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1.
西北内陆河流域治理政策作为国家重要生态环境治理政策受到广泛关注。以石羊河流域生态环境退化最为严重的民勤绿洲为研究区,结合历史文献数据、问卷调查数据、遥感影像数据,运用描述性统计分析和土地荒漠化遥感监测,对比分析石羊河流域治理政策实施初期和实施7 a后农户开荒、用水、种植行为的变化以及生态环境对农户行为变化的响应。结果表明:(1)政策实施7 a上游来水量累积增加了4.44亿m3;农户停止了开荒行为,人均耕地由≥ 0.33 hm2减少到 ≤0.17 hm2,农户用井水灌溉的比例减少17.9%,灌溉方式向更节水的沟灌、膜上灌、喷灌发展;农户减少耗水作物小麦与籽瓜的选择频数和种植面积;生态移民迁出1.05万人,平均每年输转农村剩余劳动力5.61万人。(2)近60%的农户认为该区整体生态环境变好,且荒漠化遥感监测显示2013年该区重度、中度和轻度荒漠化面积分别减少0.24%、5.35%、3.5%。近90%的农户认为环境的改善与流域治理有关。  相似文献   

2.
基于地貌分区的1990-2015年中国耕地时空特征变化分析   总被引:7,自引:0,他引:7  
地形地貌通过分配地表水分和热量制约耕地的利用形式和成效,对耕地质量具有非常重要的决定意义,以地貌分区的视角研究中国耕地变化具有重要意义。根据1990-2015年中国6期土地利用空间数据和地貌分区数据,运用GIS空间叠加分析方法,分析中国耕地1990-2015年的面积变化和空间分布格局,进一步探讨不同地貌分区下的耕地新增与流失方向。结果表明,中国耕地面积略有增加,但总体变化不大,耕地面积从1990年的17715万hm2增加到2015年的17851万hm2,平均每年增加5.44万hm2,每年增幅仅为0.03%。耕地主要分布在平原地区,台地、丘陵次之;新增耕地主要来源为草地、林地和未利用地。东部平原低山丘陵区(I)耕地面积最大,而西北高中山盆地高原区(IV)耕地动态度明显高于其他地貌区。空间上呈现“南减北增,新增耕地的重心向西北移动”的特征。1990-2015年间,西北高中山盆地高原区(IV)和东部平原低山丘陵区(I)为耕地面积增长区,平均每年增加耕地面积分别为8.9万hm2和5.4万hm2;东南低山丘陵平原区(II)和西南中低山高原盆地区(V)为耕地面积减少区,平均每年减少耕地面积分别为5.9万hm2和2.8万hm2;而华北—内蒙东中山高原区(III)和青藏高原高山极高山盆地谷地区(VI)耕地面积几乎没有变化,平均每年变化仅为0.15 万hm2和0.06万 hm2。耕地流失主要发生在东部平原低山丘陵区(I)和东南低山丘陵平原区(II),主要原因为城镇化进程加快带来的建设用地对优质耕地的大量占用;而新增耕地主要发生在西北高中山盆地高原区(IV),多来自于对草地和未利用地的开垦。  相似文献   

3.
1990—2010年黄河宁蒙段所处流域土地利用变化   总被引:1,自引:0,他引:1  
以Landsat TM和ETM+遥感影像为基础数据源,应用地理信息系统技术,对黄河宁蒙段所处流域1990-2010年土地利用变化进行了监测,并结合气候变化、人类活动和政策因素探讨了土地利用变化的驱动力,初步分析了土地利用/覆被变化对流域水-沙关系的影响。结果表明:(1)20年来研究区建设用地面积增加了1 310.04 km2,耕地面积增加了611.15 km2,水域和草地面积分别减少了1 499.51 km2和474.93 km2;(2)20年来黄河宁蒙段所处流域土地利用变化速度经历了缓慢变化-显著变化-急剧变化的过程。各土地利用类型在后10 年(2000-2010年)的变化速度均比前10年(1990-2000年)大;(3)研究时段内草地和未利用地转化为林地,草地和耕地被开发为建设用地,未利用地和草地被开垦为耕地;(4)人类活动和政策因素是影响20年来土地利用变化的主要驱动因子,但人口数量的增加、经济的发展及环境政策的调整对研究区土地利用变化的影响更为显著;(5)1990-2010年流域耕地和林地面积分别增加了611.15 km2和543.19 km2,植被覆盖度由1990年的34.7%增加到2010年的40.8%。林地和耕地面积的增加均使得流域总蒸发量增加,灌溉用水增加,从而径流量减少,植被覆盖度的增加使得流域径流量和输沙量均降低。  相似文献   

