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991.
不同林型立地土壤水分性状及其持水能力的比较   总被引:5,自引:0,他引:5  
对辽宁省北票县刺槐-油松混交林、刺槐、油松纯林及无林地土壤水分的物理性质和持水特性进行了测定。结果表明:刺槐-油松混交林的土壤孔隙状况、机械组成、持水性能、渗透性能和储水量均明显优于无林地和2种纯林。刺槐和油松纯林的各项指标均明显优于无林地,刺槐和油松纯林的各项指标处于相近水平。综合评价表明:在持水能力方面,以上3种林...  相似文献   
992.
沙米(Agriophyllum squarrosum)、沙蒿(Artemisia sphaerocephala)和油蒿(Artemisia ordosica)分别是腾格里沙漠南缘不同植被演替阶段的3个优势物种,2009年5~6月在大田盆栽条件下,设计了2种土壤类型和0 cm,1 cm,2 cm,3 cm,4 cm,6 ...  相似文献   
993.
以内蒙古克什克腾旗西部的典型草原为研究对象,根据对草原利用强度的不同,将其划分三个不同区域,研究了各区域土壤中微生物数量、微生物生物量和土壤呼吸强度的季节动态以及利用强度对他们的影响.结果表明:微生物数量、微生物生物量以及土壤的呼吸作用强度均有较明显的季节性变化,且峰值都出现在8月份.三者之间具有极显著的正相关关系;轻...  相似文献   
994.
河西走廊中段干旱荒漠区土壤水热状况初步分析   总被引:2,自引:0,他引:2  
通过对位于干旱荒漠区的张掖国家气候观象台土壤温湿度、土壤温度梯度、土壤导热率分析,结果表明:该地区土壤温度年变化、日变化较明显,受辐射变化影响大;土壤湿度年变化、日变化不明显,受降水影响较大.不管冬、春、夏季,土壤温度在晴天日变化较明显,但在雨(雪)天,日变化不明显.土壤湿度在晴天和雨(雪)天日变化均不明显,对降水有一...  相似文献   
995.
干旱胁迫下砂生槐、锦鸡儿的生理生化特性与抗旱性   总被引:4,自引:1,他引:3  
以西藏半干旱区的两种豆科灌木为研究对象,采用盆栽控水干旱胁迫手段,比较和分析了砂生槐、矮锦鸡儿在持续水分胁迫条件下的生理响应。结果表明:随着干旱胁迫时间推移,土壤含水量不断下降,2种灌木体内水分饱和亏缺值均呈上升趋势,从上升速率和变化情况来看,砂生槐的叶片保水能力优于矮锦鸡儿;叶绿素a+b值和叶绿素a/b值综合比较结果...  相似文献   
996.
以黑米和牛奶为主要原料,研制出集黑米和酸奶的保健功能于一体的新型保健饮料——黑米发酵乳饮料。采用正交试验筛选出最优组合。结果表明,黑米发酵乳饮料的最佳质量配比为:牛奶添加量55%、黑米添加量6%、蔗糖添加量4.5%。制备该黑米乳饮料的最佳发酵工艺条件为:保加利亚乳杆菌和嗜热链球菌混合菌种接种量3.5%、发酵时间5.5 h、温度4 2℃。  相似文献   
997.
封育措施是恢复植被、改良土壤性质的重要措施。文中以科尔沁沙地小叶锦鸡儿群落为研究对象,主要研究不同封育年限的沙地小叶锦鸡儿群落对土壤养分、土壤含水量、土壤紧实度、微生物生物量C、N、P含量等土壤性质的改良作用。结果表明,封育措施可以从土壤养分、土壤水分、土壤紧实度和土壤微生物等方面全面改良土壤,尤其是对表层土壤(0-10cm)的改良效果尤其明显。  相似文献   
998.
Both capacitive indicators derived from the water retention curve and dynamic measurements of the flow‐weighted mean pore radius, R0, were used to assess the soil physical quality of two agricultural areas (cropland and olive orchard) and two natural areas (grassland and managed woodlot plantation) potentially subject to soil degradation. The overall idea of the study was to investigate whether a dynamic indicator quantitatively derived from hydraulic conductivity measurements could be used to supplement the traditionally applied capacitive indicators retrieved from water retention measurements. According to the available criteria, only the surface layer of the cropland site showed optimal soil physical quality. In the grassland and woodlot sites, the physical quality was deteriorated also as a consequence of compaction because of grazing. Overall, the physical quality was better in tilled than nontilled soils. The optimal soil in terms of capacitive indicators had hydraulic conductivity close to saturation that was intermediate among the different land uses, and it remained 1·3–1·9 times higher than that observed in the natural sites even when the largest pores emptied. A depth effect on R0 was observed only when larger macropores were activated. It was suggested that water transmission parameters are more affected by changes in large pore domain. The plant available water content and Dexter's S‐index showed inverse statistically significant regressions with R0. The empirical relationships were physically convincing given that, at increasing R0, the contribution of macropores increases, water is transmitted faster below the root zone and the soil's ability to store water is reduced. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   
999.
Land degradation is recognized as a major environmental problem in rainfed fruit orchards on the Chinese Loess Plateau. Six treatments were used to investigate surface runoff and soil moisture by means of simulated rainfall experiments: (i) a control (clean cultivation) (CC); (ii) strip cock's foot (Dactylis glomerata L.) cover (SCF); (iii) strip crown vetch (Coronilla varia L.) cover (SCV); (iv) strip bird's foot trefoil (Lotus corniculatus L.) cover (SBF); (v) strip white clover (Trifolium repens L.) cover (SWC); and (vi) complete white clover cover (WCC). The time to runoff was significantly longer under WCC than under other treatments (p < 0·05). The total runoff volume and sediment yield were significantly greater under CC than under the vegetation cover treatments (p < 0·05). The mean infiltration rate under WCC and CC was the largest and lowest and differed significantly from that under other treatments (p < 0·05). The change of soil water storage was the largest under WCC and the least under CC. The soil moisture was significantly greater under SCF than under other treatments (p < 0·05). Treatment SCF seemed to be the best groundcover for rainfed sloping jujube orchards on the Chinese Loess Plateau. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   
1000.
Understanding spatial and temporal patterns in land susceptibility to wind erosion is essential to design effective management strategies to control land degradation. The knowledge about the land surface susceptible to wind erosion in European contexts shows significant gaps. The lack of researches, particularly at the landscape to regional scales, prevents national and European institutions from taking actions aimed at an effective mitigating of land degradation. This study provides a preliminary pan‐European assessment that delineates the spatial patterns of land susceptibility to wind erosion and lays the groundwork for future modelling activities. An Index of Land Susceptibility to Wind Erosion (ILSWE) was created by combining spatiotemporal variations of the most influential wind erosion factors (i.e. climatic erosivity, soil erodibility, vegetation cover and landscape roughness). The sensitivity of each input factor was ranked according to fuzzy logic techniques. State‐of‐the‐art findings within the literature on soil erodibility and land susceptibility were used to evaluate the outcomes of the proposed modelling activity. Results show that the approach is suitable for integrating wind erosion information and environmental factors. Within the 34 European countries under investigation, moderate and high levels of land susceptibility to wind erosion were predicted, ranging from 25·8 to 13·0 M ha, respectively (corresponding to 5·3 and 2·9% of total area). New insights into the geography of wind erosion susceptibility in Europe were obtained and provide a solid basis for further investigations into the spatial variability and susceptibility of land to wind erosion across Europe. © 2014 The Authors. Land Degradation and Development published by John Wiley & Sons, Ltd.  相似文献   
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