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1.
Soil carbon sequestration and potential has been a focal issue in global carbon research. Under the background of global change, the estimation of the size as well as its change of soil organic carbon(SOC) storage is of great importance. Based on soil data from the second national soil survey and field survey during 2011–2012, by using the regression method between sampling soil data and remote sensing data, this paper aimed to investigate spatial distribution and changes of topsoil(0–20 cm) organic carbon storage in grasslands of Inner Mongolia between the 1980 s and 2010 s. The results showed that:(1) the SOC storage in grasslands of Inner Mongolia between the 1980 s and 2010 s was estimated to be 2.05 and 2.17 Pg C, with an average density of 3.48 and 3.69 kg C·m–2, respectively. The SOC storage was mainly distributed in the typical steppe and meadow steppe, which accounted for over 98% of the total SOC storage. The spatial distribution showed a decreased trend from the meadow steppe, typical steppe to the desert steppe, corresponding to the temperature and precipitation gradient.(2) SOC changes during 1982–2012 were estimated to be 0.12 Pg C, at 7.00 g C·m–2·yr–1, which didn't show a significant change, indicating that SOC storage in grasslands of Inner Mongolia remained relatively stable over this period. However, topsoil organic carbon showed different trends of carbon source/sink during the past three decades. Meadow steppe and typical steppe had sequestered 0.15 and 0.03 Pg C, respectively, served as a carbon sink; while desert steppe lost 0.06 Pg C, served as a carbon source. It appears that SOC storage in grassland ecosystem may respond differently to climate change, related to vegetation type, regional climate type and grazing intensity. These results might give advice to decision makers on adopting suitable countermeasures for sustainable grassland utilization and protection.  相似文献   

2.
Transport of organic carbon via rivers to estuary is a significant geochemical process in the global carbon cycle.This paper presents bulk total organic carbon(TOC) from the Dongjiang catchment to the adjacent Humen outlet,and discusses the applicability of δ13C and ratio of carbon to nitrogen(C/N) as indicators for sources of organic matter in the surface sediments.Survey results showed that organic carbon concentration in summer were higher than in the winter.An elevated trend of TOC occurred along the river to the Humen outlet in both surveys,and the highest mean values of dissolved and particular organic carbon(DOC~279 μmol L–1 and POC~163 μmol L–1) were observed in the urban deltaic region in summer flood flow.Winter samples had a wide range of δ13C and C/N(δ13C –24.6‰ to –30.0‰,C/N 4–13),and summer ones varied slightly(δ13C –24.2‰ to –27.6‰,C/N 6–18).As results suggest that POC in the three zones of upstream-delta-outlet dominantly came from riverbank soil,phytoplankton and agricultural C3 plants in winter,whereas main sources were from the riverbank and mangrove soil in summer.Moreover,anthropogenic sewage inputs had 11% and 7% contribution to POC in the deltaic and outlet.Transport accompanied with seasonal freshwater variation,phytoplankton production and degradation,and removal behavior caused variation of organic carbon concentration.The results also discovered that TOC export bulk in Dongjiang was approximately one quarter of Humen flux in the dry flow,and anthropogenic activity significantly impacted the river export contribution.  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.
Soil carbon sequestration and potential has been a focal issue in global carbon research. Under the background of global change, the estimation of the size as well as its change of soil organic carbon(SOC) storage is of great importance. Based on soil data from the second national soil survey and field survey during 2011–2012, by using the regression method between sampling soil data and remote sensing data, this paper aimed to investigate spatial distribution and changes of topsoil(0–20 cm) organic carbon storage in grasslands of Inner Mongolia between the 1980 s and 2010 s. The results showed that:(1) the SOC storage in grasslands of Inner Mongolia between the 1980 s and 2010 s was estimated to be 2.05 and 2.17 Pg C, with an average density of 3.48 and 3.69 kg C·m–2, respectively. The SOC storage was mainly distributed in the typical steppe and meadow steppe, which accounted for over 98% of the total SOC storage. The spatial distribution showed a decreased trend from the meadow steppe, typical steppe to the desert steppe, corresponding to the temperature and precipitation gradient.(2) SOC changes during 1982–2012 were estimated to be 0.12 Pg C, at 7.00 g C·m–2·yr–1, which didn't show a significant change, indicating that SOC storage in grasslands of Inner Mongolia remained relatively stable over this period. However, topsoil organic carbon showed different trends of carbon source/sink during the past three decades. Meadow steppe and typical steppe had sequestered 0.15 and 0.03 Pg C, respectively, served as a carbon sink; while desert steppe lost 0.06 Pg C, served as a carbon source. It appears that SOC storage in grassland ecosystem may respond differently to climate change, related to vegetation type, regional climate type and grazing intensity. These results might give advice to decision makers on adopting suitable countermeasures for sustainable grassland utilization and protection.  相似文献   