4.
基于WaTEM/SEDEM模型的沂河流域土壤侵蚀产沙模拟   总被引:1,自引:0,他引:1  
基于WaTEM/SEDEM模型,结合临沂水文站和角沂水文站的输沙数据对模型进行校正和验证,分析模拟1975—2015年沂河流域侵蚀产沙的时空变化特征,并进一步研究降水、地形位和土地利用变化对流域侵蚀产沙的影响。结果表明:① 沂河流域输沙能力系数Ktc-low和Ktc-high在40 m和150 m组合下效果最优,模型在沂河流域具有较好的适用性。② 1975—2015年,沂河流域主要以侵蚀为主,微度侵蚀所占面积最大,其次是剧烈侵蚀,沉积主要分布在河谷处;流域侵蚀强度呈现先增加后减少的趋势,侵蚀模数由1975年的30.92 t·hm-2·a-1增加至1995年的49.32 t·hm-2·a-1再下降至2015年的29.60 t·hm-2·a-1;各县(区)平均侵蚀模数为沂水县>费县>沂南县>沂源县>蒙阴县>平邑县>兰山区。③ 沂河流域土壤侵蚀产沙强度的变化是降水、地形、土地利用等综合作用的结果。1975—2015年,流域降雨侵蚀力呈现先降低后升高又降低的变化趋势,各县(区)平均降雨侵蚀力为费县>兰山区>沂南县>蒙阴县>平邑县>沂水县>沂源县,降雨侵蚀力时空变化与流域侵蚀产沙强度时空变化并不完全一致;地形位等级空间分布与流域侵蚀产沙强度空间分布基本一致,侵蚀产沙的优势地形位区间是4~6级,即高程75~428 m,坡度5°~39°;耕地和林地的转化是土壤侵蚀强度转化最主要的原因,林地转化为耕地使侵蚀强度面积升高3389.97 hm2·a-1,耕地转林地则使侵蚀强度面积降低2216.65 hm2·a-1,草地与其他土地利用类型的转化对流域侵蚀强度影响较小。该研究可为区域土地利用方式调整和水土流失调控提供参考。  相似文献   

5.
河湟谷地是青藏高原东北缘典型的农牧交错区,清代以来耕地的扩张导致林草地覆盖发生明显变化。本文在现代植被图的基础上,选取土壤、地形因素,并依据历史文献数据,重建河湟谷地潜在林地草地格局,在此基础上结合清代耕地变化的重建结果,推算出清代河湟谷地林草地覆盖的变化状况。结果显示:①清代耕地扩张之前,其林、草地分布与现今各类植被类型的空间分布格局基本一致,林地分布范围比现代略大,灌木林地在空间上连续性更强,草地分布区域更广;②估算出河湟谷地潜在林地、灌木林地、草地面积分别约为0.28×104、0.93×104、2.1618×104 km2,由于耕地开垦,至清代末期,河湟谷地草地、灌木林地、林地面积分别累计减少5180.41、1330.35、441.31 km2,其中草地被垦殖占用的面积最大,程度最深,减少的区域主要集中在湟水谷地中游的乐都盆地、西宁盆地以及黄河谷地的尖扎盆地、化隆盆地等;③清代河湟谷地中人类垦殖原始覆盖类型的差异性不仅受自然环境的限制,同样受到社会政策因素的影响。  相似文献   

