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1.
本研究的1/1标是利用CENTURY模型分析气候变化、大气CO2浓度倍增、气候变化与大气CO2浓度倍增共同作用对藏北高原高寒草原土壤有机碳的影响。结果表明:未来50年不同气候变化情景下土壤表层(0-20cm)有机碳呈降低趋势,变化率为49.77%-52.36%。P1T0情景(降水增加.温度不变)、POT1情景(降水不变,温度增加)和P1T1情景(降水增加,温度增加)下的模拟结果相近。其中P1T1情景下高寒草原土壤有机碳损失的最多(模拟结束时的土壤有机碳为844.40gCm^-2),POT1情景下土壤有机碳损失49.77%。相对CO2不变情景而言,CO2倍增情景下土壤有机碳增加12.87%。CO2增加对土壤有机碳的影响大于气候变化单独作用对土壤有机碳的影响。气候变化与大气CO2浓度倍增共同作用导致土壤有机碳降低。未来50年P1T1+2×CO2情景下土壤有机碳降低52.39%,POT1+2×CO2情景下土壤有机碳降低49.81%,P1T0+2×CO2情景下土壤有机碳降低52.317)%。因此,高寒草原土壤有机碳含量随降水、温度和大气CO2浓度的变化而变化。  相似文献   

2.
为了研究旁路/离线人工湿地系统在净化水体时的温室气体排放状况及其与环境因子的关系,于2010年7~11月,采用静态箱—气相色谱法,对罗马湖旁路/离线人工湿地系统的3个不同景观结构单元(温榆河龙道河交叉处河岸带S1采样点、龙道河河道S2采样点和罗马东湖湖岸带S3采样点)的CO2、CH4和N2O排放通量进行了同步采样和对比研究,探讨了影响温室气体排放的主要环境因子。研究结果表明,该湿地系统CO2、CH4和N2O的排放通量都有明显的时空变化特征。从空间上看,S1采样点和S2采样点的CO2月平均排放通量较高,分别为73.5 mg/(m2·h)和75.1 mg/(m2·h),与其表层(0~5 cm)沉积物中较高的有机质含量(7.04~29.4 g/kg)有关。S2采样点的CH4月平均排放通量[4.78 mg/(m2·h)]高于S1采样点[1.59 mg/(m2·h)]和S3采样点[1.70 mg/(m2·h)],其与该采样点水体中的氧化还原电位显著负相关(r=-0.779,p0.01)。3个不同景观结构单元的N2O排放通量差异不大[0.022~0.025 mg/(m2·h)];相关性分析结果表明,N2O排放通量与表层沉积物的NO2-—N含量显著正相关(r=0.689,p0.05)。从时间上看,水温是影响旁路/离线人工湿地系统运行时CH4和N2O排放通量的重要环境因子。  相似文献   

3.
以滇西北碧塔海泥炭沼泽土壤为研究对象,通过野外测量和室内分析相结合的方法,研究牦牛(Bos mutus)践踏和牦牛粪影响下的土壤总有机碳含量、全氮含量和N_2O排放通量。结果表明,牦牛践踏显著抑制了土壤N_2O的排放;牦牛粪的输入促进了土壤N_2O的排放,且牦牛粪分解前期是N_2O排放的高峰期。在0~30 cm深度土层内,牦牛放牧使土壤总有机碳含量增加,牦牛践踏和牦牛粪都促进了土壤总有机碳含量的增加,增加比例分别为39.27%和12.19%;随着土壤深度的增加,粪斑样方土壤总有机碳含量显著减小,践踏样方土壤总有机碳含量略有增加。牦牛放牧使土壤全氮含量增加,牦牛践踏和牦牛粪都促进了土壤全氮含量的增加,增加比例分别为50.56%和12.76%;随着土壤深度的增加,践踏样方和粪斑样方土壤全氮含量都在减小。  相似文献   

