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1.
The ecological consequences of grassland afforestation in arid/semiarid sandy regions are not well known with respect to tree species and stand age. The present study quantifies the changes in above- and belowground carbon (C) stocks following afforestation in the southeastern Keerqin Sandy Lands with species of Mongolian pine and poplar. We studied 15-, 24-, and 30-year-old Mongolian pine plantations, 7-, 11-, and 15-year-old poplar plantations, and adjacent grasslands. The results show that total ecosystem C stocks increased following grassland afforestation. Aboveground C stocks increased at a rate of 2.75 Mg C ha−1 yr−1 in the poplar plantations, and 1.06 Mg C ha−1 yr−1 in the Mongolian pine plantations. Mineral soil C stocks decreased during the early stage of forest establishment, but recovered with increasing stand age. Root C stock increased significantly in the Mongolian pine plantations, but the poplar plantations showed no such increase relative to the grassland. Our results indicate that afforestation of the grassland in the southeastern Keerqin Sandy Lands would sequester more C than would continuous grassland. Tree species selection and stand developmental age should be considered in planning future afforestation projects.  相似文献   

2.
章古台固沙林主要树种根际土壤性质研究   总被引:13,自引:2,他引:11  
研究了章古台固沙林樟子松、油松、赤松和杨树4个树种的根际土壤, 结果表明: 不同树种根际土壤pH值低于非根际土壤, 有机质含量均高于非根际土壤; 除杨树外, 根际土壤CEC(阳离子代换量)均低于非根际土壤; 而交换性酸度、水解性酸度和全盐量均高于非根际土壤, 盐基饱和度均低于非根际土壤; 根际土壤中全N、碱解N、速效K表现为富集, 速效P表现为亏缺, 其中樟子松亏缺最为严重; 不同树种根际土壤微生物数量和酶活性均高于非根际土壤。  相似文献   

3.
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   

4.
森林的不同更新方式对森林土壤理化性质有重要影响.本研究通过野外调查探讨中亚热带山区杉木人工林和米槠人促更新林2种不同更新方式下林地土壤理化性质的变化特征,并用土壤退化指数定量描述土壤质量变化.结果表明:杉木人工林土壤表层(0—10cm)容重显著高于米槠人促更新林(P〈0.05);随土壤深度的增加,杉木人工林和米槠人促更...  相似文献   

5.
森林的不同更新方式对森林土壤理化性质有重要影响.本研究通过野外调查探讨中亚热带山区杉木人工林和米槠人促更新林2种不同更新方式下林地土壤理化性质的变化特征,并用土壤退化指数定量描述土壤质量变化.结果表明:杉木人工林土壤表层(0—10cm)容重显著高于米槠人促更新林(P〈0.05);随土壤深度的增加,杉木人工林和米槠人促更新林土壤有机C、全N、全P、水解N和有效P均逐渐降低.米槠人促更新林表层(0—10cm)土壤有机c比杉木人工林高出15.6%,全N、全P以及水解N和速效P也均表现出人促米槠更新林高于杉木人工林的趋势;土壤退化指数的计算结果表明杉木林土壤质量显著低于米槠人促更新林.  相似文献   

6.
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   

7.
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   

8.
In spite of the extremely low phosphorus (P) availability in soils of the Alxa Desert region (Inner-Mongolia, China), many shrubs grow well there. The objective of this study was to investigate the status of inorganic phosphorus (Pi) fractions in the rhizosphere of xerophytic shrubs. For all five selected shrubs, soil pH in the rhizosphere decreased by 0.4–0.8 units and the total P concentrations were greater than those in the corresponding bulk soils. In the rhizosphere of Reaumuria soongorica, Olsen P concentration was lower than that in the bulk soil. In general, the order of Pi fractions was Ca10–P > Ca8–P > Al–P > Fe–P > Ca2–P > O–P. The concentrations of all Pi fractions varied significantly with rhizosphere and corresponding bulk soils. The results of stepwise regression showed that Olsen P concentration in rhizosphere and bulk soils was contributed by different Pi fractions. The correlation analysis showed that the relationships between Pi fractions differed between rhizosphere and bulk soils. These results indicated that the soil Pi fractions are significantly affected by root activities, differing between the rhizosphere and bulk soils, and different xerophytic shrubs exhibited significantly different effect on soil Pi fractions.  相似文献   

