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51.
A field-based system used to quantify the response of acid grassland to reduced atmospheric nitrogen and sulphur deposition, and to investigate the effects of elevated soil temperature on acid grassland development is described. The system is based on 12 retractable roofs, covering undisturbed experimental plots of acid grassland and three controls. Nine roofs are used to exclude natural precipitation and three roofs used to retain emitted IR radiation at night. An irrigation system has been developed to simulate natural precipitation, allowing for the application of specific treatment regimes of ambient, reduced nitrogen and reduced nitrogen/sulphur deposition beneath the nine rain exclusion plots. Plant, soil parameters, leachate chemistry and gaseous fluxes are being monitored and initial results on soil water chemistry are described. Warming appeared to enhance nitrate concentrations in soil water but this was not sustained beyond the first year of treatment. In contrast, the deposition reduction treatments decreased soil water nitrate concentrations within a few weeks of reducing deposition. This was not observed for other solutes such as sulphate or ammonium suggesting a more direct link between deposition of nitrate and leaching losses.  相似文献   
52.
放牧与围栏羊草草原土壤呼吸作用及其影响因子   总被引:24,自引:5,他引:19  
基于静态箱式法连续2a的测定资料,比较分析了内蒙古典型羊草草原放牧与围栏样地土壤呼吸作用及其与各影响因子的关系.结果表明:①围栏内外土壤呼吸作用日、季动态差异不大,但围栏样地土壤呼吸速率明显高于放牧样地,其平均值分别是219.18 mg·(m2·h)-1和111.27 mg·(m2·h)-1,围栏样地土壤呼吸作用的升高可能与地下生物量增加和土壤水分改善有关;②对影响土壤呼吸作用的因子分析表明,放牧使土壤水分和相对湿度的影响明显降低,而对气温、大气CO2浓度和光合有效辐射的影响并不大,且放牧使羊草净光合速率的影响明显增加,而对气孔导度和胞间CO2浓度影响不大;③围栏样地土壤呼吸作用与各影响因子的相关性从大到小依次为土壤水分、净光合速率、气温、相对湿度、大气CO2浓度、胞间CO2浓度、气孔导度和光合有效辐射,其中土壤水分和气温是影响土壤呼吸作用的主要环境因子,净光合速率是主要的生物因子.尽管放牧改变了土壤呼吸速率,但土壤呼吸作用各影响因子的排列顺序基本上没有改变,只是发生了量的变化.  相似文献   
53.
持续放牧和围封对科尔沁退化沙地草地碳截存的影响   总被引:33,自引:4,他引:29  
研究了科尔沁退化沙地草地持续放牧和围封恢复下土壤-植物系统的碳(C)贮存,以揭示草地管理对C动态的影响.结果表明,0~15cm土壤OC和植物系统贮存的C(包括初级生产固定的C,立枯和地表凋落物C和根系C)贮量大小为:围封10年草地(584g·m-2和309 g·m-2)>围封5年草地(524g·m-2和146g·m-2)>持续放牧草地(493g·m-2和95 g·m-2).在围封10年,围封5年和持续放牧草地中,0~15cm土壤贮存C分别占各自土壤-植物系统C的65.3%,78.2%和83.9%.在风蚀严重的科尔沁沙地,持续放牧对植被,土壤及其周围环境有极严重的恶化作用.采取围封恢复措施后,植被恢复和凋落物积累使土壤免遭风蚀,也显著增加了土壤有机质的输入,因而显著作用于大气C的截存.但排除家畜放牧的长期围封使植物C向土壤C的再循环受到限制,截存的大部分C以凋落物的形式积存在土壤表面,需进一步深入研究围封的时间尺度.研究结果表明,退化沙地草地在采取有效的保护措施后,可以由C源变为C汇.  相似文献   
54.