4.
福州平原两种水稻品种稻田的CH4和N2O排放通量动态   总被引:3,自引:0,他引:3  
采用静态箱一气相色谱法,以常规稻为参照对象,研究福州平原地区目前正在广泛推广的超级稻稻田的甲烷(CH4)和氧化亚氮(N2O)排放通量特征.结果表明,稻田CH4排放主要集中在水稻分蘖期,其CH4排放量分别占常规稻和超级稻稻田总排放量的76.7%和64.1%;常规稻稻田CH4排放通量范围为0.09~16.90 mg/(m2·h),超级稻稻田CH4排放通量范围为0.11~14.30 mg/(m2·h);在整个水稻种植期,超级稻稻田平均CH4排放通量比常规稻稻田约减少3.6%;常规稻稻田的平均N2O通量为7.7μg/(m2·h),超级稻稻田的平均N2O通量为18.0μg/(m2·h);水稻成熟期常规稻和超级稻稻田的N2O通量占总通量的50%以上,分别达到了55.7%和66.9%.从综合温室效应看,常规稻稻田的综合增温潜势为2 264.5 kg/hm2 CO2,超级稻稻田的综合增温潜势为1 977.04 kg/hm2 CO2,超级稻稻田的综合增温潜势比常规稻稻田低12.7%.在相同管理条件下,种植超级稻可以降低稻田的综合温室效应,并提高水稻产量.  相似文献   

5.
2003~2005年,在每年的植物生长季,采用静止箱/气相色谱法,观测和计算了若尔盖高原泥炭沼泽温室气体CO2、CH4和N2O的排放通量.若尔盖高原泥炭沼泽平均CO2排放通量为203.22 mg/(m2·h),分别是沼泽化草甸平均CO2排放通量[348.31 mg/(m2·h)]的58%和放牧草场平均CO2排放通量[323.03 mg/(m2·h)]的62%;若尔盖高原泥炭沼泽平均CH4排放通量为2.43 mg/(m2·h),分别是沼泽化草甸平均CH4排放通量[0.29mg/(m2·h)]的8.4倍和放牧草场平均CH4排放通量[0.07 mg/(m2·h)]的34倍;若尔盖高原泥炭沼泽平均N2O排放通量为0.020 mg/(m2·h),低于沼泽化草甸平均N2O排放通量[0.037 mg/(m2·h)]和放牧草场平均N2O排放通量[0.056 mg/(m2·h)].  相似文献   

6.
皖江自然湿地土壤碳密度及其开垦为农田后的变化   总被引:7,自引:1,他引:6  
于2005年分别采集了安徽沿江4个淡水湖泊的自然湿地及其周边围垦农田的代表性土壤剖面样品,测定了总有机碳含量,讨论了天然淡水湿地有机碳密度与深度分布特征及其开垦为农田后的变化。结果显示,湿地表层(0~30cm)和全剖面(0~100cm)中的碳密度分别为42.5~57.4t/hm^2和81.5~91.6t/hm^2;而农田则分别为22.4~48.4t/hm^2和41.4~76.5t/hm^2。湿地开垦为农田后,土壤表层和全剖面的土壤有机碳含量明显降低,且有机碳含量的变异性增大。表明湿地开垦为农田后,其碳库失去稳定性。但是,开垦的旱地土壤的有机碳含量和碳密度显著低于开垦的稻田,故湿地开垦为旱地更不利于湿地碳库保护。因而,将湿地垦殖为水田是相对较有利于湿地碳库保护的人为土地利用方式。湿地开垦的碳库损失可能是土壤的大气CO2源效应的主要途径。  相似文献   

