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71.
水源涵养是评价陆地生态系统服务功能的重要指标,然而学界对水源涵养功能概念和计算方法仍存在诸多争论。这一方面说明水源涵养功能评估具有重要的现实意义,同时也说明其概念的复杂性和模糊性,亟需从生态学和水文学的基本理论出发,厘清水源涵养功能概念的内涵和评估方法,促进科学决策和有效管理。研究水源涵养功能时,生态学家更关注陆地生态系统的蓄水能力(Smax),而水文学家更关注流域的产流量(Q),两者均具有合理性,但各有侧重,若不分别辨析,极易造成概念混淆。理论和数据分析表明,蓄水能力和产流量虽然联系紧密,但概念完全不同。陆地生态系统的Smax决定了流域对降水的分配:即蒸散发(绿水)和Q(蓝水),Smax和Q在降水量一定的情况下往往存在此消彼长的关系。研究发现生态系统的根区蓄水能力(SRmax)是联系绿水和蓝水的核心要素,是水源涵养功能评估的关键变量。大尺度根区蓄水能力主要由气候决定,可借鉴工程水文中设计水库的累积曲线法,根据生态系统用水的生存策略通过气候反演。最后,本文提出3点建议:(1)在实践中分别评估生态系统的绿水和蓝水涵养功能;(2)进一步全面考虑冰川积雪、地下水等多要素的水源涵养功能;(3)...  相似文献   
72.
以福建省南平市王台镇溪后村安曹下19年生和91年生杉木人工林为研究对象,对其1~5级细根的形态及呼吸特征进行了比较研究。结果表明:2个林分细根直径、根长、组织密度随序级升高逐渐增大,比根长及比根呼吸随序级升高则减小;2个林分细根仅在4级根之间和5级根之间的直径以及5级根之间的比根呼吸具有显著差异(P0.05)。方差分析表明林龄仅对细根直径有极显著影响(P0.01),对根长、比根长、组织密度及比根呼吸的影响均不显著;林龄和序级的交互作用对细根直径,比根长及比根呼吸有显著影响(P0.05,P0.01),对根长和组织密度的影响不显著;序级对两个林分细根直径、根长、比根长、组织密度及比根呼吸的影响均达到极显著水平(P0.01)。回归分析表明2个林分细根直径、根长、比根长、组织密度及比根呼吸与序级之间具有三次函数,指数函数,或者幂函数关系。  相似文献   
73.
Land use changes are known to alter soil organic carbon (SOC) and microbial properties, however, information about how conversion of natural forest to agricultural land use as well as plantations affects SOC and microbial properties in the Changbai Moun- tains of Northeast China is meager. Soil carbon content, microbial biomass carbon (MBC), basal respiration and soil carbon mineraliza- tion were studied in five selected types of land use: natural old-growth broad-leaved Korean pine mixed forest (NF); spruce plantation (SP) established following clear-cutting of NF; cropland (CL); ginseng farmland (GF) previously under NF; and a five-year Mongolian oak young forest (YF) reforested on an abandoned GF, in the Changbai Mountains of Northeast China in 2011. Results showed that SOC content was significantly lower in SP, CL, GF, and YF than in NF. MBC ranged from 304.4 mg/kg in CL to 1350.3 mg/kg in NF, which was significantly higher in the soil of NF than any soil of the other four land use types. The SOC and MBC contents were higher in SP soil than in CL, GF, and YF soils, yielding a significant difference between SP and CL. The value of basal respiration was also higher in NF than in SP, CL, GF, and YF. Simultaneously, higher values of the metabolic quotient were detected in CL, GF, and YF soils, indicat- ing low substrate utilization of the soil microbial community compared with that in NF and SP soil. The values of cumulative mineral- ized carbon and potentially mineralized carbon (Co) in NF were significantly higher than those in CL and GF, while no significant dif- ference was observed between NF and SP. In addition, YF had higher values of Co and C mineralization rate compared with GF. The results indicate that conversion from NF into agricultural land (CL and GF) uses and plantation may lead to a reduction in soil nutrients (SOC and MBC) and substrate utilization efficiency of the microbial community. By contrast, soils below SP were more conducive to the preservation of soil organic matter, which was reflected in the comparison of microbial indicators among CL, GF, and YF land uses. This study can provide data for evaluating soils nutrients under different land use types, and serve as references for the rational land use of natural forest in the study area.  相似文献   
74.
