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国家自然科学基金(41101081)

作品数:4 被引量:45H指数:3
相关作者:张鹏胡宜刚张志山徐冰鑫李刚更多>>
相关机构:中国科学院中国科学院大学更多>>
发文基金:国家自然科学基金中国科学院西部之光基金中国科学院西部行动计划项目更多>>
相关领域:农业科学生物学更多>>

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The effects of extreme rainfall events on carbon release from biological soil crusts covered soil in fixed sand dunes in the Tengger Desert, northern China被引量:4
2013年
In May to August of 2011, we assessed the effects of extreme rainfall (quantity and intensity) events on the carbon release from soils covered by different types of biological soil crusts (BSCs) in fixed sand dunes in the Tengger Desert, northern China. A Li-6400-09 Soil Chamber was used to measure the respiration rates of the BSCs immediately after the rainfall stopped, and continued until the respiration rates of the BSCs returned to the pre-rainfall basal rate. Our results showed that almost immediately after extreme rainfall events the respiration rates of algae crust and mixed crust were significantly inhibited, but moss crust was not significantly affected. The respiration rates of algae crust, mixed crust, and moss crust in extreme rainfall quantity and intensity events were, respectively, 0.12 and 0.41 μmolCO 2 /(m 2 ·s), 0.10 and 0.45 μmolCO 2 /(m 2 ·s), 0.83 and 1.69 μmolCO 2 /(m 2 ·s). Our study indicated that moss crust in the advanced succession stage can well adapt to extreme rainfall events in the short term.
Yang ZhaoXinRong LiZhiShan ZhangRongLiang JiaYiGang HuPeng Zhang
关键词:生物土壤结皮腾格里沙漠固定沙丘碳释放
露天煤矿排土场不同配置人工植被对草本植物物种多样性的影响被引量:18
2015年
2012年8—9月对黑岱沟露天煤矿北排土场乔木、乔木+灌木、乔木+草本(禾本科)、乔木+草本(豆科)和撂荒地5种人工植被配置条件下草本植物种类和数量进行了调查。结果表明:撂荒地的植物物种多度为181.00±12.52,显著高于其他植被配置条件的物种多度;撂荒地和乔木+草本(豆科)配置的植物物种丰富度最高,分别为4.50±0.95和4.78±0.87,显著高于其他植被配置条件的物种丰富度。植物物种多度、丰富度与土壤有机质和全氮呈正相关,与磷含量呈显著负相关。增加排土场浅层土壤有机质和全氮含量,控制土壤磷的输入是促进露天煤矿排土场植物物种多样性恢复的有效措施。促进排土场草本植物多样性恢复,应优先考虑种植能够明显改善土壤质量的物种,如豆科植物。
赵洋张鹏胡宜刚黄磊苏洁琼
关键词:排土场土壤有机质土壤全氮人工植被物种多样性
模拟增温对荒漠生物土壤结皮-土壤系统CO_2、CH_4和N_2O通量的影响被引量:22
2014年
目前,有关增温条件下荒漠生物土壤结皮(BSCs)-土壤系统与大气之间主要温室气体(CO2、CH4和N2O)通量变化的研究十分匮乏,以致很难准确地评估荒漠生态系统温室气体通量对气候变暖的响应与反馈的方向和程度。该文选择腾格里沙漠东南缘天然植被区由藻类、藓类以及二者混生的3种类型的BSCs覆盖土壤为研究对象,以开顶式生长室(OTC)为增温方式模拟全球变暖,采用静态箱-气相色谱法探究了2012年7月至2013年6月增温和不增温处理下CO2、CH4和N2O通量的变化特征。结果表明:增温和结皮类型对CO2、CH4和N2O通量没有显著影响。采样日期、结皮类型与采样日期,以及增温与结皮类型和采样日期的互作显著影响CO2和CH4通量,增温和采样日期互作显著影响CH4通量。BSCs-土壤系统的CO2、CH4和N2O年通量及其增温潜能在增温和不增温处理下的差异均不显著。CO2通量与5 cm深度的土壤温度呈显著的指数正相关关系,与10 cm深度的土壤湿度呈线性正相关关系;藓类、混生结皮的CH4通量与5 cm深度的土壤温度和10 cm深度的土壤湿度均呈显著的线性负相关关系;3种结皮类型的N2O通量与5 cm深度的土壤温度均无相关关系,藓类结皮的N2O通量与10 cm深度的土壤湿度呈显著的线性负相关关系。藓类结皮的CO2和CH4在增温和不增温两种处理下的通量差异与5 cm深度的土壤温度差异呈显著的负线性相关,藻类结皮N2O的通量差异与温度差异呈近似正相关关系(p=0.051)。以上结果说明:在全球变暖的背景下,荒漠BSCs-土壤系统主要温室气体通量不会有明显的变化,意味着荒漠生态系统温室气体的排放可能对气候变暖没有明显的反馈。
徐冰鑫胡宜刚张志山陈永乐张鹏李刚
关键词:生物土壤结皮荒漠模拟增温
The weak effects of fencing on ecosystem respiration,CH4,and N2O fluxes in a Tibetan alpine meadow during the growing season被引量:1
2017年
Fencing is the most common land-management practice to protect grassland degradation from livestock overgrazing on the Tibetan Plateau. However, it is unclear whether fencing reduces CO_2, CH_4, and N_2O emission. Here, we selected four vegetation types of alpine meadow(graminoid, shrub, forb, and sparse vegetation) to determine fencing effects on ecosystem respiration(Re), CH_4, and N_2O fluxes during the growing season. Despite increased average monthly ecosystem respiration(Re) for fenced graminoid vegetation at the end of the growing season, there was no significant difference between grazing and fencing across all vegetation types. Fencing significantly reduced average CH_4 uptake by about 50% in 2008 only for forb vegetation and increased average N_2O release for graminoid vegetation by 38% and 48% in 2008 and 2009,respectively. Temperature, moisture, total organic carbon, C/N, nitrate, ammonia, and/or bulk density of soil, as well as above-and belowground biomass, explained 19%~71% and 6%~33% of variation in daily and average Re and CH_4 fluxes across all vegetation types, while soil-bulk density explained 27% of variation in average N_2O fluxes. Stepwise regression showed that soil temperature and soil moisture controlled average Re, while soil moisture and bulk density controlled average CH_4 fluxes. These results indicate that abiotic factors control Re, CH_4, and N_2O fluxes; and grazing exclusion has little effect on reducing their emission—implying that climatic change rather than grazing may have a more important influence on the budgets of Re and CH_4 for the Tibetan alpine meadow during the growing season.
YiGang HuZhenHua ZhangShiPing WangZhiShan ZhangYang ZhaoZengRu Wang
关键词:FENCINGECOSYSTEMRESPIRATIONTIBETANALPINEMEADOW
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