6.
基于遥感调查数据集定量分析了1990—2015年中国黄土高原地区耕地的时空变化特征和口粮绝对安全最小耕地保障面积的数量变化。结果表明:黄土高原耕地面积从1990年的192 529.65 km2至2015年的182 688.50 km2,净减少了9 841.14 km2,幅度达5.11%,其中2000—2010年的减幅最大,净减少8 483.00 km2;较大的耕地动态变化图斑主要分布于中部和西部区域,细碎的变化图斑广泛分布;耕地地类转出面积(31 875.82 km2)大于转入面积(21 815.25 km2),耕地面积的增加主要由草地和林地转化而来,主要分布在灌溉农业区和东南部平原区,减少的耕地主要转化为草地和林地,主要分布在中部沟壑区的雨养农业区。此外,该时期耕地转化为建筑用地和交通用地等人工表面的面积逐渐增加,主要分布在东南部低海拔平原地区;黄土高原口粮绝对安全所需最小耕地保障面积呈明显减少特征(从1990年的70 913.37 km2下降到2015年的33 981.64 km2),占该区耕地总面积比例呈明显缩减态势(从1990年的36.83%缩减到2015年的18.60%),目前耕地总量的净减少未对口粮绝对安全的耕地保障数量造成大的影响。  相似文献   

7.
宁夏沙地遥感宏观动态研究   总被引:4,自引:2,他引:2  
以宁夏1996年和2000年的TM影像为信息源,在全数字方式下运用遥感技术与地理信息系统技术结合建立了两期宁夏沙地数据库。通过分析得出:2000年宁夏有沙地面积313 498 hm2,与1996年相比新增加4 894 hm2、减少2 9705 hm2、净减少2 4811 hm2,净减少了7.333%。沙地占全区总土地面积的比例由1996年的6.533%减少到2000年的6.054%,平均每年净减少0.120%。同时,分析了全区沙地变化的驱动因子。沙地增加的主要因素是草地沙漠化和耕地沙化,两者分别占沙地总增加量的78.463%和13.302%;沙地减少的相互主要因素是沙地开垦为耕地和沙地恢复草被变为草地,两者分别占沙地总减少量的50.025%和46.666%。  相似文献   

8.
中蒙俄经济走廊战略地位显著,研究其土地利用格局变化与机理,对亚欧大陆复杂巨系统的生态环境保护和社会经济可持续发展意义重大。本文基于全球土地覆盖遥感数据和实地考察,对自苏联解体及蒙古私有化以来的1992—2019年,中蒙俄经济走廊土地利用格局及其驱动因素和时空变化规律进行了研究。结果表明:①1992—2019年,中蒙俄经济走廊土地利用变化活跃,土地转换面积为361954 km2,主要表现为林地持续下降,建设用地、耕地面积迅速扩张。② 中国部分的林地呈现先减后增的趋势,2000年后东北平原北部林地增加显著,灌丛与草地、裸地分别净减少13325 km2、16632km2;蒙古国部分的林地、灌丛与草地均呈现先减后增的趋势,而裸地面积先增后减,苏赫巴托尔省、肯特省、东戈壁省和戈壁苏木贝尔省四省交界地带裸地增加明显;俄罗斯部分的林地持续下降,共减少46742 km2,耕地面积增加8478 km2,贝加尔湖周边裸地增加41417 km2;俄蒙边境、色楞格河流域以及中蒙俄铁路沿线地区存在沙漠化风险。③ 人口、经济、产业结构以及政策等是中蒙俄经济走廊土地利用变化的主要因素。2010—2018年,人口密度对转为林地的土地影响最大,其解释力q值为0.2597,GDP总量对转为建设用地、裸地、耕地的影响最大,其解释力q值分别为0.9094、0.2234、0.5518。就三国而言,中国部分主要受人口和经济因素以及退耕还林政策的影响,而蒙古国部分则受私有化后超载过牧及开垦耕地的影响,俄罗斯部分主要是砍伐林地和开垦耕地的影响。本研究结果旨在为中蒙俄经济走廊土地资源可持续利用和管理提供科学依据。  相似文献   

