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91.
藏北高原自然资源的利用与保护   总被引:3,自引:0,他引:3  
藏北高原面积约60万km2,海拔在4500m以上,为青藏高原的主体。其气候寒冷干燥,人迹稀少,以高寒草原为主的生态系统基本保存完好,其天然草地辽阔,各类可利用草地面积占土地总面积53%,为西藏最大牧区,适宜发展地毯毛羊--藏绵羊。这里栖居着许多青藏高原特有的国家一、二类保护动物及有一定经济价值动物资源。高原上湖泊众多,湖泊面积占全国湖泊总面积的1/4以上。其中许多盐湖盛产有工业开采价值的食盐、天然碱及硼、锂、钾等重要稀有元素,为我国主要矿盐产地和远景开发区。目前因草地生态脆弱和利用不当,已有4%草地退化,沙地面积扩大,野生动物栖居范围也趋缩小;少数盐矿产地环境有所污染,盐湖资源浪费较大。所以适度利用天然草地、保护野生动物和综合开发盐湖资源,防止自然生态环境的恶化乃是开发藏北高原生物矿产资源的重要战略措施。  相似文献   
92.
陕西省黄土崩塌隐患区宅基地选址方案研究   总被引:1,自引:0,他引:1  
在对黄土崩塌所造成的伤亡、损失及灾害成因的调查的基础上,结合对黄土地形地貌、颗粒结构、岩土特征和力学特性的研究分析,提出了在黄土高原区内黄土崩塌隐患区居民宅基选址应注意的问题,变被动防灾为主动预防,这对地处黄土高原区山西、陕西、甘肃等省的居民宅基选址具有重要的指导意义和参考价值。  相似文献   
93.
青藏高原典型高寒草甸区土壤有机碳氮的变异特性   总被引:2,自引:1,他引:1  
本研究应用地统计学的基本原理与方法(半方差分析)对青藏高原典型高寒草甸区0~10 cm土壤有机碳和全氮空间变异性进行了分析.结果表明,0~10 cm的土壤有机碳和全氮的平均含量分别为11.45 g·kg-1和1.02 g·kg-1,平均变异系数分别为0.23和0.21,反映出该植被区土壤肥力较为贫瘠.土壤有机碳和全氮随机因素的变异占总空间异质性变异的比率分别为44.7%和49.9%,变异尺度分别为210.9 m和200.1 m,随机因素的影响主要发生在采样尺度<10 m的范围之内.在该研究区域上土壤有机碳和全氮均表现出空间自相关因素大于随机因素的变异格局;在空间结构的变异上,由土壤内在属性如土壤矿物质、地形等空间自相关因素和人为因素如放牧及工程施工等对土壤表层的践踏引起的随机因素共同起作用,影响程度呈中等水平.  相似文献   
94.
黄土高原滑坡及其利用的探讨   总被引:5,自引:0,他引:5  
李昭淑 《灾害学》1990,(2):41-46
黄土高原滑坡是十分严重的自然灾害,往往能给人民生命财产造成极大损失,又是黄土高原严重水土流失的主要产沙方式。如何变害为利,利用滑坡天然聚湫以及利用滑坡机理,发展人工滑坡,促进水保、治理沟谷,发展农业生产是黄土高原研究的新课题。  相似文献   
95.