5.
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   

6.
Alluviation and sedimentation of the Yellow River are important factors influencing the surface soil structure and organic carbon content in its lower reaches. Selecting Kaifeng and Zhoukou as typical cases of the Yellow River flooding area, the field survey, soil sample collection, laboratory experiment and Geographic Information System(GIS) spatial analysis methods were applied to study the spatial distribution characteristics and change mechanism of organic carbon components at different soil depths. The results revealed that the soil total organic carbon(TOC), active organic carbon(AOC) and nonactive organic carbon(NOC) contents ranged from 0.05–30.03 g/kg, 0.01–8.86 g/kg and 0.02–23.36 g/kg, respectively. The TOC, AOC and NOC contents in the surface soil layer were obviously higher than those in the lower soil layer, and the sequence of the content and change range within a single layer was TOCNOCAOC. Geostatistical analysis indicated that the TOC, AOC and NOC contents were commonly influenced by structural and random factors, and the influence magnitudes of these two factors were similar. The overall spatial trends of TOC, AOC and NOC remained relatively consistent from the 0–20 cm layer to the 20–100 cm layer, and the transition between high-and low-value areas was obvious, while the spatial variance was high. The AOC and NOC contents and spatial distribution better reflected TOC spatial variation and carbon accumulation areas. The distribution and depth of the sediment, agricultural land-use type, cropping system, fertilization method, tillage process and cultivation history were the main factors impacting the spatial variation in the soil organic carbon(SOC) components. Therefore, increasing the organic matter content, straw return, applying organic manure, adding exogenous particulate matter and conservation tillage are effective measures to improve the soil quality and attain sustainable agricultural development in the alluvial/sedimentary zone of the Yellow River.  相似文献   

7.
In this study, seasonal variation characteristics of surface soil microbial biomass carbon (MBC) and soil microbial biomass nitrogen (MBN) of an artificial vegetation area located in Shapotou for different time periods were studied using the chloroform fumigation method, and the results were compared with those of near-natural vegetation areas and mobile dunes. Results showed that the MBC and MBN levels in the 0-5 cm soil layer were higher in autumn than in summer and spring. As the prolongation of vegetation restoration raised the MBC and MBN levels in summer and autumn, no clear variation was found in spring. However, the MBC and MBN in 5-20 cm had no obvious seasonal variation. During summer and autumn, the variation trend of MBC and MBN in the vertical direction was shown to be 0-5 〉 5-10 〉 10-20 cm in the vegetation area, while for mobile dunes, the MBC and MBN levels increased as the depth increased. The natural vegetation area was shown to possess the highest MBC and MBN levels, and yet mobile dunes have the lowest MBC and MBN levels. MBC and MBN levels in artificial sand-binding vegetation increased with the prolongation of vegetation restoration, indicating that the succession of sand-binding vegetation will result in the ac- cumulation of soil carbon and nitrogen, as well as the restoration of soil fertility.  相似文献   

8.
In the semiarid Horqin Sandy Land of northern China, land desertification is the main causation in vegetation degradation and formation of moving dunes. A study was conducted from 1996 to 2005 to monitor the changes of vegetation characteristics and soil properties after moving dunes were fenced. The changes were compared between moving sand dunes with exclosure and without exclosure to evaluate the effectiveness of vegetation and soil restoration after exclosure establishment. The results show that exlosure establishment facilitated the colonization and development of plant species by ameliorating stressful environmental conditions. Species diversity, average coverage, and plant density significantly increased after exclosure of moving sand dunes along sequence compared with sand dunes without exclosure. Vegetation recovery on moving sand dunes accelerated by exclosure resulted in significant changes in soil properties including increased silt and clay contents, organic C and total N and decreased sand content, especially at the 0-5 cm depth. The results implied that moving sand dunes can be rapidly fixed by construction of exclosure.  相似文献   