9.
山地生态系统的土壤侵蚀和水源供给变化对评估区域生态环境质量有重要意义。基于2000-2015年四期土地利用数据,借助InVEST模型对淇河流域近16年间山地生态系统的土壤侵蚀和水源供给变化进行评估。结果表明:① 研究区主要土地利用类型为耕地、草地和林地,共占流域总面积的90%以上。近16年间淇河流域的耕地面积显著减少,草地和水域面积大幅增加,建设用地扩张明显。② 平均土壤侵蚀模数显著降低,2000年土壤侵蚀模数为154.27 t/(hm2·a),2015年减少到32.09 t/(hm2·a);强度侵蚀、极强侵蚀和剧烈侵蚀由9.03%、12.19%和25.96%分别减少到7.17%、6.36%和4.21%,微度侵蚀、轻度侵蚀和中度侵蚀由24.31%、16.96%和11.57%增加到41.89%、27.71%和12.68%;退耕还林、还草措施优化了土地利用格局,促进植被恢复,对治理土壤侵蚀起到了显著效果。③ 水源供给量整体呈现先增加后减少的趋势,2005年达到峰值(1.79亿m3)。相邻两期水源供给量增减变化不一,2000-2005年水源供给量增加的面积大于减少的面积,其水源供给的量值也呈增加趋势,水源供给能力整体增强;而2005-2010年、2010-2015年的水源供给能力随之减弱,其中,2010-2015年水源供给减少的较小;林地和草地面积的增加造成水源供给量降低,土壤水源涵养能力增强。土壤侵蚀和水源供给是山地生态脆弱性响应的重要指标,制定合理的水土保持措施对增强山区生态系统的服务能力具有重要意义。  相似文献   

10.
甘肃省玛曲县土地沙漠化发展及其成因分析   总被引:8,自引:1,他引:7  
利用遥感和GIS空间分析技术,以多期遥感数据为主要信息源,对甘肃省玛曲县土地沙漠化进行监测,在此基础上进行沙漠化成因分析。研究结果表明,1975-1990年研究区沙漠化处于强烈发展阶段,沙漠化土地面积增加了44 093.8 hm2,其中流动沙地、半固定沙地、固定沙地面积分别增加了39.9 hm2、27 702.7 hm2、16 351.2 hm2。1990-2000年沙漠化程度加剧,沙漠化总面积增加了142.4 hm2,其中流动沙地和半固定沙地分别增加了200.1 hm2、326.6 hm2,而固定沙地面积减少了384.3 hm2。2000-2005年玛曲县沙漠化发生逆转,沙漠化土地面积减少了3 226.2 hm2。分析表明,长期过度放牧,气温显著升高,人类不合理的活动和鼠虫害的泛滥是造成玛曲县土地沙漠化的主要原因。  相似文献   

11.
We initially estimated the cropland area at county level using local historical documents for the Songnen Plain (SNP) in the 1910s and 1930s. We then allocated this cropland area to grid cells with a size of 1 km × 1 km, using a range of cultivation possibilities from high to low; this was based on topography and minimum distances to rivers, settlements, and traffic lines. Cropland areas for the 1950s were obtained from the Land Use Map of Northeast China, and map vectorization was performed with ArcGIS technology. Cropland areas for the 1970s, 1980s, 1990s, 2000s, and 2010s were retrieved from Landsat images. We found that the cropland areas were 4.92 × 104 km2 and 7.60 × 104 km2, accounting for 22.8% and 35.2% of the total area of the SNP in the 1910s and 1930s, respectively, which increased to 13.14 × 104 km2, accounting for 60.9% in the 2010s. The cropland increased at a rate of 1.18 × 104 km2 per decade from the 1910s to 1970s while it was merely 0.285 × 104 km2 per decade from the 1970s to 2010s. From the 1910s to 1930s, new cultivation mainly occurred in the central SNP while, from the 1930s to 1970s, it was mainly over the western and northern parts. This spatially explicit reconstruction could be offered as primary data for studying the effects of changes in human-induced land cover based on climate change over the last century.  相似文献   