青藏高原东部几种自然土壤放线菌的生态分布   总被引:11,自引:0,他引:11  
采用常规方法研究了青藏高原东部几种自然土壤中放线菌区系及与土壤养分的关系.结果表明①供试土壤有机质、全氮、速效氮、速效钾及速效磷含量变异很大,其变异系数分别为71.9%,60.8 %,65.8%,53.5 %及130.6%.pH差异很小,平均值为8.16,变异系数为6.5 %.②供试土壤放线菌数量n(cfu)=(8.2~1 472.7)×104 g-1.放线菌组成以链霉菌为主,其次为小单孢菌,二者分别占土壤放线菌总数的41.7%~90.9%及 0~53.6%,其平均值和变异系数分别为82.2%和18.0%及10.3%和154. 2 %.沼泽土中小单孢菌占放线菌总数的53.6%,盐化土中无小单孢菌.高山草甸土、森林棕褐土、黑钙土及灰钙土中分别出现链孢囊菌属与马杜拉菌属、间孢囊菌属、诺卡氏菌属及链孢囊菌属.③在链霉菌属中,可划分10个类群,其中白孢类群、灰褐类群、金色类群、粉红孢类群为优势类群,分别占链霉菌总数的23.3 %~57.0%, 2.7%~32.8 %,5.8%~63.7 及2.3% ~24.6%,其次为淡紫灰类群和灰红紫类群,6个类群共占链霉菌总数的70.3%~100%.盐化土和黑钙土分别为链霉菌数量与类群最少和最多的土壤生态体系.④供试土壤按植被、土壤形成条件及土壤性质分为高山草甸土、森林棕褐土、黑钙土、灰钙土、栗钙土、盐化土、风沙土及沼泽土8种生态类型、盐化土、风沙土和沼泽土3种生态型中放线菌的生物多样性较其余5种生态型差. 表5 参16  相似文献   
96.
Ammonia oxidation, the first and rate-limiting step of nitrification, is mainly performed by ammonia-oxidizing archaea (AOA) and ammonia-oxidizing bacteria (AOB). However, the activities of AOA and AOB in soil and their relative contribution to ammonia oxidation are unclear, and whether there is a significant correlation between the quantity of AOA and AOB and the ammonia oxidation rate is also controversial. In this study, quantitative PCR combined with acetylene (C2H2) and 1-octyne inhibition methods were used to determine the quantity and activity of AOA and AOB in wheat, highland barley, and oilseed rape soils in Nyingchi, Lhatse, Sangzhuzi, and Sangri counties on the Qinghai-Tibet Plateau. The results showed that the quantity of AOB ((2.34 ± 0.84) ×105 - (2.65 ± 1.07) ×106 copies g-1 dry soil) was significantly higher than that of AOA ((0.20 ± 0.10) ×104 - (4.02 ± 0.39) ×104 copies g-1 dry soil) in all the soil samples. Soil pH was the key factor affecting the quantity of AOB, and the total phosphorus and ammonium nitrogen in soil were the key factors affecting the quantity of AOA. The rates of ammonia oxidation in the farmland soils of Lhatse (2.42 ± 0.73 mg kg-1 d-1) and Sangzhuzi (3.24 ± 1.15 mg kg-1 d-1) were significantly higher than those in the soils of Nyingchi (1.17 ± 0.43 mg kg-1 d-1) and Sangri counties (0.88 ± 0.57 mg kg-1 d-1). The rates of ammonia oxidation in the farmland soils of Lhatse and Sangzhuzi were dominated by AOB, while those in the farmland soils of Nyingchi and Sangri counties were dominated by AOA. For crops, the ammonia oxidation rates of wheat and oilseed rape soils in all four regions were significantly higher than those of highland barley soil, whereas the activity of AOA and AOB was not influenced by crops. The ratio of nitrogen to phosphorus was the key factor influencing AOA activity, whereas soil pH and total carbon were the main factors influencing AOB activity. Additionally, the quantities of AOA and AOB were not significantly correlated with the total ammonia oxidation rates and AOA and AOB activity. Overall, our study suggests that both AOA and AOB play important roles in ammonia oxidation in farmland soils of the Qinghai-Tibet Plateau. Moreover, it is unreliable to predict the activity of AOA and AOB and their relative contribution to ammonia oxidation directly based on their number of amoA genes, and the activity of AOA and AOB should be directly and accurately measured. These results are important for understanding ammonia nitrogen removal processes, slowing nitrate loss, and reducing the emission of the greenhouse gas nitrous oxide in the farmland ecosystem of the Qinghai-Tibet Plateau. © 2022 Science Press. All rights reserved.  相似文献   
97.