9.
As terrestrial ecosystem carbon (C) sinks, plantation ecosystems play essential roles in species diversity protection, resource supply and climate change. Artificial afforestation is of great important in improving the ecological condition, economic development and production in Tibet. Forests can improve soil property changes, yet the understanding of how plantations influence soil C and nutrient conditions in Tibet is still insufficient. This review combines with previous studies to explore the characteristics of soil nutrients, involving nitrogen (N) and phosphorus (P) on Tibetan poplar plantations. Generally, plantations have better abilities in improving the soil C and N cycles, and enhancing the soil stability. In this review, we further analyze the factors, including the modality of land-use, afforested period, tree species, climate factors and soil properties, which may affect the soil C and nutrients. (1) The patterns of land-use affect the accumulation of soil organic matter, thus influence the accumulation of soil C and nutrients; (2) Soil C and N increase with the years of artificial forests, while soil P is on the contrary; (3) The effects of different tree species on soil C and nutrients vary widely; (4) In terms of climate, the C sink of Tibetan plantation soil is most likely to be affected by precipitation, while the nutrient is more likely to be influenced by temperature; (5) Among soil properties, the most related factor to C is soil texture. Furthermore, our review pointed out that future research on soil ecological functions should be focused on soil microbes on Tibet plantation. At the end, we concluded three major challenges for the future research. Therefore, this review contributes to a better understand the effects of plantation on soil C and nutrients on the Tibetan Plateau.  相似文献   

10.
固沙造林改良风沙土的效果   总被引:4,自引:1,他引:3  
本文报道了辽宁省彰武县章占台附近沙地上固沙造林试验25年的研究结果。试验表明:流沙经固定后,物理性粘粒(<0.01毫米)含量有所增加;沙土容重透水性相应减小;表层有机质增多;半固定沙土中氮、磷、钾含量分别为流动沙区的1.30,1.09,1.04倍,26年樟子松固定沙土比流动沙土增加纯氮1485公斤/公顷,磷(P5O2)1164公斤/公顷,钾(K2O)2428公斤/公顷。说明固沙造林是一种改良沙土、培肥地力的有效方法。  相似文献   

11.
塔克拉玛干沙漠腹地人工绿地风沙土的土壤酶活性研究   总被引:19,自引:4,他引:15  
在极端干旱的塔克拉玛干沙漠腹地,利用咸水(矿化度4~5 g·L-1)灌溉建立人工绿地后,受植被和各种人为措施的影响,风沙土内部性质发生了一系列的变化,土壤酶活性也发生了变化。1998年对不同种植时间、不同植被类型的样地布点采样,采样深度0~10 cm和10~50 cm。分析测定了转化酶、蛋白酶、H2O2酶、脲酶、中性磷酸酶、碱性磷酸酶活性,结果表明:①分析测定的6种酶活性随着植被建立时间的增长而明显增强;②相同种植时间不同植被类型的样地土壤酶活性有差异,如:相同种植时间,蔬菜地土壤酶活性要高于其他样地;③表层土壤酶活性高于下层,表明土壤酶活性随剖面深度下降而减弱;④通过相关性分析表明,土壤酶活性与有机质、氮、磷、微生物数量相关性显著;⑤通过与其他沙区土壤酶活性的比较,塔克拉玛干沙漠腹地土壤酶活性要相应低于其他沙区的流动和固定沙丘。  相似文献   

12.
生物结皮在土壤养分累积和循环中起着重要作用。土壤酶活性能敏感地指示土壤的恢复程度,是衡量沙区生态恢复与健康的重要生物学指标。采用时空互代法,以毛乌素沙地不同演替阶段生物结皮(藻结皮、混生结皮和藓结皮)为研究对象,通过测定生物结皮及下层土壤的物理化学性质和酶活性,探讨不同演替阶段的生物结皮对土壤酶活性和碳氮磷化学计量特征的影响。结果表明:生物结皮的进展演替可显著提高结皮层脲酶、碱性磷酸酶、蔗糖酶、过氧化氢酶活性(P<0.05);结皮类型显著影响酶活性,藓结皮下层土壤的酶活性最高(P<0.05);3类生物结皮间有机碳(SOC)、全氮(TN)、全磷(TP)、C/N、C/P、N/P差异显著;生物结皮层SOC、TN、TP、C/N、C/P、N/P均显著高于下层土壤。环境因子对生物结皮及下层土壤酶活性变异影响大小排序为TN>速效钾(AK)>SWC>TP>C/P>SOC>碱解氮(AN)>pH>容重(BD)>速效磷(AP),影响酶活性的主导因子是TN、TP、AK。碱性磷酸酶和过氧化氢酶活性与SOC、TN、AN、C/P、N/P正相关,而脲酶和蔗糖酶与AK、TP、AP正相关。但pH、BD、Por与这4类酶活性均负相关。生物结皮的进展演替可促进结皮层及下层土壤的理化性质及酶活性的提升,但对结皮层的提升显著高于下层土壤。  相似文献   