7.
祁连山中段青海云杉林土壤养分特征   总被引:3,自引:0,他引:3  
为揭示祁连山亚高寒山地森林植被建群种之一的青海云杉林地土壤养分的化学计量特征,采用野外取样与室内分析相结合的方法,对青海云杉林1 hm2样地进行土壤剖面取样,论述其有机碳、全氮、全磷和全钾含量及其化学计量特征。结果表明:1)0~60 cm土深有机碳、全氮、全磷和全钾含量的变化范围为42.81~88.15 g/kg、3.04~5.45 g/kg、0.54~0.73 g/kg和20.13~30.47 g/kg,均值大小分别为63.70 g/kg、3.80 g/kg、0.59 g/kg和23.99 g/kg,有机碳和全氮含量变异性较大,而全磷和全钾含量变异性较小。随土层深度增加,有机碳和全氮含量在30 cm土层以下含量趋于稳定,而全磷和全钾含量较稳定。2)0~60 cm的C/N、C/P、C/K、N/P、N/K和P/K分别为11.97~23.33、69.23~160.76、1.77~3.91、5.17~8.28、0.12~0.25和0.02~0.04,均值大小分别为17.03、109.63、2.67、6.46、0.16和0.02,C/N、C/P、C/K、N/P、N/K比都较稳定,P/K比很稳定。随土层深度增加,土壤C/P、C/K、N/P和N/K较C/N和P/K比变异明显,C/P与C/K比和N/P与N/K比主要受碳、氮元素含量的影响。3)全量养分有机碳、全氮和全磷彼此之间呈极显著正相关(P0.01),与全钾呈显著负相关(P0.05),除全磷与C/N比呈极显著负相关外(P0.01),有机碳、全氮、全磷与化学计量比均呈极显著正相关(P0.01),全钾与化学计量比无显著相关。  相似文献   

8.
大气CO2浓度升高对土壤中不同粒级碳的影响   总被引:4,自引:0,他引:4  
不同粒级土壤中的碳有着不同的周转规律,在高CO2浓度条件下,它们含量的变化将在一定程度上反映土壤碳是累积还是减少,对明确土壤碳的变化趋势有重要意义.采用田间培养试验初步模拟研究在高CO2浓度条件下土壤不同粒级碳的分布.结果表明,加入秸秆培养1年,由于CO2浓度升高的原因导致在低氮(LN)、常规氮(NN)和高氮(HN)水平下土壤中碳分别增加0.01、1.10、1.22g/kg,表现为粒级〈53μm土壤颗粒中碳分别增加1.53、2.19、2.70g/kg.粒级〈53μmm土壤颗粒碳量的增加,主要是由于其重量分配百分数显著增加36.2%,碳浓度增加5.4%;粒级〉250μm和250~53μm土壤颗粒部分虽然其碳浓度分别增加20.8%和17.3%(P〈0.05),怛由于重量分配百分数分别显著降低22.8%和36.1%,结果碳量降低.试验表明高CO2浓度导致不同粒级土壤的分配及碳浓度的变化;高氮施肥水平下有增加土壤碳量特别是小粒级土壤碳量的趋势.  相似文献   

9.
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   

10.
科尔沁沙地生态系统典型土壤养分空间分布特征   总被引:15,自引:7,他引:8  
赵学勇  贺丽萍 《中国沙漠》2002,22(4):328-332
通过对位于科尔沁沙地中南部的奈曼旗中部沙地灌溉农田、旱作农田和流动沙丘土壤有机C和全N含量空间分布特征的分析发现:由灌溉农田、旱作农田到流动沙丘,土壤10cm深度内有机C和全N的含量与相对高度的变化密切相关。随着相对高度的增加,上述土壤的有机C和全N的含量逐渐减少,而且全N含量比有机C含量与相对高度的相关性更为显著。从旱作农田到流动沙丘有机C和全N的含量随着相对高度的减小而减少。如果不考虑灌溉农田和流动沙地土壤,旱作农田土壤有机C和全N含量与相对高度的相关性显著程度更高。科尔沁沙地中部沙质灌溉农田土壤全N和有机C含量的垂直分布呈锯齿状,表现为明显的多'峰谷'性,这种变化与土壤的粘土层/有机质层和沙层交错分布的特点有关。尽管研究区的土壤发生了明显的空间变化,但是土壤的全N含量和有机C含量之间依然存在着显著的相关性  相似文献   

11.
无灌溉人工固沙区土壤有机碳及氮含量变异的初步结论   总被引:7,自引:5,他引:2  
对降水量小于200mm的沙坡头无灌溉条件下人工植被固沙区土壤有机碳和全氮含量变异进行研究。结果表明, 流沙在固定过程中, 人工植被固沙体系的营建改善了成土环境, 促进了生物地球化学循环, 使土壤碳、氮的含量和分布规律发生了变化: ①固沙区土壤有机碳和全氮含量及C/N均高于流沙区, 随土层深度增加土壤有机碳和全氮含量呈逐渐降低趋势, 而C/N呈逐渐升高趋势; ②不同年限固沙区间土壤有机碳、全氮含量及C/N变异小于土层垂直方向的变异; ③不同年限固沙区土层垂直方向土壤有机碳和全氮含量及C/N变异较大, 变异主要存在于结皮层及其下土层(0~5cm); ④流沙区土壤碳、氮含量及C/N低于固沙区, 而且在土层垂直方向上基本无变异。  相似文献   