12.
Tropical forests have been recognized as having global conservation importance. However,they are being rapidly destroyed in many regions of the world. Regular monitoring of forests is necessary for an adaptive management approach and the successful implementation of ecosystem management. The present study analyses the temporal changes in forest ecosystem structure in tribal dominated Malkangiri district of Orissa,India,during 1973-2004 period based on digitized forest cover maps using geographic information system (GIS) and interpretation of satellite data. Three satellite images Landsat MSS (1973),Landsat TM (1990) and IRS P6 LISS III (2004) were used to determine changes. Six land cover types were delineated which includes dense forest,open forest,scrub land,agriculture,barren land and water body. Different forest types were also demarcated within forest class for better understanding the degradation pattern in each forest types. The results showed that there was a net decrease of 475.7 km2 forest cover (rate of deforestation = 2.34) from 1973 to 1990 and 402.3 km2 (rate of deforestation = 2.27) from 1990 to 2004. Forest cover has changed over time depending on a few factors such as large-scale deforestation,shifting cultivation,dam and road construction,unregulated management actions,and social pressure. A significant increase of 1222.8 km2 agriculture area (1973-2004) clearly indicated the conversion of forest cover to agricultural land. These alterations had resulted in significant environmental consequences,including decline in forest cover,soil erosion,and loss of biodiversity. There is an urgent need for rational management of the remaining forest for it to be able to survive beyond next decades. Particular attention must be paid to tropical forests,which are rapidly being deforested.  相似文献   

13.
Mangrove forests in Southeast Asia provide many ecosystem services, though are experiencing extensive deforestation, especially in Myanmar. Recent political and economic reforms in Myanmar are projected to further increase development pressures on natural resources. Mangrove forests in the southern state of Tanintharyi have largely been spared clearance because of poor infrastructure and a volatile security situation, though this may change with plans for economic expansion. We quantified land cover dynamics and proximate drivers of mangrove deforestation in Tanintharyi between 1989 and 2014 using a remote sensing approach over five time intervals. Tanintharyi experienced low mangrove cover loss overall, as compared with other regions of Myanmar, with 3.2 per cent being deforested over 25 years. However, this statistic hides large site‐specific losses and gains, which varied significantly within the study area. Myeik district lost 210 km2 of mangrove over 25 years, but also gained 132 km2. Dawei and Kawthung had minimal net loss of mangroves because of extensive mangrove regeneration. This historical mangrove baseline is essential for supporting environmentally‐conscious development in Myanmar's southernmost state.  相似文献   

14.
Land use/cover change is an important theme on the impacts of human activities on the earth systems and global environmental change. National land-use changes of China during 2010–2015 were acquired by the digital interpretation method using the high-resolution remotely sensed images, e.g. the Landsat 8 OLI, GF-2 remote sensing images. The spatiotemporal characteristics of land-use changes across China during 2010–2015 were revealed by the indexes of dynamic degree model, annual land-use changes ratio etc. The results indicated that the built-up land increased by 24.6×103 km2 while the cropland decreased by 4.9×103 km2, and the total area of woodland and grassland decreased by 16.4×103 km2. The spatial pattern of land-use changes in China during 2010–2015 was concordant with that of the period 2000–2010. Specially, new characteristics of land-use changes emerged in different regions of China in 2010–2015. The built-up land in eastern China expanded continually, and the total area of cropland decreased, both at decreasing rates. The rates of built-up land expansion and cropland shrinkage were accelerated in central China. The rates of built-up land expansion and cropland growth increased in western China, while the decreasing rate of woodland and grassland accelerated. In northeastern China, built-up land expansion slowed continually, and cropland area increased slightly accompanied by the conversions between paddy land and dry land. Besides, woodland and grassland area decreased in northeastern China. The characteristics of land-use changes in eastern China were essentially consistent with the spatial govern and control requirements of the optimal development zones and key development zones according to the Major Function-oriented Zones Planning implemented during the 12th Five-Year Plan (2011–2015). It was a serious challenge for the central government of China to effectively protect the reasonable layout of land use types dominated with the key ecological function zones and agricultural production zones in central and western China. Furthermore, the local governments should take effective measures to strengthen the management of territorial development in future.  相似文献   