13.
南亚热带丘陵赤红壤理化性质变化及其原因   总被引:6,自引:0,他引:6  
钟继洪  郭庆荣  谭军 《地理研究》2004,23(3):312-320
本文研究了南亚热带丘陵赤红壤物理、化学性质变 (退 )化的特征及其原因。结果表明 ,丘陵赤红壤在物理性质退化方面 ,主要表现在土壤团聚体稳定性下降、土壤孔隙性和土壤水分性能变劣 ;在化学性质退化方面 ,主要表现在养分贫瘠化、保肥供肥能力降低。植被破坏会引起土壤养分减少、保肥供肥能力降低 ,有机质的减少是丘陵赤红壤物理性质退化的主要原因。有必要保护植被、提高土壤有机质含量 ,以防止丘陵赤红壤理化性质退化  相似文献   

14.
Site-specific nutrient management is an important strategy to promote sustainable production of rubber trees in order to obtain high yields of natural rubber. Making effective nutrient management decisions for rubber trees depend on knowing the spatial variations of soil fertility properties in advance. In this study the Kriging geostatistical method was used to examine the spatial variability of soil total nitrogen (TN), organic matter (OM), available phosphorus (AP) and available potassium (AK) in a typical hilly rubber tree plantation in Hainan, China. The spatial variability of the soils was small for the TN and OM and had medium variability for the AP and AK variables. Anisotropic semivariograms of all soil properties revealed that elevation and building contour ledge can profoundly affect the spatial variability of soil properties in the plantation, except for the AK variable. Soil samples had to be collected in alignment with the direction of elevation and perpendicular to the direction of building contour ledges, which was needed to obtain more reliable information within the study area in the rubber tree plantation. In formulating a sample scheme for AK, the distribution features of the soil’s parent material should be considered as the influence factor in the study field. The Kriging method used to guide the soil sampling for spatial variability dertermination of soil properties was about 2-5 times more efficient than the classic statistical method.  相似文献   

15.
黑河中游不同土地覆被土壤水文环境及植被特征   总被引:1,自引:0,他引:1  
牛瑞雪  赵学勇  刘继亮 《中国沙漠》2012,32(6):1590-1596
 以黑河中游6种典型土地覆被类型(百年灌溉农田、新垦灌溉农田、人工杨树林、人工樟子松林、人工梭梭灌木林和天然荒漠草地)为研究对象,对其部分土壤生态水文和植被因子进行了测定。结果显示,6种土地覆被类型不仅在地表生态水文环境特征、土壤结构特征、土壤化学和微生物群落特征等方面存在显著差异,而且在植被的盖度、密度和生物量方面也存在显著差异。不同土地覆被类型的植物生物量与田间持水量、土壤黏粉粒含量、土壤全氮、土壤有机碳和土壤碳氮比等因子具有密切的关系。该研究为如何通过改变土地覆被方式而有效地保护和利用绿洲荒漠系统提供了一定的思路,也为进一步解析气候变化和人类活动影响下荒漠绿洲生态系统水、土、气、生的相互作用过程及其机制提供了一定的科学依据。  相似文献   

16.
在对永安市尾巨桉人工林、杉木林、毛竹林野外调查取样和室内实验分析基础上,对11年生尾巨桉林、3年生尾巨桉林与杉木林和毛竹林的土壤理化性质进行全面比较.结果表明,3年生尾巨桉林各层土壤中的土壤有机质、全氮和碱解氮、全磷和速效磷、全钾和速效钾含量大多低于其他3种林地,反映了处于速生期的桉树对养分的旺盛需求和消耗;并且,速生期桉树还会造成一定程度的土壤表层粘粒下移和酸化;但随着桉树种植年限的增加,这种状况有所改善.在此基础上,提出变炼山全垦为块状整地,速生期人工施肥,延长轮伐期,实行间种、轮栽并适当休闲养地,提高桉树人工林生物多样性等措施,以实现桉树人工林土壤养分平衡与生态系统的良性循环.  相似文献   