9.
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   

10.
Transport of organic carbon via rivers to estuary is a significant geochemical proc- ess in the global carbon cycle. This paper presents bulk total organic carbon (TOC) from the Dongjiang catchment to the adjacent Humen outlet, and discusses the applicability of 613C and ratio of carbon to nitrogen (C/N) as indicators for sources of organic matter in the surface sediments. Survey results showed that organic carbon concentration in summer were higher than in the winter. An elevated trend of TOC occurred along the river to the Humen outlet in both surveys, and the highest mean values of dissolved and particular organic carbon (DOC-279 μmol L-1 and POC-163μmol L-1) were observed in the urban deltaic region in summer flood flow. Winter samples had a wide range of b'13C and C/N (5-3C -24.6%o to -30.0%o, C/N 4-13), and summer ones varied slightly (8-3C -24.2%o to -27.6%0, C/N 6-18). As results suggest that POC in the three zones of upstream-delta-outlet dominantly came from riverbank soil, phytoplankton and agricultural C3 plants in winter, whereas main sources were from the riverbank and mangrove soil in summer. Moreover, anthropogenic sewage inputs had 11% and 7% contribution to POC in the deltaic and outlet. Transport accompanied with seasonal freshwater variation, phytoplankton production and degradation, and removal be- havior caused variation of organic carbon concentration. The results also discovered that TOC export bulk in Dongjiang was approximately one quarter of Humen flux in the dry flow, and anthropogenic activity significantly impacted the river export contribution.  相似文献   

11.
选取了杭州湾滨海湿地芦苇Phragmites australis湿地、互花米草Spartina alterniflora湿地、海三棱藨草Scirpus mariqueter湿地以及光滩湿地,研究了土壤脲酶、蔗糖酶、β-葡萄糖苷酶、磷酸酶活性及土壤溶解性碳(DOC)、土壤微生物量碳(MBC)在0~20cm土层的分布特征及其内在相关性,探讨酶活性与土壤有机碳及其组分的关系。结果表明,表层(0~5cm)土壤的酶活性和有机碳含量最高,随着土壤深度的增加,土壤酶活性和土壤有机碳含量呈下降趋势。相关分析表明,土壤碱性磷酸酶、蔗糖酶与总有机碳呈显著正相关,土壤脲酶与土壤溶解性有机碳呈显著正相关,蔗糖酶、β-葡萄糖苷酶以及碱性磷酸酶活性与土壤微生物量碳或溶解性碳呈负相关,表明不同的土壤酶对湿地土壤有机碳库组成的贡献不同。  相似文献   

12.
通过在亚热带杉木林内设置不同隔离降雨强度试验:完全隔离降雨、隔离60%降雨、隔离20%降雨和对照(自然降雨),研究隔离降雨对0~20 cm土层可溶性有机碳(DOC)和微生物生物量碳(MBC)含量的影响,结果表明:0~10 cm和10~20 cm土层,除完全隔离降雨处理土壤DOC峰值出现在春季外,其他处理均出现在秋季。0~10 cm土层中完全隔离降雨和隔离60%降雨处理的土壤MBC峰值出现在春季,而隔离20%降雨和对照的则出现在夏季,10~20 cm土层各处理对应的MBC最大值分别出现在春季、夏季、夏季和秋季。随着土层加深,4种处理土壤DOC、MBC含量均显著降低。0~10 cm土层,完全隔离降雨处理的土壤DOC、隔离60%降雨土壤MBC均与土壤含水量显著正相关,杉木林土壤DOC和MBC对降水变化响应具有明显的季节性。  相似文献   