15.
基于GIS 的中国人居环境指数模型的建立与应用   总被引:39,自引:5,他引:34  
封志明  唐焰  杨艳昭  张丹 《地理学报》2008,63(12):1327-1336
以1km×1km 栅格为基本单元, 选取地形、气候、水文、植被等自然因子, 构建了基 于人居环境指数的中国人居环境自然适宜性评价模型, 运用GIS 技术, 定量评价了中国不同 地区的人居环境自然适宜性, 揭示了中国人居环境的自然格局与地域特征。研究表明: 中国 人居环境指数整体呈现由东南沿海向西北内陆递减的趋势; 人居环境指数与人口密度显著相 关, 二者的对数曲线拟合度R2 值高达0.87, 人居环境指数可以综合反映区域人居环境的自然 适宜程度。中国人居环境自然适宜性评价结果显示, 中国人居环境适宜地区430.47×104 km2 , 接近国土面积的45%, 相应人口占全国的96.56%, 其中3/4 以上的人口集聚在约占1/4 人居 环境高度适宜和比较适宜地区; 中国人居环境临界适宜地区225.11×104 km2 , 占国土面积的 23.45%, 相应人口4112 万, 占全国的3.24%, 人口密度每平方公里18 人, 是中国人居环境 适宜与否的过渡地区; 中国人居环境不适宜地区304.42×104 km2, 人口249 万, 不到全国的 0.2%, 人口密度每平方公里不足1 人, 大片地区沦为“无人区”。  相似文献   

16.
Paleorecords from multiple indicators of environmental change provide evidence for the interactions between climate, human alteration of watersheds and lake ecosystem processes at Lake Tanganyika, Africa, a lake renowned for its extraordinary biodiversity, endemism and fisheries. This paper synthesizes geochronology, sedimentology, paleoecology, geochemistry and hydrology studies comparing the history of deltaic deposits from watersheds of various sizes and deforestation disturbance levels along the eastern coast of the lake in Tanzania and Burundi. Intersite differences are related to climate change, differences in the histories of forested vs. deforested watersheds, differences related to regional patterns of deforestation, and differences related to interactions of deforestation and climate effects. Climate change is linked to variations in sediment accumulation rates, charcoal accumulation, lake level and water chemistry, especially during the arid-humid fluctuations of the latter part of the Little Ice Age. Differences between forested and deforested watersheds are manifested by major increases in sediment accumulation rates in the latter (outside the range of climatically driven variability and for the last 40 years unprecedented in comparison with other records from the lake in the late Holocene), differences in eroded sediment and watershed stream composition, and compositional or diversity trends in lake faunal communities related to sediment inundation. Variability in regional patterns of deforestation is illustrated by the timing of transitions from numerous sedimentologic, paleoecologic and geochemical indicators. These data suggest that extensive watershed deforestation occurred as early as the late-18th to the early-19th centuries in the northern part of the Lake Tanganyika catchment, in the late-19th to early-20th centuries in the northern parts of modern-day Tanzania, and in the mid-20th century in central Tanzania. Rapid increases in sediment and charcoal accumulation rates, palynological and lake faunal changes occurred in the early-1960s. We interpret this to be the result of greatly enhanced flushing of sediments in previously deforested watersheds triggered by extraordinary rainfall in 1961/62. Regional differences in deforestation histories can be understood in light of the very different cultural and demographic histories of the northern and central parts of the lake shoreline. Incursion of slaving and ivory caravans from the Indian Ocean to the central coast of Lake Tanganyika by the early-19th century, with their attendant diseases, reduced human and elephant populations and therefore maintained forest cover in this region through the late-19th to early-20th centuries. In contrast, the northeastern portion of the lakeshore did not experience the effects of the caravan trades and consequently experienced high human population densities and widespread deforestation much earlier. These studies demonstrate the importance of paleolimnological data for making informed risk assessments of the potential effects of watershed deforestation on long-term lake ecosystem response in the Lake Tanganyika catchment. Differences in sediment yield and lake floor distribution of that yield, linked to factors such as watershed size, slope, and sediment retention, must be accounted for in management plans for both human occupation of currently forested watersheds and the development of future underwater reserves.  相似文献   

