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1.
利用奈曼旗2000、2006、2012年和2018年4期遥感数据,在ENVI5.3和ArcGIS10.2的支持下,运用土地利用动态变化空间分析模型、空间变化率指数和土地利用程度空间自相关,分析奈曼旗土地利用时空动态演变规律,为科尔沁沙地沙漠化土地治理及生态环境恢复提供参考信息。结果表明:1)各沙漠化土地整体呈逆转趋势,耕地、林草地和建筑用地呈发展趋势,研究区生态环境逐渐好转;2)人口增长、经济发展和政府政策导致耕地和林草地空间变化呈扩展型,各沙漠化土地呈衰退型;3)耕地和林草地与同期其他土地利用类型转化幅度逐年增长,空间变化率指数逐年增加,各沙化土地空间变化率指数逐年下降,仍需坚持生态环境恢复,沙漠化土地重点治理;4)土地利用程度呈高度空间自相关,在空间上的聚集区域固定,高-高值聚集在南部黄土区,面积逐年减少,低-低值聚集在中部沙区,面积减少幅度较小。 相似文献
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土壤微生物膜对风沙土固沙保水特性的影响 总被引:1,自引:1,他引:0
土壤微生物膜胞外聚合物具有较强的黏结性,为增强风沙土抗蚀性,提高风沙土保水性提供了新途径。鉴于此,该研究采用室内控制试验设置6个微生物菌剂施用水平(0、1、3、5、7和10 g/kg),以期阐明土壤微生物膜对风沙土特性的影响。研究结果表明:1)施用微生物菌剂可产生土壤微生物膜,并胶结风沙土颗粒。2)试验结束时(第49 d),与对照组相比,不同菌剂施用处理的土壤容重降低0.54%~8.88%,孔隙度提高0.39%~3.91%,含水率显著提高0.11%~0.25%(P0.05),大团聚体质量分数增加5.59%~25.01%,土壤pH值由7.16显著增加至8.32~9.23(P0.05)。3)土壤多糖含量对土壤特性的解释率为47%,是影响土壤特性的关键因素。土壤微生物膜能够有效改善风沙土特性,增强风沙土抗蚀性,提高风沙土保水性,但较高的微生物菌剂施用量会增加土壤pH值,造成土壤盐碱化,建议微生物菌剂施用水平为1~5 g/kg。研究成果有利于深入理解微生物膜固沙保水机制,并可为沙化土地防治新技术研发提供重要理论依据和科技支撑。 相似文献
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鄂尔多斯高原中部5.8~4.5 Cal kaBP气候旋回的地层记录 总被引:1,自引:1,他引:0
通过对鄂尔多斯高原现代风成砂与PJHZ剖面沉积物粒度特征的对比分析,确定了剖面中4个层位(290~210,190~160,153.5~123.5,50~40 cm)基本属于风成砂沉积。结合粒度参数、碳酸钙含量、总有机碳含量及年代序列,认为此区域在5.8~4.5 Cal kaBP存在以下沉积旋回:~5 749 Cal aBP,沉积风成砂,反映该时期风砂活动强烈,气候干燥,冬季风强盛;5 749 Cal aBP前后,沉积物为灰绿色湖相层,表明这一时期存在短暂的湖面扩展,沙漠退缩;5 749~5 370 Cal aBP,沉积风成砂,反映了湖泊的退缩和沙漠的扩展;5 370~4 895 Cal aBP,湖相沉积物,反映了流域降水量的增多;4 895~4 580 Cal aBP沉积风成砂后,4 580 Cal aBP前后又出现了短暂的湖相沉积,之后又是风砂沉积。 相似文献
7.
研究不同水分条件对东北风沙土花生各生长期植株形态、生理指标、产量及水分利用率的影响。采用盆栽的方式对花生各生长期的土壤水分进行调控,对上述指标进行测定。结果表明,风沙土栽培花生苗期适当干旱对花生生长发育没有显著影响;花针期对水分要求明显增高,土壤含水量为田间持水量的60%为宜;结荚期必须提供充足的水分,否则严重影响荚果生长,导致减产。在各组处理中全生育期土壤含水量下限控制在田间持水量60%时,水分利用率最高,达到1.53 g/kg,产量92.9 g/盆也达到了较高的水平,该指标可用来指导东北风沙土花生补水灌溉。 相似文献
8.
