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Moving Dynamics of Nitrate Nitrogen in Soil of Maize Field on Meadow Soil of Daling River Valley in Liaoning and Its Fertilization Controlling
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作者 刘慧颖 董环 +1 位作者 张鑫 韩晓日 《Agricultural Science & Technology》 CAS 2010年第9期121-125,共5页
The moving dynamics of nitrate nitrogen(NO3-N)in soil of maize field on meadow soil of Daling river valley in Liaoning and its rational fertilization controlling were discussed in this study by the designing of diff... The moving dynamics of nitrate nitrogen(NO3-N)in soil of maize field on meadow soil of Daling river valley in Liaoning and its rational fertilization controlling were discussed in this study by the designing of different kinds of N application methods.The results showed that the content of NO3-N in soil was increased with the amount of nitrogen fertilizer;At the same amount of nitrogen fertilizer,the content of NO3-N in soil showed a trend of chemical fertilizerstraw treatmentslow controlled release fertilizer.Based on the requirement of roots in different growth stages to nutrition,the migration directions of NO3-N could be regulated by each layer of soil.In the early growth stage,the NO3-N would move upward,while it moved downward in the late growth stage.Straw returning treatment could improve the keeping ability of soil to NO3-N and avoid the downward migration of NO3-N,as well as reduce the damage of groundwater pollution.The use of slow controlled release fertilizer had achieved the continuing releasing of nutrition.Moreover,the peak of nutrition releasing had been delayed for 30 d,which had met the requirement of nutrient supply in maturing stage.The yield of slow controlled release fertilizer treatment was the highest with the least accumulation of NO3-N and less negative influence on environment.The yield of straw returning treatment and chemical fertilizer treatment was closed to each other. 展开更多
关键词 meadow soil soil nitrate nitrogen Rational fertilization Daling River valley
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Accurate Quantification of Grassland Cover Density in an Alpine Meadow Soil Based on Remote Sensing and GPS 被引量:12
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作者 LIU Yan-Sui HU Ye-Cui PENG Liu-Ying 《Pedosphere》 SCIE CAS CSCD 2005年第6期778-783,共6页
The principles of remotely estimating grassland cover density in an alpine meadow soil from space lie in the synchronous collection of in situ samples with the satellite pass and statistically linking these cover dens... The principles of remotely estimating grassland cover density in an alpine meadow soil from space lie in the synchronous collection of in situ samples with the satellite pass and statistically linking these cover densities to their image properties according to their geographic coordinates. The principles and procedures for quantifying grassland cover density from satellite image data were presented with an example from Qinghai Lake, China demonstrating how quantification could be made more accurate through the integrated use of remote sensing and global positioning systems (GPS). An empirical model was applied to an entire satellite image to convert pixel values into ground cover density. Satellite data based on 68 field samples was used to produce a map of ten cover densities. After calibration a strong linear regression relationship (r2 = 0.745) between pixel values on the satellite image and in situ measured grassland cover density was established with an 89% accuracy level. However, to minimize positional uncertainty of field samples, integrated use of hyperspatial satellite data and GPS could be utilized. This integration could reduce disparity in ground and space sampling intervals, and improve future quantification accuracy even more. 展开更多
关键词 alpine meadow soil grassland cover density quantitative remote sensing Qinghai Lake
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Studies on Fast Remediation of Soda Meadow Alkaline Soil
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作者 ZHOU Lianren SUN Yankun LI Dawei 《Journal of Northeast Agricultural University(English Edition)》 CAS 2010年第4期1-7,共7页