12.
青藏高原高寒草原生态系统CO2,CH4和N2O排放通量研究   总被引:4,自引:1,他引:3  
Using static chamber technique, fluxes of CO2, CHh and N2O were measured in the alpinegrassland area from July 2000 to July 2001, determinations of mean fluxes showed that CO2 and N2Owere generally released from the soil, while the alpine grassland accounted for a weak CH4 sink.Fluxes of CO2, CH4 and N2O ranged widely. The highest CO2 emission occurred in August, whereasalmost 90% of the whole year emission occurred in the growing season. But the variations of CH4and N2O fluxes did not show any clear patterns over the one-year-experiment. During a dailyvariation, the maximum CO2 emission occurred at 16:00, and then decreased to the minimumemission in the early morning. Daily pattern analyses indicated that the variation in CO2 fluxes waspositively related to air temperatures (R2=0.73) and soil temperatures at a depth of 5 cm (R2=4).86),whereas daily variations in CH4 and N2O fluxes were poorly explained by soil temperatures andclimatic variables. CO2 emissions in this area were much lower than other grasslands in plain areas.  相似文献   

13.
Using static chamber technique,fluxes of CO2,CH4 and N2O were measured in the alpine grassland area from July 2000 to July 2001,determinations of mean fluxes showed that CO2 and N2O were generally released from the soil,while the alpine grassland accounted for a weak CH4 sink.Fluxes of CO2,CH4 and N2O ranged widely.The highest CO2 emission occurred in August,whereas almost 90?of the whole year emission occurred in the growing season.But the variations of CH4 and N2O fluxes did not show any clear patterns over the one-year-experiment.During a daily variation,the maximum CO2 emission occurred at 16:00,and then decreased to the minimum emission in the early morning.Daily pattern analyses indicated that the variation in CO2 fluxes was positively related to air temperatures(R^2=0.73)and soil temperatures at a depth of 5 cm(R^2=0.86),whereas daily variations in CH4 and N2O fluxes were poorly explained by soil temperatures and climatic variables.CO2 emissions in this area were much lower than other grasslands in plain areas.  相似文献   

14.
Using static chamber technique, fluxes of CO2, CH4 and N2O were measured in the alpine grassland area from July 2000 to July 2001, determinations of mean fluxes showed that co2 and N2O were generally released from the soil, while the alpine grassland accounted for a weak CH4 sink. Fluxes of CO2, CH4 and N2O ranged widely. The highest co2 emission occurred in August, whereas almost 90% of the whole year emission occurred in the growing season. But the variations of CH4 and N2O fluxes did not show any clear patterns over the one-year-experiment. During a daily variation, the maximum co2 emission occurred at 16:00, and then decreased to the minimum emission in the early morning. Daily pattern analyses indicated that the variation in co2 fluxes was positively related to air temperatures (R2=0.73) and soil temperatures at a depth of 5 cm (R2=0.86), whereas daily variations in CH4 and N2O fluxes were poorly explained by soil temperatures and climatic variables. co2 emissions in this area were much lower than other grasslands in plain areas.  相似文献   