不同土地利用方式对风沙土酶活性的影响 总被引:1,自引:0,他引:1
以辽宁省彰武县柳河流域忙海林子村为例,研究了不同土地利用方式对该区域风沙土6种酶活性的影响。结果表明:裸地由于几乎无植被覆盖,各类生物少,酶活性普遍处于最低水平,应采取措施改良;河滩地由于其特殊的地理位置,土壤易被河水冲刷,酶活性普遍处于较低水平,且由于耕种会影响泄洪,因此,河滩地不适合开垦为耕地;非河滩耕地酶活性基本处于中等水平,说明由于耕作、收割等,加剧了水土流失过程,降低了酶活性,可适度休耕;天然草地酶活性基本处于较高水平,说明天然草地可在一定程度上改善风沙土酶活性;林地酶活性普遍处于最高水平,说明种植杨树对改善风沙土酶活性效果最为明显。 相似文献
9.
JinNian TANG ZhiZhu SU Feng DING ShuJuan ZHU YouHao E XinWei ZHAI ZhiYu YI HuJun LIU JinChun ZHANG FaMing LI 《干旱区科学》2011,3(2):114-122
The ancient aeolian sand has been regarded as an indicator for the formation and evolution of a desert in the past.Kumtagh Desert is located at the northern fringe of Qinghai-Tibet Plateau.The first integrated scientific investigation to the desert was carried out during the period of 2004-2006.Kumtagh Desert is an ideal natural model for studying the formation and evolution of the desert because the Quaternary strata containing ancient aeolian sands are widely distributed.The integrated field investigation and studies on sedimentary,chronology and palynology of typical profiles named Suosuo gully,Xiaoquan gully and gravel body with ancient aeolian sand layers showed that Kumtagh Desert was probably formed as early as 2,097.7±314.7 ka BP.During the period of 386.9±58.0 ka BP to 285.9±42.9 ka BP,the desert largely expanded and formed its modern distribution pattern.The desert was originally developed in the southwest,subsequently,expanded to the north and northeast.The sedimentary facies of Suosuo gully profile revealed that the desert experienced at least 19 cycles of advance and inverse processes of desertification with an average period of 110 ka in the Quaternary.The neotectonic movements played an important role in the formation,development and geomorphology of the desert.On one hand,the movements caused the formation of intermontane fault basin,which was further developed towards the closed drought basin,and caused the formation of natural environment.On the other hand,under the control of surrounding faults,the unique broom-shaped desert landscape was formed,and the gullies and sand ridges in this region experienced an abrupt directional change from north by west to north by east at the location of 39°45'-39°55'N.The unique landscape of gravel body that occurred widely in the northern desert was formed after 285.9±42.9 ka BP.The results in this paper provide the scientific basis for studying the formation age and evolutionary process under the dry climate and environment in the northwestern China,and the uplifting of Qinghai-Tibet Plateau as well as its responses to the global climate changes. 相似文献
10.
The formation and development of dunes depend on wind-blown sand movement which is affected by the characteristics of sand material, topography, wind regimes and other factors. In this paper, we investigated two sand shadow dune groups in Shigatse and Za’gya Zangbo of Tibet and an individual dune in Da Qaidam of Qinghai, and analyzed their topographies and morphologies, and the physical characteristics of the sand, wind regime and sand transport. Formed under harsh conditions behind hills, these mature sand shadow dunes are hundreds of meters long, have significant ridges and crescent dunes downwind, and have a hill pass on one or both sides. Wind tunnel experiments revealed that the hill gap and wind velocity are important factors in the formation of these dunes. Sand shadow dunes formed only when the gap spacing is two-thirds of the hill height. When wind velocities are 20 m/s, the sand body is divided into two parts. The hill pass allows the transport of sand by wind, creating a "narrow-pipe effect", which causes the transported material to gradually accumulate in the center of the shadow zone. We observed that the following are needed for sand shadow dunes to form:(1) strong winds, sufficient sand, suitable obstacles and a dry climate;(2) one or both sides of the obstacle forming the shadow zone must have a hill pass; and(3) the windward side of the obstacle must have a wide, flat area, providing adequate spacing for wind flow and transport of material and the leeward side must have a sufficiently broad, flat area to allow the release of the transported material. Research results on these newly discovered dunes on the Qinghai-Tibet Plateau could contribute to the understanding of dune geomorphology. 相似文献