黄土滑坡稳定性评价的反演分析   总被引:2,自引:0,他引:2  
崔中兴 《灾害学》1994,9(4):19-22
本文根据黄土滑坡的变形监测结果,同时考虑了边坡的初期应变分布状况,通过有限元反分析法,反推出边坡地基的力学参数,为黄土滑坡的稳定性评价和预报提供了可靠的依据。  相似文献   
98.
为了解地貌在坡面尺度上对α生物多样性的影响,采用主观采样法在陕北吴起县合家沟流域不同地貌部位进行了样地调查.利用SPSS16.0统计软件先后对各地貌部位物种组成及各物种的重要值、地形因子要素间、地形因子和群落α多样性之间分别做了聚类分析、相关分析和多元回归分析.结果表明:(1)地貌部位相似的群落聚类在一起,说明地形因子是影响物种组成、群落结构、生态系统等的重要因素.(2)海拔和坡位,坡向和坡度,地形指数和海拔、坡位、坡形之间的Pearson 相关系数均大于0.8,双尾显著性检验概率小于0.05.(3)影响α生物多样性指标香农-维纳指数的地形因子按重要性从大到小依次是:坡位、坡向、海拔、坡形、坡度、地形指数,进一步分析得出在黄土高原丘陵沟壑区,沟沿线、光照、土壤水分和养分在影响α生物多样性指标上依次递减.(4)通过多元线形回归检验,得出坡位、坡向、坡形、海拔这四个地形因子与群落α生物多样性关系密切,建立的回归模型显著性检验可信度大,与样本数据的拟合度高.各地形因子数据归一处理后的回归方程为:香农-维纳指数=2.417-0.581×坡形-1.333×坡位+1.449×海拔+0.631×坡向.地形地貌特征在黄土丘陵区表现明显,研究它对生物多样性的影响可为该区植被恢复提供参考,但由于调查样地尺度较小,在应用推广上尚待进一步研究.  相似文献   
99.
Due to relatively strong human activities in the hilly area of Loess Plateau,the natural vegetation has been destroyed,and landscape pattern based on agricultural land matrix was land use mosaic composing of shrub land,grassland,woolland and orchard.This pattern has an important effect on soil moisture and soil nutrients.The Danangou catchment,a typical small catchment,was selected to study the effects of land use and its patterns on soil moisture and nutrients in this paper.The results are as follows:The comparisons of soil moisture among seven land uses for wet year and dry year were performed:(1)the average of soil moisture content for whole catchment was 12.11% in wet year,while it was 9.37% in dry year;(2)soil moisture among seven land uses was significantly different in dry year,but not in wet year;(3) form wet year to dry year,the profile type of soil moisture changed from decreasing type to fluctuation-type and from fluctuant type to increasing type;(4)the increasing trend in soil moisture from the top to foot of hillslope occurred in simple land use along slope,while complicated distribution of soil moisture was observed in multiple land uses along slope.The relationships between soil nutrients and land uses and landscape positions were analysed:(1)five nutrient contents of soil organic matter(SOM),total N(TN),available N(AN),total P(TP) and available P(AP) in hilly area were lower than that in other areas.SOM content was less than 1%,TN content less than 0.07%,and TP fallow land and cropland,and higher level in soil fertility was found in crop-fruit intercropping land among croplands;(3)soil nutrient distribution and responses to landscape positions were variable depending on slope and the location of land use types.  相似文献   
100.
为深入研究青藏高原古滑坡复活机理,以甘肃舟曲县东山镇牙豁口滑坡为对象,通过对INSAR监测数据和现场地表监测数据的深入分析,探讨了舟曲县东山镇牙豁口滑坡的滑动变形阶段,并揭示其复活驱动机理.鉴于牙豁口滑坡最先启动块体高陡的后壁和侧壁失稳下滑形态可知,降雨可能只是一个诱发因子,真正触发牙豁口滑坡复活的根本原因是滑坡后缘岩...  相似文献   
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