Researches on models of remediation quickly in soda meadow alkaline soil, and dynamic variation of water-salt in saline soil of Zhaozhou County were studied systematically from 2001 to 2006. Realize the vegetation cov... Researches on models of remediation quickly in soda meadow alkaline soil, and dynamic variation of water-salt in saline soil of Zhaozhou County were studied systematically from 2001 to 2006. Realize the vegetation cover of those years through the artificial planting, mixed seeding lyme grass (Elymus dahuricus Turcz) and melilot in the mode of rotary tillage and deep loosening in lower and medium saline soils. The results showed that there was remarkable relationship between net evaporation (difference of precipitation and evaporation) and total salt content in the soil. The net evaporation could be used as a new method to forecast the dynamics variation of salt to ensure the pasture optimum sowing time. Realize the autumnal vegetation cover of those years through direct planting on the bourgeon layer of soda meadow alkaline soil, on the other hand, the covered pasture made the function of restraining salt and alkaline content to realize the biology reverse succession quickly. Forage seeds were seeded directly on the seeding bed of soda alkaline meadow at the end of July. In fall of the same year, a certain amount of biomass was obtained. The model, which has remarkable economical efficiency and use widely, represented the innovative model for the fast vegetation restoration on the soda alkaline meadow soil. 展开更多
关键词 soda alkaline meadow soil rapid remediation net evaporation COMPOST
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Variation of Soil CO_2 Flux and Carbon Density in Three Apline Meadows
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作者 Wei Wei Cao Wenxia Zhang Xiaojiao 《Animal Husbandry and Feed Science》 CAS 2015年第1期50-53,共4页
Three alpine meadows were chosen from the eastern margin of the Qilian Mountain:Polygonum viviparum meadow(P),Stipa capillata grassland(S)and Rhododendron simsii shrub meadow(R);LI-8100 A soil CO2 flux auto-mon... Three alpine meadows were chosen from the eastern margin of the Qilian Mountain:Polygonum viviparum meadow(P),Stipa capillata grassland(S)and Rhododendron simsii shrub meadow(R);LI-8100 A soil CO2 flux auto-monitoring system and lab analysis were applied to analyze the soil organic carbon density,dynamics of carbon flux,and their relationship with environmental factors.The results showed that different vegetations varied greatly in soil organic carbon density:R 〉 S 〉 P,and the soil carbon density reduced with the increasing depth;soil CO2flux:S 〉 P 〉 R,and sample plot P and S showed unimodal changes.The peak values appeared at 14:00-15:00 p.m.;soil CO2 flux was negatively correlated with near-ground air humidity and carbon content,positively correlated with soil temperature and near-ground air temperature,and showed no obvious correlation with soil moisture. 展开更多
关键词 Alpine meadow soil respiration soil organic carbon Climatic factor soil temperature
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Influence of land cover changes on the physical and chemical properties of alpine meadow soil 被引量:9
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作者 WANGGenxu CHENGGuodong 《Chinese Science Bulletin》 SCIE EI CAS 2003年第2期118-124,共7页
Taking the alpine cold meadow grassland in the southeastern part of the Qinghai-Tibetan Plateau as an ex-ample, this research deals with the characteristics of alpine meadow soil property changes, including soil nutri... Taking the alpine cold meadow grassland in the southeastern part of the Qinghai-Tibetan Plateau as an ex-ample, this research deals with the characteristics of alpine meadow soil property changes, including soil nutrients, soil physical properties and soil moisture content under different land coverage conditions. With the degradation of grassland vegetation and the decline of vegetation coverage, soil com-pactness reduces, gravel content increases and bulk density increases. The originally dense root-system layer is gradually denuded, making the soil coarse and gravel. The change of the organic matter contents with the vegetation coverage change in the surface soil layer (0—20 cm) has shown an obvious cubic polynomial curve process. The organic matter contents increase rapidly when land coverage is above 60%, contrarily decreases on a large scale when land coverage is below 30%. Between 30%—60% of land coverage the or-ganic matter contents remain stable. The total N and organic matter contents in soil have shown quite similar change regularity. Following this the mathematic equations are de-rived to describe such change processes. Moisture content in soil changes sharply with the vegetation coverage change. Soil moisture content change with the vegetation coverage change has shown a quadratic parabola process. Results have shown that organic matter content and the total N con-tent of the alpine meadow soil decrease by 14890 kg/hm2 and 5505 kg/hm2 respectively as the vegetation coverage reduces from 90% to less than 30%. The heavy changes of soil physical and chemical properties with grassland degradation have made the recovery of alpine meadow ecological system impossible. The protection of alpine meadow vegetation is of vital importance to the maintenance of the regional soil en-vironment and the regional ecological system. 展开更多