This paper aimed to confirm the hypothesis that rates of ammonification and net mineral-N production in soils under grass in summer are low and this, rather than nitrate uptake by plants, reduces mineral leaching from soils in summer. Six sets of soil samples were collected from under mown grass on the University of York campus in the UK. Samples were taken from two depths in late summer (August) and late autumn (November) to compare seasonal differences in N species transformations when field-moist soils were incubated for a week at ambient outdoor temperatures after prior removal of vegetation. Ammonification and net mineral-N production rates were low in August in spite of warm temperatures. Net mineral-N production rates were also low in November. The results agreed with those of an earlier study in a different year after considering weather differences between years. They support the hypothesis that litter accumulated over autumn/winter will be minimally mineralised and retain N before the temperature rises in spring. The study shows the merit of measuring concentrations of mineral-N species in both fresh soils and soils incubated at ambient outdoor temperatures after removing plant material to eliminate plant N uptake effects. The results suggest that soil C% and N% are more important than soil C:N ratio alone in understanding controls on N transformations.  相似文献   
55.
Desertification has emerged as a serious threat to the alpine meadows of Northwest Sichuan in recent decades. Artificial vegetation had certain effects on desertification recovery, while how the CO2 flux changed and its reasons are still unclear. During the growing season in 2016 (i.e., from July to September), we selected the desertified alpine meadows with different recovery degrees, including the early stage of restoration, the middle stage of restoration, the late stage of restoration, and control (the unrecovered desertification meadow) as four transects. CO2 flux was measured by the instrument LI-8100, and the microenvironment factors that affected CO2 flux changes were analyzed. The results showed that the carbon sequestration function of desertified alpine meadows gradually increased with the degree of recovery. Net ecosystem exchange (NEE) were -1.61, -3.55, and -4.38 μmol m-2 s-1 in the early, mid-term, and late transects, respectively, and the most dramatic changes occurred from the early stage to mid-term stage, increasing by 120.50%. Both ecosystem respiration (ER) and soil respiration (SR) were enhanced significantly with restoration (P < 0.05). In mid or late July, NEE, ER, and SR reached their maximum values, and thereafter, the indicators varied to near zero (P < 0.05). During the whole growing season, the daily dynamic in CO2 flux for the control alpine meadow was mild and retained the trend of continuous release all day, but that in the desertified alpine meadow was a single peak pattern. Moreover, with restoration process, the peak of CO2 flux increased and reached a peak in the late stage of the recovery process. The regression analysis showed that there was a significant positive correlation between CO2 flux and vegetation coverage, aboveground biomass, and soil moisture (0-5 cm) (P < 0.01), and a weak correlation with 0-5-cm soil temperature (P < 0.01). This indicates that topsoil moisture (5 cm) is a more significant factor for CO2 flux than topsoil temperature during the growing season in the restoration of desertified alpine meadows in Northwest Sichuan. In general, the vegetation recovery significantly improved the carbon-sequestration ability of the desertified alpine meadows during the growing season in Northwest Sichuan, and at the middle stage of restoration, the carbon-sequestration ability improved significantly due to vegetation restoration and increase in topsoil (0-5 cm) moisture. © 2018 Science Press. All rights reserved.  相似文献   
56.
论文利用2013—2014年的MOD13Q1数据、草地地上生物量鲜重实测数据、多年降水数据和统计年鉴数据,建立了祁连县草地地上生物量与牧草鲜重的遥感监测模型以及不同季节放牧草场的理论载畜量模型,分析了天然草地草产量年内动态变化与载畜量平衡状况并对草畜调控进行模拟。结果表明:MODIS增强型植被指数EVI的指数函数可以较好地模拟祁连县草地地上生物量鲜重,精度达到71%;年内牧草生长呈单峰曲线,7月草地可食产量达到峰值 2 322.61 kg/hm2,12月最低,为702.06 kg/hm2;祁连县冷暖季平均可食鲜草产量分别为1 728.14和1 604.70 kg/hm2,年可食鲜草总量分别达到7.74×108和7.82×108 kg;暖季、冷季和全年的理论载畜量分别为1.517 8、0.637 0和0.931 4羊单位/hm2,暖季、冷季和全年的超载率分别为101.70%、261.19%和149.22%;保持现有的家畜数量,需在暖季草场和冷季草场分别补饲牧草0.36×108 和7.17×108 kg;保持现有草场,则暖季草场和冷季草场分别需要减6.68×104和53.64×104羊单位;暖季不进行补饲,冷季草场家畜在减少40%的情况下,依旧需要补饲1.17×108 kg。  相似文献   
57.