Soil respiration (Rs) is of great importance to the global carbon balance. Remote sensing of Rs is challenging because of (1) the lack of long-term Rs data for model development and (2) limited knowledge of using satellite-based products to estimate Rs. Using 8-years (2002–2009) of continuous Rs measurements with nonsteady-state automated chamber systems at a Canadian boreal black spruce stand (SK-OBS), we found that Rs was strongly correlated with the product of the normalized difference vegetation index (NDVI) and the nighttime land surface temperature (LSTn) derived from Moderate Resolution Imaging Spectroradiometer (MODIS) imagery. The coefficients of the linear regression equation of this correlation between Rs and NDVI × LSTn could be further calibrated using the MODIS leaf area index (LAI) product, resulting in an algorithm that is driven solely by remote sensing observations. Modeled Rs closely tracked the seasonal patterns of measured Rs and explained 74–92% of the variance in Rs with a root mean square error (RMSE) less than 1.0 g C/m2/d. Further validation of the model from SK-OBS site at another two independent sites (SK-OA and SK-OJP, old aspen and old jack pine, respectively) showed that the algorithm can produce good estimates of Rs with an overall R2 of 0.78 (p < 0.001) for data of these two sites. Consequently, we mapped Rs of forest landscapes of Saskatchewan using entirely MODIS observations for 2003 and spatial and temporal patterns of Rs were well modeled. These results point to a strong relationship between the soil respiratory process and canopy photosynthesis as indicated from the greenness index (i.e., NDVI), thereby implying the potential of remote sensing data for detecting variations in Rs. A combination of both biological and environmental variables estimated from remote sensing in this analysis may be valuable in future investigations of spatial and temporal characteristics of Rs.  相似文献   
75.
以河西走廊典型的荒漠绿洲新垦农田为研究对象,设置9个施肥处理(高量有机肥,M3;高量氮磷肥,NP3;低量氮磷肥+高量有机肥,NP1M3;低量氮磷钾肥,NPK1;中量氮磷钾肥,NPK2;高量氮磷钾肥,NPK3;低量氮磷钾肥+高量有机肥,NPK1M3;中量氮磷钾肥+中量有机肥,NPK2M2;高量氮磷钾肥+低量有机肥,NPK3M1),于2019—2020年7—8月采用LI-COR 8100对玉米农田土壤呼吸进行观测,分析土壤呼吸的变化、日动态及其主要影响因素。结果表明:(1)不同施肥处理,土壤呼吸速率M3>NP3>NPK1M3>NPK3M1>NPK2M2>NP1M3>NPK2>NPK3>NPK1,单施有机肥能显著提高土壤呼吸速率,较其他处理增长22.1%—41.4%。(2)不同施肥措施土壤呼吸日变化呈单峰曲线,峰值出现在13:00—16:00,土壤呼吸日变化主要受土壤温度变化的影响。(3)土壤温度和土壤湿度分别解释了土壤呼吸变化的24.2%—44.8%和7.7%—36.4%,土壤呼吸与土壤温度显著正相关,而与土壤湿度无显著相关性,不同施肥处理土壤呼吸温度敏感性系数Q10值1.419—1.600。(4)土壤呼吸与有机质、总氮、总碳、碱解氮存在显著正相关关系,施用有机肥使土壤有机质、总氮、总碳、碱解氮分别提升188.9%、80.5%、79.3%、147.0%,进而促进土壤呼吸,土壤呼吸与玉米产量无显著关系。不同的施肥措施会对土壤质量和土壤呼吸产生不同影响,有机肥和氮磷钾化肥的平衡施用,能够在提升土壤质量的同时减少碳排放,可在生产实践中采用。  相似文献   
76.
为了进一步丰富青藏高原东北部地区植被护坡工程植物选择,推动区内植被护坡工程实用性和观赏性兼顾发展。该项研究以青藏高原东北部观赏地被植物马蔺为研究对象,以青海省大通县朔北藏族乡至东峡镇之间区域为研究区,在野外植物分布特征和生长特征调查的基础上,结合单根拉伸试验和重塑根-土复合体三轴压缩试验,定量评价了野生马蔺植株和根系生长特征、单根抗拉特性以及根系对土体抗剪强度的增强效应。试验结果表明:马蔺主要分布在研究区内洪积扇、坡积裙和河漫滩等地貌单元,立地条件包括上述地貌单元内的林下坡地、田间、道旁、湿地、荒地等;通过选取两处试验区开展调查可知,马蔺平均株高、冠幅和植株密度分别为75.22±11.40 cm、106.09±25.62 cm和1.51±0.55 株/m2;马蔺标准株根系分布深度可达50 cm,主要分布在0~30 cm深度范围内,根幅约40~50 cm;马蔺根径为0.20~0.70 mm,单根抗拉力、抗拉强度和延伸率平均值分别为7.94±2.91 N,46.30± 11.06 MPa和54.17%±17.08%,随着根径的增大,单根抗拉力和单根抗拉强度分别呈幂函数增大和幂函数降低关系,单根极限延伸率随着根径的增大呈逐渐增大变化趋势,但二者之间未表现出相对显著性的关系;马蔺根系对土体黏聚力和内摩擦角均有增强作用,可分别显著增强0~30 cm和0~10 cm深度范围内土体黏聚力和内摩擦角,且对土体黏聚力的增强作用较为显著。该项研究成果对于选用观赏地被植物马蔺进行研究区坡面水土流失、浅层滑坡等地质灾害现象的生态防护工作,具有理论研究价值和实际指导意义。  相似文献   
77.