关键词 青藏高原 高山草甸土 物理性质 化学性质 地被物变化 土壤性质 草地退化 植被
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Warming effects on plant biomass allocation and correlations with the soil environment in an alpine meadow,China 被引量:12
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作者 XU Manhou LIU Min +1 位作者 XUE Xian ZHAI Datong 《Journal of Arid Land》 SCIE CSCD 2016年第5期773-786,共14页
Alpine meadow ecosystem is fragile and highly sensitive to climate change.An understanding of the allocation of above-and below-ground plant biomass and correlations with environmental factors in alpine meadow ecosyst... Alpine meadow ecosystem is fragile and highly sensitive to climate change.An understanding of the allocation of above-and below-ground plant biomass and correlations with environmental factors in alpine meadow ecosystem can result in better protection and effective utilization of alpine meadow vegetation.We chose an alpine meadow in the Qinghai-Tibetan Plateau of China as the study area and designed experimental warming plots using a randomized block experimental design.We used single-tube infrared radiators as warming devices,established the warming treatments,and measured plant above- (AGB) and below-ground biomass (BGB) during the growing seasons (May to September) in 2012 and 2013.We determined the allocation of biomass and the relationship between biomass and soil environment under the warming treatment.Biomass indices including above-ground biomass,below-ground biomass and the ratio of root to shoot (R/S) ,and soil factors including soil moisture and soil temperature at different depths were measured.The results showed that (1) BGB of the alpine meadow had the most significant allometric correlation with its AGB (y=298.7x~ (0.44) ,P〈0.001) ,but the relationship decreased under warming treatment and the determination coefficient of the functional equation was 0.102 which was less than that of 0.188 of the unwarming treatment (control) ; (2) BGB increased,especially in the deeper soil layers under warming treatment (P〉0.05) .At 0–10 cm soil depth,the percentages of BGB under warming treatment were smaller than those of the control treatment with the decreases being 8.52% and 8.23% in 2012 and 2013,respectively.However,the BGB increased 2.13% and 2.06% in 2012 and 2013,respectively,at 10–50 cm soil depths; (3) BGB had significant positive correlations with soil moisture at 100 cm depth and with soil temperature at 20–100 cm depths (P〈0.05) ,but the mean correlation coefficient of soil temperature was 0.354,greater than the 0.245 of soil moisture.R/S ratio had a significant negative correlation with soil temperature at 20 cm depth (P〈0.05) .The warmer soil temperatures in shallow layers increased the biomass allocation to above-ground plant parts,which leading to the increase in AGB;whereas the enhanced thawing of frozen soil in deep layers causing by warming treatment produced more moisture that affected plant biomass allocation. 展开更多
关键词 alpine meadow above-ground biomass below-ground biomass soil environment warming
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Levels of Germinable Seed in Topsoil and Yak Dung on an Alpine Meadow on the North-East Qinghai-Tibetan Plateau 被引量:4
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作者 YU Xiao-jun XU Chang-lin +2 位作者 WANG Fang SHANG Zhan-huan LONG Rui-jun 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2013年第12期2243-2249,共7页
