陈年来  张涛 《中国沙漠》2009,29(3):445-450
以黑河上游祁连山中段青海云杉林为研究对象,分析了不同林区云杉林表层(0~20 cm)土壤有机碳的分布特征及其与气候因子、植被特征和土壤特性的关系。结果表明:祁连山中段3个林区青海云杉林表层土壤有机碳含量为寺大隆林区[(9.38±0.72)%]>西水林区[(7.81±0.43)%]>大河口林区[(6.06±0.30)%],土壤有机碳含量平均值为(7.41±0.28)%,变异系数为37.9%。土壤有机碳含量与海拔、土壤含水量、土壤全氮呈显著正相关关系,而与土壤pH值呈显著负相关关系。经主成分分析表明,海拔和土壤pH值是影响土壤有机碳含量的第一主成分,土壤全氮是第二主成分,云杉林密度是第三主成分,累计解释率为72.47%。  相似文献   

5.
Land-use and soil management affects soil organic carbon (SOC) pools, nitrogen, salinity and the depth distribution. The objective of this study was to estimate land-use effects on the distribution of SOC, labile fractions C, nitrogen (N) and salinity in saline-alkaline wetlands in the middle reaches of the Heihe River Basin. Three land-use types were selected: intact saline-alkaline meadow wetland, artificial shrubbery (planting Tamarix) and farmland (cultivated for 18 years) of soils previously under meadow wetland. SOC, easily oxidized carbon, microbial biomass carbon, total N, NO3--N and salinity concentrations were measured. The results show that SOC and labile fraction carbon contents decreased significantly with increasing soil depth in the three land-use wetlands. The labile fraction carbon contents in the topsoil (0-20cm) in cultivated soils were significantly higher than that in intact meadow wetland and artificial shrubbery soil. The aboveground biomass and soil permeability were the primary influencing factors on the contents of SOC and the labile carbon in the intact meadow wetland and artificial shrubbery soil, however, the farming practice was a factor in cultivated soil. Agricultural measures can effectively reduce the salinity contents; however, it caused a significant increase of NO 3--N concentrations which posed a threat to groundwater quality in the study area.  相似文献   

6.
The Horqin Sandy Grassland is one of the most seriously desertified areas in China's agro-pastoral ecotone due to its fragile ecology, combined with improper and unsustainable land management. We inves...  相似文献   

7.
人工固沙区土壤碳分布及其与土壤属性的关系   总被引:3,自引:0,他引:3  
陈永乐  张志山  赵洋 《中国沙漠》2017,37(2):296-304
选择腾格里沙漠东南缘沙坡头地区不同年代建立的人工固沙林(1964、1981、1990年)及临近的流动沙丘,对0~3.0 m剖面上的土壤进行取样和分析,以探讨固沙植被的建立和发展对土壤碳(有机碳和无机碳)分布的影响及其与土壤属性的关系。结果表明:在流动沙丘建立人工固沙植被近50年后,表层(0~0.1 m)土壤有机碳和无机碳含量均明显增加,土壤有机碳含量为1.95 g·kg-1,是流动沙丘的6.67倍,无机碳含量为4.19 g·kg-1,是流动沙丘的1.46倍。将土壤剖面划分为3层后(0~0.4,0.4~1.0、1.0~3.0 m)分析显示,从流动沙丘到1964年固沙区,土壤有机碳密度显著增加(0.18 kg·m-2到0.52 kg·m-2),且浅层(0~0.4 m)的增加快于深层(1.0~3.0 m);同时,浅层有机碳密度在整个剖面中所占比例显著增加(14.3%到30.4%),而深层减少(64.8%到51.6%)。浅层和深层无机碳密度均有增加趋势,但差异不显著。冗余分析显示,土壤细颗粒含量、水分有效性、总氮含量、总磷含量、pH值和电导率与土壤碳密度关系密切,解释了土壤碳密度86.2%的变异。土壤有机碳密度与土壤细颗粒、总氮总磷含量及水分有效性、电导率极显著正相关(P<0.001);土壤无机碳密度与土壤细颗粒、总磷含量及水分有效性、总氮含量显著正相关(P<0.05)。在1.0~3.0 m和0~3.0 m剖面上,土壤有机碳密度与土壤水分含量分别存在显著和极显著的负相关关系(P<0.05和P<0.01)。  相似文献   