17.
Causes of land salinization were determined via land cover and hydrological process change detection in a typical part of Songnen Plain. The area of saline land increased from 4627 km2 in 1980 to 5416 km2 in 2000, and then decreased to 5198 km2 in 2015. The transformation between saline land and other land covers happened mainly before 2000, and saline land had transformation relationship mainly with cropland, grassland, and water body. From 1979 to 2007, groundwater depth fluctuated to increase and was mainly deeper than 3.3 m. Spatially, the area of the region where groundwater depth was deeper than 3.3 m increased from 46.7% in 1980 to 84% in 2000, while the area of the region almost occupied the whole region after 2000. Precipitation and evaporation changed little, while runoff decreased substantially. Shallow groundwater, change of cropland, grassland, and water body induced from human activities and decrease of runoff and increase of irrigation and water transfer from outer basin were the main reasons for land salinization before 2000. After 2000, groundwater with relatively great depth could not exert great influence on land salinization. Protection of grassland and wetland prevented the increase of the area of saline land.  相似文献   

18.
Sandy desertification in the Shule River Basin has expanded dramatically during the past 30 years. We evaluated the status, evolution, and main causes of sandy desertification by interpreting Landsat images which were acquired in 1978, 1990, 2000, 2005, and 2010, and analyzing the relevant meteorological data. The results show there was 3,477.95 km2, 3,733.32 km2, 3,620.29 km2, 3,565.65 km2, and 3,557.88 km2 of sandy desertified land in 1978, 1990, 2000, 2005, and 2010, respectively. From 1978 to 1990, not only the area of sandy desertified land (SDL) but also the degree of SDL levels increased. From 1990 to 2010 there was widespread restoration of SDL but the recovery trend of SDL gradually slowed. Although climate change contributes to expanding sandy desertification, human activities can either accelerate or reverse trends of natural sandy desertification. Some detrimental human activities can accelerate sandy desertification, but, conversely, desertification control measures such as the Three-North Shelter Forest Project and watershed rehabilitation programs in areas including the Shule River Basin resulted in many SDL being turned into grasslands or forest lands when shrubs and trees were planted to fix mobile sands at the edges of oases and cities. With population growth, much SDL has been reclaimed as farm land using water-saving agricultural methods or has been turned into built-up land as a result of urbanization.  相似文献   

19.
近10年来中国耕地资源的时空变化分析   总被引:105,自引:5,他引:100  
根据中国资源环境数据库中的耕地数据以及20世纪80年代末期、1995年和2000年3期覆盖全国时间跨度约为10年的遥感数据,对中国耕地时空变化进行分析。总趋势表明,近10年来我国耕地资源总量有所增加;东部及沿海地区优质耕地迅速减少;东北地区和内蒙古自治区耕地大量开垦;水田旱地转换明显。利用GIS方法将耕地变化数据与中国生态环境质量数据进行叠加,表明近10年来耕地的生态环境质量下降了。近10年耕地动态变化的空间分布表现出13种动态格局。对80年代末至1995年 (前5年) 和1995年至2000年 (后5年) 这2个时间段内的耕地变化进行对比分析,表明了前5年与后5年耕地变化的动态格局有空间上的相似性,但前后变化幅度相差较明显。近10年来气温的升高与中国水田北移有较好的一致性,而降水的减少对西北地区耕地的撂荒和开垦有明显作用。中国经济的发展所导致的城市化过程使得大量耕地被占用。近10年来相关的耕地政策对控制耕地面积的减少有作用,但耕地的总体质量却下降了,这直接影响了粮食产量。  相似文献   

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