In order to clarify the interactive mechanism between grazing yak and alpine meadow on the Qinghai-Tibetan Plateau,our study assessed seed density(by species) in the topsoil of alpine meadow with different grazing i... In order to clarify the interactive mechanism between grazing yak and alpine meadow on the Qinghai-Tibetan Plateau,our study assessed seed density(by species) in the topsoil of alpine meadow with different grazing intensities in the Tianzhu area,north-eastern margins of the Qinghai-Tibetan Plateau and their rates of occurrence in yak dung.Seed density in the topsoil of the lightly grazed,moderately grazed,heavily grazed and extremely grazed alpine meadows in November,2010 were 1 551,1 692,2 660 and 1 830 grains m-2,while in the same meadows in April,2011 densities were 1 530,2 404,2 530 and 2 692 grains m-2,respectively.In the cold season pasture,mean seed density in yak dung from November to April in the lightly grazed,moderately grazed,heavily grazed and extremely grazed sites were 121,127,187,and 120 grains kg-1of dry yak dung.The proportion of total seed numbers in yak dung to soil seed bank in lightly grazed,moderately grazed,heavily grazed and extremely grazed alpine meadow was 1.40,2.62,0.69,and 0.90%.12 species out of the 47 were not found in topsoil but were found in yak dung,10 species out of 45 were not found in yak dung but were found in the topsoil.Endozoochorous dispersal by yaks is therefore very important for soil seed bank and plant biodiversity and population dynamics in alpine meadows. 展开更多
关键词 alpine meadow SEEDS ENDOZOOCHORY seed density soil seed bank yak dung
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Effects of warming and clipping on plant and soil properties of an alpine meadow in the Qinghai-Tibetan Plateau, China 被引量:15
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作者 Man Hou XU Fei PENG +4 位作者 Quan Gang YOU Jian GUO Xia Fei TIAN Min LIU Xian XUE 《Journal of Arid Land》 SCIE CSCD 2015年第2期189-204,共16页
Climate warming and livestock grazing are known to have great influences on alpine ecosystems like those of the Qinghai-Tibetan Plateau (QTP) in China. However, it is lacking of studies on the effects of warming and... Climate warming and livestock grazing are known to have great influences on alpine ecosystems like those of the Qinghai-Tibetan Plateau (QTP) in China. However, it is lacking of studies on the effects of warming and grazing on plant and soil properties in these alpine ecosystems. In this study, we reported the related research from manipulative experiment in 2010-2012 in the QTP. The aim of this study was to investigate the individual and combined effects of warming and clipping on plant and soil properties in the alpine meadow ecosystem. Infrared radiators were used to simulate climate warming starting in July 2010, while clipping was performed once in Octo- ber 2011 to simulate the local livestock grazing. The experiment was designed as a randomized block consisting of five replications and four treatments: control (CK), warming (W), clipping (C) and warming+clipping combination (WC). The plant and soil properties were investigated in the growing season of the alpine meadow in 2012. The results showed that W and WC treatments significantly decreased relative humidity at 20-cm height above ground as well as significantly increases air temperature at the same height, surface temperature, and soil temperature at the depth of 0-30 cm. However, the C treatment did not significantly decrease soil moisture and soil temperature at the depth of 0-60 cm. Relative to CK, vegetation height and species number increased significantly in W and WC treatment, respectively, while vegetation aboveground biomass decreased significantly in C treatment in the early growing season. However, vegetation cover, species diversity, belowground biomass and soil properties at the depth of 0-30 cm did not differ significantly in W, C and WC treatments. Soil moisture increased at the depth of 40-100 cm in W and WC treatments, while belowground biomass, soil activated carbon, organic carbon and total nitrogen increased in the 30-50 cm soil layer in W, C and WC treatments. Although the initial responses of plant and soil properties to experimental warming and clipping were slow and weak, the drought induced by the down- ward shift of soil moisture in the upper soil layers may induce plant belowground biomass to transfer to the deeper soil layers. This movement would modify the distributions of soil activated carbon, organic carbon and total nitrogen However, long-term data collection is needed to further explain this interesting phenomenon. 展开更多
关键词 simulated warming OVERGRAZING soil property plant property alpine meadow ecosystem Qinghai-Tibetan Plateau
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Relations between the Underground Biomass and Soil Organic Carbon and Nitrogen of the Alpine Meadow at the Eastern Margin of the Qinghai-Tibet Plateau
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作者 ZHANG Hong GAO Linan 《Wuhan University Journal of Natural Sciences》 CAS 2008年第3期324-330,共7页