8.
Detailed knowledge about the estimates and spatial patterns of soil organic carbon(SOC) and total nitrogen(TN) stocks is fundamental for sustainable land management and climate change mitigation.This study aimed at:(1) mapping the spatial patterns,and(2) quantifying SOC and TN stocks to 30 cm depth in the Eastern Mau Forest Reserve using field,remote sensing,geographical information systems(GIS),and statistical modelling approaches.This is a critical ecosystem offering essential services,but its sustainability is threatened by deforestation and degradation.Results revealed that elevation,silt content,TN concentration,and Landsat 8 Operational Land Imager band 11 explained 72% of the variability in SOC stocks,while the same factors(except silt content) explained 71% of the variability in TN stocks.The results further showed that soil properties,particularly TN and SOC concentrations,were more important than that other environmental factors in controlling the observed patterns of SOC and TN stocks,respectively.Forests stored the highest amounts of SOC and TN(3.78 Tg C and 0.38 Tg N) followed by croplands(2.46 Tg C and 0.25 Tg N) and grasslands(0.57 Tg C and 0.06 Tg N).Overall,the Eastern Mau Forest Reserve stored approximately 6.81 Tg C and 0.69 Tg N.The highest estimates of SOC and TN stocks(hotspots) occurred on the western and northwestern parts where forests dominated,while the lowest estimates(coldspots) occurred on the eastern side where croplands had been established.Therefore,the hotspots need policies that promote conservation,while the coldspots need those that support accumulation of SOC and TN stocks.  相似文献   

9.
长江口盐沼土壤有机质更新特征的滩面趋势   总被引:1,自引:0,他引:1  
Characteristics and tidal flat trends of soil organic matter (SOM) turnover were studied for the Chongmingdongtan Salt Marsh in the Yangtze River estuary, based on analyses of stable carbon isotope composition (δ^13C), grain sizes and contents of particulate organic carbon (POC), total nitrogen (TN) and inorganic carbon (TIC) for three cores excavated from high tidal flat, middle tidal flat and bare flat. Results demonstrate that correlations between soil POC contents and δ^13C values of the salt marsh cores were similar to those between soil organic carbon (SOC) contents and δ^13C values of the upper soil layers of mountainous soil profiles with different altitudes. SOM of salt marsh was generally younger than 100 years, and originated mainly from topsoil erosions in catchments of the Yangtze River. Correlations of TN content with C/N ratio, POC content with TIC content and POC content with δ^13C values for the cores suggest that turnover degrees of SOM from the salt marsh are overall low, and trends of SOM turnover are clear from the bare flat to the high tidal flat. Bare flat samples show characteristics of original sediments, with minor SOM turnover. Turnover processes of SOM have occurred and are discernable in the high and middle tidal flats, and the mixing degrees of SOM compartments with different turnover rates increase with evolution of the muddy tidal flat. The exclusive strata structure of alternate muddy laminae and silty laminae originated from dynamic depositional processes on muddy tidal flat was a great obstacle to vertical migration of dissolved materials, and SOM turnover was then constrained. The muddy tidal flat processes exerted direct influences on sequestration and turnover of SOM in the salt marsh, and had great constraints on the spatial and temporal characteristics of SOM turnover of the Chongmingdongtan Salt Marsh in the Yangtze River estuary.  相似文献   

10.
开垦对内蒙古温带草地土壤不同有机碳组分的影响(英文)   总被引:3,自引:2,他引:1  
Cultivation is one of the most important human activities affecting the grassland ecosystem besides grazing, but its impacts on soil total organic carbon (C), especially on the liable organic C fractions have not been fully understood yet. In this paper, the role of cropping in soil organic C pool of different fractions was investigated in a meadow steppe region in Inner Mongolia of China, and the relationships between different C fractions were also discussed. The results indicated that the concentrations of different C fractions at steppe and cultivated land all decreased progressively with soil depth. After the conversion from steppe to spring wheat field for 36 years, total organic carbon (TOC) concentration at the 0 to 100 cm soil depth has decreased by 12.3% to 28.2%, and TOC of the surface soil horizon, especially those of 0-30 cm decreased more significantly (p<0.01). The dissolved organic carbon (DOC) and microbial biomass carbon (MBC) at the depth of 0-40 cm were found to have decreased by 66.7% to 77.1% and 36.5% to 42.4%, respectively. In the S.baicalensis steppe, the ratios of soil DOC to TOC varied between 0.52% and 0.60%, and those in the spring wheat field were only in the range of 0.18%-0.20%. The microbial quotients (qMBs) in the spring wheat field, varying from 1.11% to 1.40%, were also lower than those in the S. baicalensis steppe, which were in the range of 1.50%-1.63%. The change of DOC was much more sensitive to cultivation disturbance. Soil TOC, DOC, and MBC were significantly positive correlated with each other in the S. baicalensis steppe, but in the spring wheat field, the correlativity between DOC and TOC and that between DOC and MBC did not reach the significance level of 0.05.  相似文献   