Soil moisture is highly variable both spatially and temporally. It is widely recognized that improving the knowledge and understanding of soil moisture and the processes underpinning its spatial and temporal distribution is critical. This paper addresses the relationship between near‐surface and root zone soil moisture, the way in which they vary spatially and temporally, and the effect of sampling design for determining catchment scale soil moisture dynamics. In this study, catchment scale near‐surface (0–50 mm) and root zone (0–300 mm) soil moisture were monitored over a four‐week period. Measurements of near‐surface soil moisture were recorded at various resolutions, and near‐surface and root zone soil moisture data were also monitored continuously within a network of recording sensors. Catchment average near‐surface soil moisture derived from detailed spatial measurements and continuous observations at fixed points were found to be significantly correlated (r2 = 0·96; P = 0·0063; n = 4). Root zone soil moisture was also found to be highly correlated with catchment average near‐surface, continuously monitored (r2 = 0·81; P < 0·0001; n = 26) and with detailed spatial measurements of near‐surface soil moisture (r2 = 0·84). The weaker relationship observed between near‐surface and root zone soil moisture is considered to be caused by the different responses to rainfall and the different factors controlling soil moisture for the soil depths of 0–50 mm and 0–300 mm. Aspect is considered to be the main factor influencing the spatial and temporal distribution of near‐surface soil moisture, while topography and soil type are considered important for root zone soil moisture. The ability of a limited number of monitoring stations to provide accurate estimates of catchment scale average soil moisture for both near‐surface and root zone is thus demonstrated, as opposed to high resolution spatial measurements. Similarly, the use of near‐surface soil moisture measurements to obtain a reliable estimate of deeper soil moisture levels at the small catchment scale was demonstrated. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   
78.
Root zone soil water content impacts plant water availability, land energy and water balances. Because of unknown hydrological model error, observation errors and the statistical characteristics of the errors, the widely used Kalman filter (KF) and its extensions are challenged to retrieve the root zone soil water content using the surface soil water content. If the soil hydraulic parameters are poorly estimated, the KF and its extensions fail to accurately estimate the root zone soil water. The H‐infinity filter (HF) represents a robust version of the KF. The HF is widely used in data assimilation and is superior to the KF, especially when the performance of the model is not well understood. The objective of this study is to study the impact of uncertain soil hydraulic parameters, initial soil moisture content and observation period on the ability of HF assimilation to predict in situ soil water content. In this article, we study seven cases. The results show that the soil hydraulic parameters hold a critical role in the course of assimilation. When the soil hydraulic parameters are poorly estimated, an accurate estimation of root soil water content cannot be retrieved by the HF assimilation approach. When the estimated soil hydraulic parameters are similar to actual values, the soil water content at various depths can be accurately retrieved by the HF assimilation. The HF assimilation is not very sensitive to the initial soil water content, and the impact of the initial soil water content on the assimilation scheme can be eliminated after about 5–7 days. The observation interval is important for soil water profile distribution retrieval with the HF, and the shorter the observation interval, the shorter the time required to achieve actual soil water content. However, the retrieval results are not very accurate at a depth of 100 cm. Also it is complex to determine the weighting coefficient and the error attenuation parameter in the HF assimilation. In this article, the trial‐and‐error method was used to determine the weighting coefficient and the error attenuation parameter. After the first establishment of limited range of the parameters, ‘the best parameter set’ was selected from the range of values. For the soil conditions investigated, the HF assimilation results are better than the open‐loop results. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   
79.
80.
INTRODUCTIONFromthe1990’s,thescallop,C.farreri,culturedinthenorthernChinaSea,deterioratedinsize,healthandoutputbecauseofhighstockingdensities,shortageofnaturalfoodanddiseases.Massmortalityof50%-90%occurredinJiaozhouBay,Qingdao,andSishiliwanBay,Yantai,fromJulyto…  相似文献   
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