This article, by combining field investigation with laboratorial analysis, studies diverse alpine meadow at the Eastern Margin of the Qinghai-Tibet Plateau for the underground biomass dynamics, vertical distribution o... This article, by combining field investigation with laboratorial analysis, studies diverse alpine meadow at the Eastern Margin of the Qinghai-Tibet Plateau for the underground biomass dynamics, vertical distribution of the content of soil carbon and nitrogen, the connection between the biomass and the content of carbon and nitrogen. The studies show that underground biomass in the herb layer of upland meadow is more than that in the terrace meadow, while underground biomass in the upland shrubland is the most. The vertical distribution of underground biomass of each type is obvious as in shape of"T". As to the distribution of the content of soil organic carbon in the three sample grounds, it showed that the deeper the soil the less the content of soil organic carbon. In May, unlike at terrace meadow, the underground biomass and the content of soil organic carbon in positive proportion, such revelation at upland meadow and upland shrubland is not apparent. In July, at upland meadow and terrace meadow the underground biomass and the content of soil total nitrogen in positive proportion, such revelation at upland shrubland is not apparent either. 展开更多
关键词 alpine meadow underground biomass soil organic carbon: soil total nitrogen: soil avail nitrogen
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Effects of soil nutrients and climate factors on belowground biomass in an alpine meadow in the source region of the Yangtze-Yellow rivers, Tibetan Plateau of China 被引量:5
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作者 WANG Haiming SUN Jian +3 位作者 LI Weipeng WU Jianbo CHEN Youjun LIU Wenhui 《Journal of Arid Land》 SCIE CSCD 2016年第6期881-889,共9页
Improving our knowledge of the effects of environmental factors (e.g. soil conditions, precipitation and temperature) on belowground biomass in an alpine grassland is essential for understanding the consequences of ... Improving our knowledge of the effects of environmental factors (e.g. soil conditions, precipitation and temperature) on belowground biomass in an alpine grassland is essential for understanding the consequences of carbon storage in this biome. The object of this study is to investigate the relative importance of soil nutrients and climate factors on belowground biomass in an alpine meadow in the source region of the Yangtze and Yellow rivers, Tibetan Plateau. Soil organic carbon (SOC), total nitrogen (TN) and total phosphorous (TP) contents and belowground biomass were measured at 22 sampling sites across an alpine meadow on the Tibetan Plateau. We analyzed the data by using the redundancy analysis to determine the main environmental factors affecting the belowground biomass and the contribution of each factor. The results showed that SOC, TN and TP were the main factors that influenced belowground biomass, and the contribution of SOC, TN and TP on biomass was in the range of 47.87%-72.06% at soil depths of 0-30 cm. Moreover, the combined contribution of annual mean temperature (AMT) and mean annual precipitation (MAP) on belowground biomass ranged from 0.92% to 4.10%. A potential mechanism for the differences in belowground biomass was caused by the variations in soil nitrogen and phosphorous, which were coupled with SOC. A significant correlation was observed between MAP and soil nutrients (SOC, TN and TP) at the soil depth of 0-10 cm (P〈0.05). We concluded that precipitation is an important driving force in regulating ecosystem functioning as reflected in variations of soil nutrients (SOC, TN and TP) and dynamics of belowground biomass in alpine grassland ecosystems. 展开更多
关键词 belowground biomass soil organic carbon soil nitrogen and phosphorus climate factor alpine meadow Tibetan Plateau
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Study on Soil Respiration Characteristics and Carbon Balance of <i>Kobresia pygmaea</i>Meadow in Qinghai-Tibet Plateau, China 被引量:1
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作者 Yuejun Fan Xiyun Chang +2 位作者 Deping Zhao Xiangyang Hou Xin Li 《Journal of Environmental Protection》 2020年第8期636-647,共12页