20世纪90年代,青藏高原地区开始推行草地承包到户制度,但因种种原因,草地承包落实并不彻底,出现了单户利用和联户利用共存的局面。两种利用方式产生的原因及各自对社会-生态系统的影响引起了学术界的高度关注,已有众多研究人员对此问题进行了深入研究。论文通过对国内外相关文献的分析和总结,对这一研究领域中所取得的主要进展进行了回顾,并凝练出其中存在的主要问题,如对单户利用正面影响和对联户利用负面影响的认识不足等。在此基础上,有针对性地指出了未来研究应予以加强的几个方面,尤其需加强单户和联户利用的实证对比研究。  相似文献   
58.
海河流域草地生态系统服务功能及其价值评估   总被引:4,自引:0,他引:4  
草地生态系统为人类提供了畜产品和生命支持两个方面的多种服务功能,但人们常关注产品提供功能而忽视生命支持功能。研究采用联合国千年生态系统评估框架,构建了海河流域草地生态系统服务功能的评估指标体系,并以2005年为基准年,运用市场价值法、影子价格法等多种方法对海河流域草地生态系统进行经济价值评估。结果表明,海河流域草地面积为6.67×1010 m2,提供产品、固碳、保持土壤、净化环境等8项服务功能的总价值为2 216.28×108元,单位面积价值为3.32元/(m2·a)。其中,提供产品的价值量最大,占总价值的31.3%,其次是固碳和营养物质保持功能的价值,分别占总价值的26.8%、22.2%。海河流域草地生态系统除了具有重要的产品提供功能外,固碳、营养物质保持等生命支持功能的巨大经济价值也不容忽视,平衡兼顾草地生态系统的产品提供功能和生命支持功能有助于促进海河流域经济社会发展与生态保护的协调。  相似文献   
59.
大气污染对石灰质文物的风化影响及防护新材料   总被引:1,自引:0,他引:1  
综述了大气污染对石灰质文物风化影响的研究进展,涉及大气中气体污染物、大气中酸性降水、大气中的气溶胶。文章介绍了目前开发的防护新材料,主要包括有机氟聚合物材料、纳米材料和仿生材料,并指出开发未来新型防护材料的方向是寻找安全生物钙化菌和开发与石灰质文物相匹配的新型保护材料。  相似文献   
60.
选取了海北高寒草甸、那曲高寒草原和当雄高寒湿地3种典型高寒草地生态系统类型为研究对象,采集了表层0~10 cm土壤,在实验室内进行可控温度下的碳矿化培养实验。结果表明,青藏高原土壤碳矿化在不同高寒草地类型间存在显著差异(P≤0.05)。在较低的温度下,高寒湿地土壤的碳矿化速率显著低于高寒草甸土壤,而温度在15℃左右时,高寒湿地土的碳矿化速率略高于高寒草甸土壤,当温度处于较高的水平时(〉20℃),高寒湿地土壤碳矿化速率远高于高寒草甸土壤,高寒湿地土壤碳矿化的Q10显著大于高寒草甸。无论是低温还是较高的温度,高寒草原土壤碳矿化速率最低,数值范围也最窄。高寒草甸和高寒湿地土壤碳矿化均受温度的显著影响(P≤0.05),其速率均跟温度呈现一级指数函数方程关系,而高寒草原土壤碳矿化速率与温度间未呈现明显的函数关系,但不同温度间的土壤碳矿化速率存在显著差异。氮素输入对高寒草甸和高寒湿地土壤碳矿化的影响不明显,但显著促进了高寒草原土壤碳矿化作用。  相似文献   
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