11.
以海南岛东部地区的4种土地利用方式(水田、抛荒地、果园、橡胶林地)的土壤为研究对象,通过对其SOC(土壤有机碳)和ROC(土壤易氧化有机碳)质量分数的测定,分析不同土地利用方式下SOC以及ROC的分布特征。结果表明:研究区的土地利用方式对SOC与ROC具有显著影响,土地利用方式通过影响植被凋落物、根系以及耕作方式、施肥收割等管理措施影响SOC及ROC的分布特征。就整个土壤剖面(0~30 cm)而言,不同土地利用方式下SOC质量分数的分布特征表现为水田>抛荒地>果园>橡胶林地;各土地利用方式下SOC在表层土壤中质量分数最高,并随着土壤层的加深逐渐递减。水田、果园和橡胶林地土壤的ROC质量分数随着土壤深度的加深而逐渐降低,抛荒地呈现出先减少后增加的趋势。不同土地利用方式下土壤ROC质量分数表现为抛荒地>水田>果园>橡胶林地。ROC质量分数的高低顺序与SOC质量分数基本相同。土壤的SOC质量分数是影响ROC质量分数变化的重要因素,相关性分析结果表明:水田、抛荒地和橡胶林地的SOC与ROC质量分数呈极显著正相关,而果园的SOC与ROC质量分数呈显著正相关。4种土地利用方式中水田土壤ROC的分配比例较低,说明水田的SOC稳定性相对于其他土地利用方式较高,有利于土壤碳的储存。  相似文献   

12.
气候变化及人类活动对中国土壤有机碳储量的影响   总被引:63,自引:1,他引:63  
周涛  史培军  王绍强 《地理学报》2003,58(5):727-734
对中国1998年第二次土壤普查中的2000多个土壤剖面中碳储量与年平均温度 (T)、年降水量 (P) 的相关性研究表明:它们之间的相关性在不同的温度带下具有很大的差异,在T ≤10oC的地区,土壤有机碳储量与温度的负相关性最强;在10oC< T ≤ 20oC的地区,受与降水正相关的影响,土壤有机碳储量与年平均温度表现出一种正相关性;而在T > 20oC的地区,土壤有机碳储量与温度和降水的相关性都很差。由于温度和降水在中国存在很强的正相关性,因此在相关分析中宜采用偏相关分析方法。受人类耕种的影响,耕地土壤有机碳储量与温度、降水相关性远低于非耕地土壤。对具有相同土壤属性和气候条件的同一地区的耕地土壤与非耕地土壤样本进行的配对检验表明,耕地土壤与非耕地土壤有机碳储量之间存在显著差异,土地利用的改变在总体上导致了土壤碳的释放。  相似文献   

13.
Detailed knowledge about the estimates and spatial patterns of soil organic carbon (SOC) and total nitrogen (TN) stocks is fundamental for sustainable land management and climate change mitigation. This study aimed at: (1) mapping the spatial patterns, and (2) quantifying SOC and TN stocks to 30 cm depth in the Eastern Mau Forest Reserve using field, remote sensing, geographical information systems (GIS), and statistical modelling approaches. This is a critical ecosystem offering essential services, but its sustainability is threatened by deforestation and degradation. Results revealed that elevation, silt content, TN concentration, and Landsat 8 Operational Land Imager band 11 explained 72% of the variability in SOC stocks, while the same factors (except silt content) explained 71% of the variability in TN stocks. The results further showed that soil properties, particularly TN and SOC concentrations, were more important than that other environmental factors in controlling the observed patterns of SOC and TN stocks, respectively. Forests stored the highest amounts of SOC and TN (3.78 Tg C and 0.38 Tg N) followed by croplands (2.46 Tg C and 0.25 Tg N) and grasslands (0.57 Tg C and 0.06 Tg N). Overall, the Eastern Mau Forest Reserve stored approximately 6.81 Tg C and 0.69 Tg N. The highest estimates of SOC and TN stocks (hotspots) occurred on the western and northwestern parts where forests dominated, while the lowest estimates (coldspots) occurred on the eastern side where croplands had been established. Therefore, the hotspots need policies that promote conservation, while the coldspots need those that support accumulation of SOC and TN stocks.  相似文献   