Although soil respiration is the largest contributor to C flux from terrestrial ecosystems to the atmosphere, our understanding of its characteristics and carbon budget in alpine meadow is rather limited because of ex... Although soil respiration is the largest contributor to C flux from terrestrial ecosystems to the atmosphere, our understanding of its characteristics and carbon budget in alpine meadow is rather limited because of extremely geographic situation. This study was designed to examine soil CO<sub>2</sub> efflux characteristics of diurnal and seasonal variation, thus obtaining estimates of carbon balance of <em>Kobresia pygmaea</em> meadow in Qinghai-Tibet plateau. The results showed that the soil respiration of diurnal and seasonal rate changed little in growing season and was mainly affected by temperature, and single peak curve that showed afternoon appeared. Composite model which was set by soil respiration rate, soil moisture content and temperature (atmospheric temperature and soil temperature) could explain better the variations of soil respiration rate. The variation range of <em>Q</em><sub>10</sub> ranged from 1.28 to 2.34, which was sensitive to temperature in green-up period and late growth stage, and decreased in growth peak period. Meanwhile, during the growing seasons the observed amount of annual carbon fixation via primary production for <em>Kobresia pygmaea</em> meadow ecosystem was about 120.21 g C<span style="white-space:nowrap;">·</span>m<sup>-2</sup><span style="white-space:nowrap;">·</span>a<sup>-1</sup>. The carbon dioxide output via soil heterotrophic respiration was about 37.54 g C<span style="white-space:nowrap;">·</span>m<sup>-2</sup><span style="white-space:nowrap;">·</span>a<sup>-1</sup>. So carbon budget had more input than output. The <em>Kobresia pygmaea</em> meadow ecosystem has stronger potential to absorb carbon dioxide, it was a sink of atmospheric CO<sub>2</sub>, and the plant community had a net carbon gain of 82.67 g C<span style="white-space:nowrap;">·</span>m<sup>-2</sup><span style="white-space:nowrap;">·</span>a<sup>-1</sup>. 展开更多
关键词 soil Respiration Kobresia pygmaea meadow Carbon Balance/Budget Qinghai-Tibet Plateau
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Non-growing season soil CO_2 efflux and its changes in an alpine meadow ecosystem of the Qilian Mountains,Northwest China 被引量:1
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作者 ZongQiang CHANG XiaoQing LIU +4 位作者 Qi FENG ZongXi CHE HaiYang XI YongHong SU JianHua SI 《Journal of Arid Land》 SCIE CSCD 2013年第4期488-499,共12页
Most soil respiration measurements are conducted during the growing season.In tundra and boreal forest ecosystems,cumulative,non-growing season soil CO2 fluxes are reported to be a significant component of these syst... Most soil respiration measurements are conducted during the growing season.In tundra and boreal forest ecosystems,cumulative,non-growing season soil CO2 fluxes are reported to be a significant component of these systems' annual carbon budgets.However,little information exists on soil CO2 efflux during the non-growing season from alpine ecosystems.Therefore,comparing measurements of soil respiration taken annually versus during the growing season will improve the accuracy of estimating ecosystem carbon budgets,as well as predicting the response of soil CO2 efflux to climate changes.In this study,we measured soil CO2 efflux and its spatial and temporal changes for different altitudes during the non-growing season in an alpine meadow located in the Qilian Mountains,Northwest China.Field experiments on the soil CO2 efflux of alpine meadow from the Qilian Mountains were conducted along an elevation gradient from October 2010 to April 2011.We measured the soil CO2 efflux,and analyzed the effects of soil water content and soil temperature on this measure.The results show that soil CO2 efflux gradually decreased along the elevation gradient during the non-growing season.The daily variation of soil CO2 efflux appeared as a single-peak curve.The soil CO2 efflux was low at night,with the lowest value occurring between 02:00-06:00.Then,values started to rise rapidly between 07:00-08:30,and then descend again between 16:00-18:30.The peak soil CO2 efflux appeared from 11:00 to 16:00.The soil CO2 efflux values gradually decreased from October to February of the next year and started to increase in March.Non-growing season Q10 (the multiplier to the respiration rate for a 10℃ increase in temperature) was increased with raising altitude and average Q10 of the Qilian Mountains was generally higher than the average growing season Q10 of the Heihe River Basin.Seasonally,non-growing season soil CO2 efflux was relatively high in October and early spring and low in the winter.The soil CO2 efflux was positively correlated with soil temperature and soil water content.Our results indicate that in alpine ecosystems,soil CO2 efflux continues throughout the non-growing season,and soil respiration is an important component of annual soil CO2 efflux. 展开更多