15.
为阐明祁连山青海云杉(Picea crassifolia)林分布带对其土壤碳、氮含量的影响,以分布在祁连山东段和西段的典型青海云杉林为研究对象,通过野外取样和室内分析,论述了青海云杉林浅层土壤碳、氮含量特征及其相互关系。结果表明:(1)祁连山东、西段土壤剖面有机碳含量均随土壤深度的增加而减小,但不同土层差异显著性不同,0~40cm含量分别为73.57±17.17g·kg-1和45.85±11.93g·kg-1;东、西段土壤剖面有机碳储量没有明显的变化规律,0~40cm有机碳储量分别为205.51±39.44t·hm-2和134.93±25.80t·hm-2。(2)祁连山东、西段土壤全氮含量随土层深度变化和不同土层差异显著性变化规律同土壤有机碳含量,0~40cm全氮含量分别为4.56±0.88g·kg-1和2.81±0.66g·kg-1;东、西段土壤全氮储量亦同土壤有机碳储量变化规律,0~40cm储量分别为12.77±2.08t·hm-2和8.38±1.56t·hm-2。(3)祁连山东、西段土壤剖面不同土层C/N比差异显著性变化规律相同,其C/N值分别为15.92±1.24和16.10±2.07;C/N比值大小主要取决于有机碳含量;线性分析表明,土壤有机碳与全氮含之间呈极显著的正相关关系,可用乘幂曲线模型Y=aXb较好地描述(p0.01)。上述研究结果可为祁连山水源涵养林建群种青海云杉林的经营和管理提供理论依据和数据支撑。  相似文献   

16.
半干旱生态系统土壤呼吸(Rs)对氮添加的响应机制仍有待探索。本研究在中国半干旱草原设置不同氮添加水平(0、2、4、8、16、32 gN m-2 yr-1),测定土壤呼吸速率、土壤温湿度、微生物磷脂脂肪酸、土壤理化性质与地上生物量等指标,探讨氮添加对土壤呼吸及其温度敏感性(Q10)的影响。结果表明:氮添加显著增加了土壤可溶性有机碳(DOC)和无机氮(IN)的含量,降低了土壤pH值,对地上生物量(ABM)无显著影响。氮添加降低了磷脂脂肪酸(PLFAs)的总量,降低了真菌细菌比(F:B),提高了革兰氏阳性阴性菌比(G+:G–)。氮添加显著降低了土壤呼吸,N2、N4、N8、N16和N32处理下的土壤呼吸分别比对照N0变化了–2.58%、14.86%、22.62%、23.97%和19.87%,结构方程模型表明,氮添加通过降低PLFAs总量和改变微生物组成降低土壤呼吸。氮添加对温度敏感性(Q10)、土壤总有机碳(TOC)和总氮(TN)的影响均不显著,表明氮添加减轻了土壤碳的损失,且不会改变全球变暖背景下土壤有机碳矿化的潜力。  相似文献   

17.
Soil is the most important carbon pool of the mulberry plantation ecosystem, so understanding the characteristics of the soil carbon pool in mulberry plantations provides an important basis for the research of carbon sinks in economic forest ecosystems and farmland ecosystems. In order to explore the spatial differentiation pattern of the relationship between carbon and nitrogen in mulberry plantation soil, this study analyzed the organic carbon content and total nitrogen content of the surface soil layer (0-20 cm) and the subsurface soil layer (20-40 cm) of 475 mulberry plantations in five major regions of China, Southwest China (SWC), Central South China (CSC), East China (EC), North China (NC), and Northwest China (NWC). The research showed seven key aspects of this system. (1) The soil organic carbon of mulberry plantations was significantly different at the two soil depths. The average content of organic carbon in the surface layer of mulberry plantation soil was 10.71±7.01g kg?1, which was 37.13% higher than that of the subsurface layer. (2) The soil organic carbon of mulberry plantations had significant differences in spatial differentiation, which was manifested as SWC>CSC>EC>NC>NWC. (3) The total nitrogen content in mulberry plantation soil had significant responses to the region, the soil layer depth, and the interaction between the region and soil layer depth. Among the regions, NWC had no significant difference between the surface layer and subsurface layer of the soil. EC had the maximum difference in total nitrogen content, with the total nitrogen content in the surface soil layer being 56.68% higher than that of the subsurface soil layer. The total nitrogen contents of the surface soil layers in the SWC and NC were 34.27% and 20.79% higher than those of the respective subsurface soil layers. (4) The mulberry plantation soil C/N ratios had a significant response to regional differences, as NWC>SWC> EC>CSC>NC, but this ratio had no significant response to soil depth. (5) Soil pH had significant spatial differentiation in relation to soil organic carbon and total nitrogen content in mulberry plantations. NWC had no significant correlation between pH and organic carbon or total nitrogen content, while CSC had a significant positive correlation between pH and both soil organic carbon and total nitrogen content. Other regions showed significant negative correlations between pH and both organic carbon and total nitrogen content. (6) There was a significant negative correlation between the C/N ratio of the surface soil layer and pH in mulberry plantations, which was mainly contributed by SWC, while the other regions’ surface soil layers had no significant correlations between C/N ratio and pH. (7) There was no significant correlation between the C/N ratio and pH in the subsurface soil layer in mulberry plantations. These results reveal that in either the research on mulberry plantation carbon pools or the innovation of green and low-carbon planting technology in mulberry plantations, the spatial differentiation characteristics of soil must be considered. Furthermore, the spatial differentiation of soil organic carbon can be used as the basic foundation for the planning and design of mulberry afforestation or ecological restoration projects.  相似文献   