14.
湿地土壤有机碳、氮和磷含量变化显著影响着湿地生态系统的生产力。为阐明吉林东部山地沼泽湿地土壤养分的空间分布特征,以吉林省敦化市4种典型山地沼泽湿地:落叶松-苔草湿地(T1)、莎草湿地(T2)、小叶章-甜茅湿地(T3)和沼泽化草甸湿地(T4)为研究对象,研究了土壤有机碳、全氮和全磷含量及其化学计量比的空间分布特征及影响因素。结果表明:4种山地沼泽湿地类型土壤有机碳、全氮、全磷含量均值分别为343.11 mg/g、28.03 mg/g和4.00 mg/g,变异系数为有机碳(9.26%)<全氮(16.52%)<全磷(48.64%)。在0~40 cm土层内, T1、T2和T3土壤有机碳、全氮、全磷含量随土壤深度的增加呈先增加后减少的趋势,在10~20 cm土层出现累积峰; T4土壤有机碳、全氮、全磷含量随土壤深度的增加而减少。土壤有机碳、全氮含量的变化趋势为T1相似文献   

15.
1980s-2010s中国陆地生态系统土壤碳储量的变化   总被引:6,自引:2,他引:4  
徐丽  于贵瑞  何念鹏 《地理学报》2018,73(11):2150-2167
土壤作为陆地生态系统有机碳库的主体,在全球碳循环中起着重要作用。然而,当前区域土壤有机碳储量的变化情况及其碳源/汇功能仍然不清楚。利用中国1980s (1979-1985年)第二次土壤普查数据,同时收集整理2010s(2004-2014年)已发表的有关中国土壤有机碳储量(0~20 cm和0~100 cm)的文献数据,综合评估了1980s-2010s中国土壤有机碳储量的变化情况,并分析森林、草地、农田和湿地等生态系统土壤碳源/汇功能;同时结合现有的中国植被碳储量变化研究,进一步探讨了1980s-2010s中国陆地生态系统的碳源/汇效应。研究发现:① 1980s-2010s中国土壤(0~100 cm)有机碳储量净增长3.04±1.65 Pg C,增长速率为0.101±0.055 Pg C yr-1,其中表层土壤(0~20 cm)的碳汇效应明显;② 森林土壤是固碳主体,净增长2.52±0.77 Pg C,而草地和农田土壤增长有限,分别为0.40±0.78和0.07±0.31 Pg C;③ 湿地有机碳储量净减少0.76±0.29 Pg C;④ 中国陆地生态系统的碳汇效应较强,总碳汇量相当于同期(1980-2009年)化石燃料和水泥生产排放CO2总量的14.85%~27.79%。随着中国森林和草地生态系统植被和土壤的进一步保护、恢复和重建,中国陆地生态系统具有较大的碳汇潜力,在未来全球碳平衡中将发挥更大的作用。  相似文献   

16.
纳帕海湿地不同退化状态下土壤有机碳素的分异特征   总被引:1,自引:0,他引:1  
纳帕海湿地区4类土壤退化程度由高到低依次为:弃耕地—中生草甸土(AFMMS)、中生草甸土(MMS)、湿草甸土(WMS)和沼泽土(MS),对4类土壤0~10cm(上层)、10~20cm(中层)、20~30cm(下层)进行采样,分析土壤有机碳(SOC)、活性有机碳(LOC)和溶解有机碳(DOC)含量。结果表明:4类土壤间,除AFMMS中下层LOC含量略高于MMS对应层LOC含量外,其它各层SOC、LOC、DOC含量都为AFMMS相似文献   