关键词 non-growing season soil CO2 efflux spatial and temporal variation alpine meadow Q10 values Qilian Mountains
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大狼毒入侵对香格里拉山地草甸土壤微生物特征的影响
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作者 杨欣 肖雪 +6 位作者 牛琼梅 肖伟 段蕊 次旺 侯晓晗 初晓辉 单贵莲 《草地学报》 北大核心 2025年第3期778-788,共11页
大狼毒(Euphorbia jolkinii)是滇西北山地草甸广泛分布的毒害草,其恣意扩张对当地草地生态系统造成了严重影响。为探明大狼毒扩张对滇西北退化山地草甸土壤微环境的影响,本研究根据大狼毒在退化草地群落中呈斑块状分布的特点,选取大狼... 大狼毒(Euphorbia jolkinii)是滇西北山地草甸广泛分布的毒害草,其恣意扩张对当地草地生态系统造成了严重影响。为探明大狼毒扩张对滇西北退化山地草甸土壤微环境的影响,本研究根据大狼毒在退化草地群落中呈斑块状分布的特点,选取大狼毒未入侵斑块、大狼毒低覆盖度斑块(大狼毒覆盖度为8.9%)、大狼毒高覆盖度斑块(大狼毒覆盖度为38.2%)3个区分度明显的斑块类型,取样测定不同斑块土壤样品的养分含量,分析大狼毒扩张对土壤微生物群落组成、结构和多样性的影响。结果表明,大狼毒扩张使土壤养分含量显著增加,大狼毒入侵斑块土壤全氮(Total nitrogen,TN)、土壤有机碳(Soil organic carbon,SOC)、全磷(Total phosphorus,TP)、微生物量碳(Microbial biomass carbon,MBC)、微生物量氮(Microbial biomass nitrogen,MBN)、微生物量磷(Microbial biomass phosphorus,MBP)、速效氮(Available nitrogen,AN)、速效磷(Available nitrogen phosphorus,AP)和速效钾(Available k,AK)含量显著增加(P<0.05)。大狼毒入侵显著改变了土壤细菌群落的组成和结构,显著提高了土壤细菌群落的多样性和真菌群落的丰富度(P<0.05),土壤细菌和真菌群落对大狼毒蔓延扩张的反应不一致。相关性分析表明MBN,TN与Acidobacteria,Actinobacteria呈显著正相关(P<0.05),MBN和TN是大狼毒扩张样地土壤微生物群落变化的主要驱动因素。本研究结果为了解滇西北山地草甸大狼毒入侵草地根际土壤微生物多样性及其土壤微生物群落的环境响应特征奠定基础。 展开更多
关键词 大狼毒 入侵 山地草甸 土壤养分 土壤微生物
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苔藓结皮对高寒草甸土壤养分及微生物群落结构的影响
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作者 寇伟良 杨文权 +6 位作者 李霄 刘家庆 蒋冰青 路昌涛 李佳静 李希来 寇建村 《草地学报》 北大核心 2025年第1期87-97,共11页
苔藓是高寒草甸中重要的植物群落组成部分。为探究苔藓结皮对高寒草甸土壤特性的影响,以高寒草甸不同坡度(平地、缓坡、陡坡)苔藓结皮土壤为研究对象,以没有苔藓结皮的土壤为对照,研究苔藓结皮对高寒草甸土壤养分和微生物群落结构的影... 苔藓是高寒草甸中重要的植物群落组成部分。为探究苔藓结皮对高寒草甸土壤特性的影响,以高寒草甸不同坡度(平地、缓坡、陡坡)苔藓结皮土壤为研究对象,以没有苔藓结皮的土壤为对照,研究苔藓结皮对高寒草甸土壤养分和微生物群落结构的影响。结果表明:苔藓结皮覆盖显著(P<0.05)提高了高寒草甸土壤中有机质(20.4%~100.7%)、硝态氮(64.9%~161.5%)、铵态氮(93.8%~236.1%)、速效钾(24.3%~50.7%)和全氮(47.0%~67.0%)等养分含量;提高了土壤中酸杆菌门(Acidobacteria)和绿弯菌门(Chloroflexi)的相对丰度,增加了土壤细菌群落的丰富度和多样性,降低了土壤中鞭毛菌门(Mortierellomycota)和坡地子囊菌门(Ascomycota)的相对丰度,降低了土壤真菌群落的丰富度和多样性;苔藓结皮覆盖后的高寒草甸土壤养分和微生物群落也受到坡度的影响,细菌多样性在平地中最高,缓坡地中多数土壤养分含量较高且真菌多样性也为最高。因此,苔藓结皮可以改善高寒草甸的土壤肥力和土壤微生物群落结构,在高寒草甸生态系统维持和演替中具有重要作用,这种作用和坡度有关。 展开更多
关键词 高寒草甸 苔藓结皮 土壤养分 微生物 群落结构
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纳帕海高寒退化草甸土壤细菌群落结构对氮添加的响应
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作者 孙煜佳 陆梅 +6 位作者 赵旭燕 冯峻 刘国庆 郭础鸟 王明柳 黄敏超 陈志明 《生态环境学报》 北大核心 2025年第2期233-246,共14页
为探明土壤细菌群落对氮沉降增加的响应机制,以纳帕海高寒退化草甸云雾薹草(Carex nubigena)群落土壤为研究对象,野外设置对照(0 g·m^(-2)·a^(-1))、低氮(5 g·m^(-2)·a^(-1))、中氮(10 g·m^(-2)·a^(-1))... 为探明土壤细菌群落对氮沉降增加的响应机制,以纳帕海高寒退化草甸云雾薹草(Carex nubigena)群落土壤为研究对象,野外设置对照(0 g·m^(-2)·a^(-1))、低氮(5 g·m^(-2)·a^(-1))、中氮(10 g·m^(-2)·a^(-1))和高氮(15 g·m^(-2)·a^(-1))等4种氮添加量的模拟试验,采用高通量测序测定土壤细菌群落组成及多样性,分析氮添加下植物和土壤环境变化对细菌群落的影响特征。结果表明,1)氮添加显著影响土壤细菌门属水平群落组成。随氮量增加,酸杆菌门、放线菌门、甲烷氧化菌门、芽单胞菌门、硝化螺旋菌门相对丰度先增后减;变形菌门、厚壁菌门相对丰度增加;绿弯菌门、粘菌门、拟杆菌门、疣微菌门相对丰度降低;在属水平上,酸杆菌属、芽单胞杆菌属、Vicinamibacter、RB41先增后减,微球菌属、黄杆菌属先减后增,Candidatus Solibacter增加。2)氮添加显著影响植物与土壤环境。随氮添加量增加,地上生物量增加而植物多样性降低;土壤速效钾、全氮、有机质、速效氮含量增加,全钾、pH降低;全磷、速效磷呈先减后增趋势。3)氮添加下植物变化通过影响土壤养分而间接调控土壤细菌,土壤环境变化则直接影响细菌群落。结论:氮添加主要通过改变植物多样性、土壤pH和土壤养分含量,直接或间接对土壤细菌产生影响。 展开更多
关键词 氮添加 高寒退化草甸 土壤细菌 多样性 群落结构 纳帕海
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Transformation and Availability of Various Forms of Zinc in Soils 被引量:2
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作者 ZOUBANG-JI MORUN-CANG 《Pedosphere》 SCIE CAS CSCD 1993年第1期35-44,共10页
The transformation and availability of various forms of Zn applied into a cinnamon soil and a carbonate meadow soil as well as the effects of fertilizer-P on them were studied by using the field experiment method and ... The transformation and availability of various forms of Zn applied into a cinnamon soil and a carbonate meadow soil as well as the effects of fertilizer-P on them were studied by using the field experiment method and chemically sequential extraction procedure. Zn added into the soils was found to be rapidly transformed into the various forms. In the cinnamon soil, the amount of Zn transformed into the carbonate bound form was the highest, and the carbonate bound form was proven by the analyses of intensity factor and capacity factor to be the primary available Zn pool.But in the carbonate meadow soil, the Zn transformed was relatively homogeneously distributed in the various forms though the amount of Zn transformed into the Mn-oxide bound form was relatively high, and the organically bound, Mn-oxide bound and amorphous Fe-oxide.bound forms were found to be the main available Zn pool. Fertilizer-P took part in the regulation and control of available Zn in the soils to a certain degree. In the carbonate meadow soil, application of P fertilizer probably aggravated Zn deficiency at low Zn rate, while it was favorable to the storage of available Zn in the case of high Zn rate. 展开更多