17.
通过调查取样,对比分析了海南岛中部山区天然林地及林地转变为橡胶林后的土壤物理和化学性质差异.结果表明:(1)不同林地对砂、粉粒和黏土粒度分布的影响显著,天然林地0~30 cm、30~60 cm和60~120 cm三个深度的土壤的物理性黏粒含量均高于人工林地.(2)天然林地和人工橡胶林三层的土壤容重和田间持水量均存在显著差异,天然林地0~30 cm和30~60 cm的土壤田间持水量大于人工橡胶林.(3)两种林地的上、中、下三层土壤的有机质、全氮、碱解氮均有很大差异.天然林地土壤上层( 0~30 cm)有机质  相似文献   

18.
何帅  尹飞虎  谢海霞 《干旱区地理》2017,40(5):1061-1069
选择新疆准噶尔盆地灰漠土作为研究对象,通过测定灰漠土中不同形态的无机磷素含量并进行土壤磷素等温吸附实验,研究灰漠土中各形态无机磷素的有效性和土壤磷吸附特征。结果表明,灰漠土中无机磷形态主要是Ca-P,占全磷含量75%以上,且以Ca10-P形式为主,其次为Ca8-P和Ca2-P,无机磷中Al-P、Fe-P和O-P含量较少。全剖面中随着土层深度增加,Ca2-P、Ca8-P和Al-P占全磷总量的比例减少,Ca10-P占全磷总量则有所增加,0~20 cm土层全磷和Olsen-P含量最高,分别平均为926 mg·kg-1和51.54 mg·kg-1。统计分析表明Ca2-P、Al-P是最有效的磷源,Ca8-P和Fe-P是第二有效磷源,O-P和Ca10-P则是作物的潜在磷源。利用Langmuir方程拟合灰漠土的磷等温吸附曲线,得出土壤最大吸磷量(Xm)为957±629 mg·kg-1,吸附参数(K)为149.285±89.225;灰漠土的粘粒含量对Xm影响最大,其次是有机质,pH值影响最小。  相似文献   

19.
Widespread cheatgrass (Bromus tectorum L.) invasion represents a major shift in species dominance that may alter ecosystem processes across much of the western US. To investigate differences following such conversion, soil morphology and organic matter under cheatgrass-dominated and native shrub-steppe vegetation were compared by standard soil analysis procedures at seven paired sites in Idaho and Utah. Results suggest that, following conversion to cheatgrass dominance, increased porosity and labile organic inputs enhance microbial decomposition in near-surface horizons beneath cheatgrass compared to adjacent soils under native vegetation. Enhanced decomposition could result in depletion of long-term SOM, leading to impoverished sites difficult to restore to native perennial vegetation.  相似文献   

20.
利用稳定同位素技术测定降水、土壤水、植物茎干水的同位素组成,结合多元线性混合模型(IsoSource)确定科尔沁沙地东南部樟子松人工林内樟子松的根系吸水范围以及各水源的水分贡献率。通过连续观测强降水事件前后樟子松水分来源的变化,探究降水对樟子松水分利用的影响。结果表明樟子松茎干水与20cm以下土层的土壤水同位素组成最为接近,樟子松的水分吸收主要集中在这一层(最大取样深度80cm)。IsoSource模拟结果与观测结果一致,土壤水分条件较好时,大约60%以上的水分来自于20-80cm土层;当这一深度土壤含水量降低时,樟子松将会更多地依赖更深层的土壤水分。樟子松根系分布的最大深度远小于地下水位,因此很难利用到地下水。2009年7月13日14.4mm的降水前后,樟子松茎干水同位素组成的变化表明,降水结束后36小时樟子松可以感应到降水对表层20cm土壤水分的补充,这一土层的水分贡献率在接下来的24小时内迅速降低。不同水分条件下水分来源的多样性表明樟子松能较好地适应沙地生境。  相似文献   

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