18.
人工经济林在中国南方种植面积大,并有不断增加的趋势.人工经济林生态系统受人为周期性经营活动影响比较大,是重要的流动性碳库.因此,选择福建省建瓯市万木林自然保护区内本地条件基本一致的毛竹(Phyllostachys heterocycla)、柑橘(Citrus reticulata Blanco)和锥栗(Castanea henryi)作为研究对象,探讨其土壤有机碳含量及其垂直分布特征,结果表明:3种林地土壤剖面有机碳含量的变化范围分别为毛竹林5.91~19.18 g.kg-1、柑橘5.70~13.31g.kg-1、锥栗3.84~10.78 g.kg-1,3种林地土壤有机碳含量随着深度的增加呈现递减趋势;3种林地0~20 cm、20~40 cm层土壤有机碳含量与40~60 cm、60~80 cm、80~100 cm各层均存在显著性差异(P<0.05);3种林地间土壤有机碳储量均存在显著性差异(P<0.05);使用对数方程对3种林地土壤有机碳含量随土壤深度的变化进行拟合均达到显著水平(P<0.05);土壤有机碳含量与土壤全N、C/N比之间存在一定的相关性,特别是3种林地土壤有机碳含量均与土壤全N含量的相关性最好(...  相似文献   

19.
马占相思人工林土壤有机碳的异质性   总被引:1,自引:0,他引:1  
以鹤山站马占相思林土壤为研究对象,对相关土壤、生物指标进行了分析。对马占相思人工林土壤的地统计学研究结果表明:马占相思人工林土壤有机碳和全氮在空间分布上存在着较为显著的空间自相关性,即自相关部分的空间异质性占主导地位,分别占总空间异质性程度的81.3%和84.2%。土壤有机碳分布的空间特征与土壤全氮分布空间特征具有较一致的空间异质性;林木根生物量的分布特征未表现出与土壤有机碳分布的一致空间异质性,这说明根生物量的分布特征在表层土0-15 cm有机碳的空间分布差异上不是主导因子。林地碳、氮不但存在传统统计学上的线性相关,它们也具有景观层次上的空间自相关,指数模型的拟合表明,在7.62 m小尺度范围内,土壤有机碳的空间自相关性存在,在6.60 m尺度范围内,全氮的空间自相关性存在。  相似文献   

20.
伊犁山地不同海拔土壤有机碳的分布   总被引:11,自引:0,他引:11  
以乌孙山北坡、科古琴山南坡为例,分析伊犁山地南北坡土壤有机碳的分布特征和影响因素。结果表明:①0-50 cm范围内,高寒草甸、草甸草原土壤有机碳含量较高,荒漠草原土壤有机碳含量最低。土壤有机碳含量均随土壤深度的增加而降低,高寒草甸随土壤深度的增加土壤有机碳下降幅度最大;②伊犁山地土壤腐殖化程度高,氮矿化能力强。大部分海拔的土壤碳氮比随土壤深度的增加而减少。河谷南坡碳氮比降低速率要大于河谷北坡。③土壤有机碳与全氮、全磷以及土壤含水率表现出良好的正相关性;与pH值表现出较好的负相关性,特别是20-50 cm处。植被类型分布和人类活动影响对土壤有机碳垂直变化影响显著。  相似文献   

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