关键词 capacity factor carbonate meadow soil cinnamon soil intensity factor P effect
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增温对高寒沼泽草甸土壤团聚体稳定性及碳氮含量的影响
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作者 马群 白炜 +3 位作者 牟国旭 陈梦佳 马若冰 王一博 《草地学报》 北大核心 2025年第2期547-555,共9页
本研究以青藏高原风火山地区高寒沼泽草甸为研究对象,研究模拟增温对土壤团聚体及其碳、氮的影响,通过采取OTC增温小室模拟增温,设置对照(CK)、低增温(T1)、高增温(T2)三个处理,对土壤团聚体分布、平均重量直径(Mean weight diameter,M... 本研究以青藏高原风火山地区高寒沼泽草甸为研究对象,研究模拟增温对土壤团聚体及其碳、氮的影响,通过采取OTC增温小室模拟增温,设置对照(CK)、低增温(T1)、高增温(T2)三个处理,对土壤团聚体分布、平均重量直径(Mean weight diameter,MWD)、几何平均直径(Geometric mean diameter,GMD)及团聚体有机碳、全氮进行了测定与分析。结果表明:(1)高寒沼泽草甸土壤以大团聚体和微团聚体为主要组成部分,不同幅度增温处理使大团聚体和微团聚体在土壤中所占比例减少,导致土壤团聚体稳定性下降。(2)表层土壤中有机碳、全氮含量均高于其他土层,增温处理对土壤有机物质含量呈负面影响。(3)土壤团聚体稳定性与土壤有机碳、全氮含量呈显著正相关关系(P<0.05),土壤稳定性越好,土壤团聚体对于有机碳、全氮的物理保护作用越强。综上,气温升高会导致高寒沼泽草甸土壤稳定性降低,不利于土壤有机碳和全氮的积累。 展开更多
关键词 高寒沼泽草甸 模拟增温 土壤团聚体 有机碳 全氮
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青藏高原典型高寒退化湿地与草甸土壤有机碳现状研究
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作者 唐仕芳 苟小林 +5 位作者 补春兰 杨廷勇 李森 罗海霞 涂卫国 罗雪梅 《安徽农业科学》 2025年第3期70-76,共7页
青藏高原湿地巨大的土壤碳库对区域碳安全具有重要意义,但不同气候区退化的典型高寒湿地土壤有机碳损失现状研究相对缺乏。研究选择青藏高原不同气候区的典型高寒湿地和草甸,分析退化后0~10 cm土壤层和>10~20 cm土壤层有机碳损失现状... 青藏高原湿地巨大的土壤碳库对区域碳安全具有重要意义,但不同气候区退化的典型高寒湿地土壤有机碳损失现状研究相对缺乏。研究选择青藏高原不同气候区的典型高寒湿地和草甸,分析退化后0~10 cm土壤层和>10~20 cm土壤层有机碳损失现状,探讨土壤碳库恢复潜力与对策。研究结果表明:半湿润区的长沙贡玛区域至半干旱区的青海湖流域表层土壤(0~20 cm)有机碳含量随着降水量与海拔降低而减小(P<0.05),长沙贡玛湿地至青海湖湿地土壤层(0~10 cm)有机碳含量分别由372.07 g/kg降低至64.41 g/kg,差异显著(P<0.05);严重的退化导致半湿润区和半干旱区湿地与草甸土壤中有机碳大量损失,长沙贡玛区域和若尔盖区域的退化湿地和草甸表层土壤(0~20 cm)有机碳损失率约90%,而青海湖流域的退化湿地和草甸表层土壤(0~20 cm)有机碳损失率超过50%。尽管高寒湿地和草甸进行生态恢复以重新构建土壤碳库的潜力较大,但现有研究并不能完全满足高寒湿地和草甸生态恢复的需求,未来建议从材料、生物等因子综合构建恢复措施,并且加强生态系统恢复与生态系统服务间的平衡关系研究。 展开更多
关键词 青藏高原 湿地 草甸 退化 土壤有机碳 恢复潜力 气候区
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Influences of Soil Physical Properties on Water-Supplying Capacity 被引量:1
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作者 ZHAOBINGZI XUFUAN 《Pedosphere》 SCIE CAS CSCD 1997年第4期367-374,共8页
The water-supplying capacity of two agricultural soils, red soil in Jiangxi Province and meadow soil in Henan Province, was assessed mainly using physical investigations. The reticulated mottting horizon in the red so... The water-supplying capacity of two agricultural soils, red soil in Jiangxi Province and meadow soil in Henan Province, was assessed mainly using physical investigations. The reticulated mottting horizon in the red soil was a horizon limiting roots distribution due to its high density and hardness in structure and low pH (pH 5.05). The resistance of the red soil to drought hazard was poor because of its low water-supply capacity and poor hydraulic conductivity. The meadow soil had superior profile infiltration to that of the red soil and great available water-storage capacity) which resulted in low run-off loss, especially in the wheat-growth season. It was difficult for water stored in the deep layers of the meadow soil to reach the surface due to the low unsaturated hydraulic conductivity of its clay-rich horizon in subsoil. However, water stored in deep layers was still available because the roots could extend to the deep layers due to the relatively low density in soil structure. 展开更多
关键词 meadow soil red soil soil physical properties water-supplying capacity
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小五台山两种天然植被的土壤理化性质及质量评价
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作者 边琦 张晓飞 +2 位作者 张树梓 李联地 任启文 《东北林业大学学报》 北大核心 2025年第3期63-70,共8页
为明晰山地地区不同天然植被土壤理化性质差异,以小五台山华北落叶松(Larix principis-rupprechtii)天然林和亚高山草甸为研究对象,分析不同土壤深度(0<h≤20 cm、20 cm<h≤40 cm、40 cm<h≤60 cm)和海拔高度梯度(2422~2425 m... 为明晰山地地区不同天然植被土壤理化性质差异,以小五台山华北落叶松(Larix principis-rupprechtii)天然林和亚高山草甸为研究对象,分析不同土壤深度(0<h≤20 cm、20 cm<h≤40 cm、40 cm<h≤60 cm)和海拔高度梯度(2422~2425 m、2636~2641 m)时,土壤密度、总孔隙度、毛管孔隙度、含水量、毛管持水量、最大持水量、田间持水量以及有机质、全氮、全磷、全钾、碱解氮、速效磷、速效钾质量分数等14项理化指标的差异,并利用土壤质量指数对其土壤质量进行综合评价。结果表明:除土壤密度外,华北落叶松天然林土壤的总孔隙度、毛管孔隙度、土壤含水量、毛管持水量、最大持水量、田间持水量均高于草甸,但差异不显著。海拔梯度升高,不同土层深度的土壤物理性质差异显著。华北落叶松天然林土壤的有机质、全氮、碱解氮质量分数均高于草甸,不同土层间差异显著,“表聚”现象明显。海拔梯度升高,两种天然植被土壤速效磷、全钾、速效钾的质量分数呈降低趋势,但草甸土壤全磷的质量分数显著提高。土壤质量综合评价结果表明:华北落叶松天然林的土壤质量优于亚高山草甸,天然林对土壤质量的改善作用更加明显。植被表层土壤质量随海拔高度上升而增加,全氮是影响该区域两种天然植被土壤质量的关键因素。 展开更多
关键词 山地生态系统 华北落叶松天然林 亚高山草甸 土壤理化性质 土壤质量评价
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