13.
选取三江平原小叶章(Calamagrostis angustifolia)沼泽湿地,研究了沼泽湿地土壤脲酶、蔗糖酶、酸性磷酸酶、过氧化氢酶活性及土壤活性有机碳表征指标(土壤微生物量碳MBC,微生物量氮MBN、溶解有机碳DOC)在近表土层(0~30cm)的分布特征,及其内在相关性,探讨酶活性与土壤活性有机碳库的关系。结果表明:表层土壤的酶活性和活性有机碳表征指标含量最高,随着土壤深度增加,土壤脲酶、蔗糖酶、酸性磷酸酶、过氧化氢酶活性及MBC、MBN、DOC均显著降低。经相关分析表明,土壤酶活性与土壤活性有机碳表征指标间呈极显著正相关关系,其中蔗糖酶与MBC、DOC相关系数最高,过氧化氢酶活性与MBN的相关系数最高。表明不同土壤酶对湿地土壤活性碳表征指标转化循环的贡献不同,土壤酶活性对土壤活性有机碳库有显著的影响,以蔗糖酶对活性有机碳库影响最为显著。  相似文献   

14.
揭示土壤活性有机碳的特征及其与碳释放的关系对研究全球气候变化具有重要意义.本研究对艾比湖湿地不同生境土壤活性有机碳及厌氧条件下碳分解过程进行测定与分析.研究结果表明:1)不同生境土壤DOC、MBC和EOC含量分别为43.41~151.30 mg.kg-1、8.23~417.83 mg.kg-1、69.63~2376.08 mg.kg-1,平均含量分别为81.18 mg.kg-1、112.20mg.kg-1、768.59 mg.kg-1,变异系数为40.8%、91.9%和88.0%;2)不同组分土壤活性有机碳之间呈现出极显著正相关(P<0.01);3)土壤氮含量和黏粒含量是影响DOC、MBC和EOC的重要因子;4)土壤EOC是指示不同生境土壤厌氧条件下碳分解潜力的主要碳源.  相似文献   

15.
We analyzed and estimated the distribution and reserves of soil organic carbon under nine different vegetation conditions including alpine meadow, meadow steppe, typical steppe, desert steppe, and temperate coniferous forest and so on, in the Ili River valley, Xinjiang according to data from field investigations and laboratory analyses in 2008 and 2009. The study results show that the soil organic carbon content in the Ili River valley varies with the type of vegetation. In the 0–50 cm soil horizon, the soil organic carbon content is the highest under the vegetation types of alpine meadow and meadow steppe, slightly lower under temperate coniferous forest and typical steppe, and the lowest under the intrazonal vegetation and desert vegetation types. The soil organic carbon content shows basically a tendency to decrease as soil depth increases under various vegetation types except in the case of the intrazonal vegetation. Similarly, the soil organic carbon density is the highest and varies little under the vegetation types of alpine meadow, meadow steppe and temperate coniferous forest, and is the lowest under the desert vegetation type. Both the soil organic carbon content and density in the topsoil of meadows in the Ili River valley are high, so protecting meadows in the Ili River valley, and especially their topsoil, should be a priority so that the potential of change in soil organic carbon in the shallow soil horizon is reduced, and this means maintenance of the stability of the soil carbon pool.  相似文献   

16.
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   

17.
黑碳添加对杉木人工林土壤微生物量碳氮的影响   总被引:1,自引:0,他引:1  
向杉木人工林土壤中分别添加不同用量黑碳,以0%(C0)、1%(C1)和5%(C5)添加量(质量分数)作为不同处理,通过28d室内培养实验,研究了黑碳添加对土壤微生物量碳(ymc)和微生物量氮(MBN)的影响.结果表明,各处理土攘MBC含量变化趋势是前期急剧减少,后期增加,并趋于稳定;黑碳添加在一定程度上缓解了土壤MBN含量的减少,并随着黑碳添加量的增加,土壤MBN含量呈现增加的趋势.整个培养过程中,除第1d外,黑碳添加处理的土壤MBC和MBN含量始终高于对照处理,C5〉C1〉CO.同时,土壤可溶性碳(DOC)和可溶性氮(DON)含量也因黑碳的添加而呈现减少的趋势.  相似文献   

18.
黑碳添加对杉木人工林土壤微生物量碳氮的影响   总被引:1,自引:0,他引:1  
向杉木人工林土壤中分别添加不同用量黑碳,以0%(C0)、1%(C1)和5%(C5)添加量(质量分数)作为不同处理,通过28d室内培养实验,研究了黑碳添加对土壤微生物量碳(ymc)和微生物量氮(MBN)的影响.结果表明,各处理土攘MBC含量变化趋势是前期急剧减少,后期增加,并趋于稳定;黑碳添加在一定程度上缓解了土壤MBN...  相似文献   

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