17.
The effects of salinity on soil organic carbon(SOC) and its labile fractions including microbial biomass carbon(MBC) and easily oxidation organic carbon(EOC),basal soil respiration,and soil nematode community in the Fluvents,an oasis in an arid region of northwestern China were investigated.Five sites were selected which had a salinity gradient with different groundwater table from 1.0 m to 4.0 m.Soils were sampled at the 0–20 cm plough layer from 25 irrigated fields of five sites and electrical conductivity was measured in the saturation paste extracts(ECe).Soils were categorized into five salinity levels:(1) non-saline,(2) very slightly saline,(3) slightly saline,(4) moderately saline,and(5) strongly saline according to the values of ECe.The results show that SOC and total nitrogen concentration,cation exchange capacity(CEC),and the concentrations of labile organic fractions(MBC,EOC),and basal soil respiration decreased significantly with increasing ECe.The relationships between ECe and MBC,EOC and basal soil respiration were best described by power functions.Slight and moderate salinity had no significant impact on soil nematode abundance,but excessive salt accumulation led to a marked decline in soil nematode community diversity and abundance.Soil salinity changed soil nematode trophic groups and bacterivores were the most abundant trophic groups in salt-affected soils.Further study is necessary to identify the response of soil microbial processes and nematode community dynamics to soil salinity.  相似文献   

18.
Soil organic carbon (SOC) stocks in terrestrial ecosystems vary considerably with land use types. Grassland, forest, and cropland coexist in the agro-pastoral ecotone of Inner Mongolia, China. Using SOC data compiled from literature and field investigations, this study compared SOC stocks and their vertical distributions among three types of ecosystems. The results indicate that grassland had the largest SOC stock, which was 1.5- and 1.8-folds more than stocks in forest and cropland, respectively. Relative to the stock in 0–100 cm depth, grassland held more than 40% of its SOC stock in the upper 20 cm soil layer; forest and cropland both held over 30% of their respective SOC stocks in the upper 20 cm soil layer. SOC stocks in grazed grasslands were remarkably promoted after ≥20 years of grazing exclusion. Conservational cultivation substantially increased the SOC stocks in cropland, especially in the 0–40 cm depth. Stand ages, tree species, and forest types did not have obvious impacts on forest SOC stocks in the study area likely due to the younger stand ages. Our study implies that soil carbon loss should be taken into account during the implementation of ecological projects, such as reclamation and afforestation, in the arid and semi-arid regions of China.  相似文献   

19.
Leaf carbon content (LCC) is widely used as an important parameter in estimating ecosystem carbon (C) storage, as well as for investigating the adaptation strategies of vegetation to their environment at a large scale. In this study, we used a dataset collected from forests (5119 plots) and shrublands (2564 plots) in China, 2011–2015. The plots were sampled following a consistent protocol, and we used the data to explore the spatial patterns of LCC at three scales: plot scale, eco-region scale (n = 24), and eco-region scale (n = 8). The average LCC of forests and shrublands combined was 45.3%, with the LCC of forests (45.5%) being slightly higher than that of shrublands (44.9%). Forest LCC ranged from 40.2% to 51.2% throughout the 24 eco-regions, while that of shrublands ranged from 35% to 50.1%. Forest LCC decreased with increasing latitude and longitude, whereas shrubland LCC decreased with increasing latitude, but increased with increasing longitude. The LCC increased, to some extent, with increasing temperature and precipitation. These results demonstrate the spatial patterns of LCC in the forests and shrublands at different scales based on field-measured data, providing a reference (or standard) for estimating carbon storage in vegetation at a regional scale.  相似文献   

20.
以建成的农田土壤有机碳动态模拟模型为基础,增加土壤pH值影响函数,利用3组土壤pH值迥异的长期定位试验数据对模型进行验证。这些定位试验在地理位置、气象条件、农作方式和土壤性质等方面都具有较大差异。结果表明:修正后的模型可以较好地模拟不同pH值条件下土壤有机碳的变化趋势,模拟值和观测值间的线性相关系数(r2)为0.96(n=137);模型输入参数的敏感程度为温度>外源有机碳>土壤pH值>难分解组分初值>降水>土壤粘粒。  相似文献   

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