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51.
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Changes in Agricultural Biodiversity: Implications for Sustainable Livelihood in the Himalaya 总被引:6,自引:1,他引:5
K.G.Saxena R.K.Maikhuri K.S.Rao 《山地科学学报》2005,2(1):23-31
Himalayan mountain system is distinguished globally for a rich biodiversity and for its role in regulating the climate of the South Asia.Traditional crop-livestock mixed farming in the Himalaya is highly dependent on forests for fodder and manure prepared from forest leaf litter and livestock excreta. Apart from sustaining farm production, forests provide a variety of other tangible and intangible benefits, which are critical for sustainable livelihood of not only 115 million mountain people, but also many more people living in the adjoining plains. Extension of agricultural landuse coupled with replacement of traditional staple food crops by cash crops and of multipurpose agroforestry trees by fruit trees are widespread changes. Cultivation of Fagopyrum esculentum,Fagopyrum tataricum, Panicum miliaceum, Setaria italica and Pisum arvense has been almost abandoned. Increasing stress on cash crops is driven by a socio-cultural change from subsistence to market economy facilitated by improvement in accessibility and supply of staple food grains at subsidized price by the government. Farmers have gained substantial economic benefits from cash crops. However, loss of agrobiodiversity implies more risks to local livelihood in the events of downfall in market price/demand of cash crops, termination of supply of staple food grains at subsidized price, pest outbreaks in a cash crop dominated homogeneous landscape and abnormal climate years. Indigenous innovations enabling improvement in farm economy by conserving and/enhancing agrobiodiversity do exist, but are highly localized. The changes in agrobiodiversity are such that soil loss and run-off from the croplands have dramatically increased together with increase in local pressure on forests. As farm productivity is maintained with forest-based inputs, continued depletion of forest resources will result in poor economic returns from agriculture to local people,apart from loss of global benefits from Himalayan forests. Interventions including improvement in traditional manure and management of on-farm trees,participatory development of agroforestry in degraded forest lands and policies favoring economic benefits to local people from non-timber forest products could reduce the risks of decline in agricultural biodiversity and associated threats to livelihoods and Himalayan ecosystems. 相似文献
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New technologies and systems for high quality citrus fruit production,labor-saving and orchard construction in mountain areas of Japan 总被引:4,自引:1,他引:3
KunihisaMORINAG~ OsamuSUMIKAWA OsamuKAWAMOTO HiroyasuYOSHIKAWA SeijiNAKAO MasahikoSHIMAZAKI Shin-no-sukeKUSABA NorihiroHOSHI 《山地科学学报》2005,2(1):59-67
Novel technologies have been necessary for improving fruit quality and productivity of citrus,labor-saving and orchard conservation on steep slope lands since aging of growers and decrease in the number of successors is remarkable in mountain areas of southwestern Japan. The purpose of this paper is to introduce new technologies for improving citrus production that have been developed in recent years. A new fruit quality control system using drip irrigation and liquid fertilization technique combined with year-round plastic mulching was developed, and it enables high quality and stable citrus fruit production. Water and/or nutrient solution is automatically supplied through drip tubes that are laid under the mulching sheets to give adequate water stress, so as to improve sugar and acid content of fruit. A new transportation system for steep sloping citrus orchards, which is a combination of the monorail system and contour narrow paths, was suggested. A small walking cultivator was developed to explain the procedure of narrow path excavation. After introducing the narrow path, working hours for fertilizer and chemicalherbicide application were reduced. Disasterpr evention mapping of citrus orchards on slope landswas developed based on computer-aided seepage estimation and topographic data. The mapping can show zones of both ascending flow and descendingflow of underground water during heavy rains incitrus orchards. The mapping is considered to be effective for the management of orchards andprevention of erosion on slope lands. 相似文献
54.
VishwambharPrasadSati 《山地科学学报》2005,2(1):76-85
Agricultural practices are the main stay of the people of Uttranchal. Out of the total population,more than 75% people are engaged either with the main occupation of agriculture or its allied practices,dominated by traditional subsistence cereal farming.Among them, the main crops are rice, wheat, millet,barley, all types of pulses, all types of oilseeds and almost all types of fruits. The crops, vegetables and fruits of all varieties are grown in the different climatic zones such as tropical, temperate, and cold because, the region is characterized by the different altitudinal zones elevated from 200 m to more than 8000m. As a result, different climates are found from hot tropical to sub temperate and chilly cold. Pulses varieties are grown extensively. Among vegetables,potato, onion, carrot, all types of green leaf vegetables,brinzal, pumpkin, ladyfinger, pea, gram, radish,ginger, garlic, etc, are grown widely. All fruit varieties are grown in the different altitudinal zones. The mainfruits are orange, malta (a big size of orange),elephant citrus, lemon and all other types of citrus,apple, stone fruits including peach and pears, manykinds of nuts, and the fruits which are grown in the low lying areas. In spite of feasible climatic conditions,agricultural dominant society, and availability of all types of crops, the production and productivity of these crops are very low, even they are unable to meet the grain-need of the people in Uttaranchal. Agricultural crops are grown almost in all the altitudinal zones -- from the low-lying areas, which are called ‘Ga. ngarh‘, to the highly elevated region,where the legendary term is given as ‘Danda‘. The growing seasons vary according to the heights. The present paper aims to discuss the agricultural practices including cropping season, cropping pattern,land use, production of cropsagricultural system in thisand ecological aspect of Himalayan state and suggest some measures for developing farming system,which could lead the sustainability, in terms of meeting the food grain needs of the people on the one hand and restoring the ecological balance on the other. 相似文献
55.
如果把我们这个蓝色的星球拟人化,那么刚健挺拔的山脉是他的脊梁,奔流腾跃的江河是他的血脉,宽广无垠的大海是他的胸襟,湖泊呢,毫无疑问,应该是他的眼睛。据我看,对于湖泊,仅仅用四个字来修辞是远远不够的。湖泊有着人类眼睛所能传递出的一切特征:晶莹明澈、安宁静谧、深邃博雅、脉脉含情、热烈奔放、威严矜持、爱憎分明、灵气十足、顾盼生辉、秋波流慧…… 相似文献
56.
《资源导刊(河南)》2013,(10):3-3
八百里秦川福地,亿万年造化神功。在我国大陆版图的正中央,自西向东矗立着一座巍峨而壮丽的山脉,这座山脉就是秦岭。它气势雄浑、亘古无双,孕育出辽阔而肥沃的渭河平原,造就出层峦叠嶂、飞瀑流泉、奇峰异洞等众多的自然美景。然而,它别具匠心、情有独钟,把最美的一段留给了山脉的东段——秦岭终南山世界地质公园。 相似文献
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2019年6月8—10日江西出现了一次持续的大暴雨天气过程.使用常规观测资料、FY-2G卫星TBB资料和NCEP/NCAR再分析资料,在天气尺度环流背景和中尺度系统分析的基础上,利用WRF模式对大暴雨过程进行数值模拟,分析罗霄山脉地形对此次持续暴雨过程的影响.结果表明:此次暴雨过程发生在稳定维持的"两槽一脊"环流形势下,高空西风气流、低空西南急流、沿海大槽、上游移来短波槽和近地面辐合线是大暴雨过程形成的主要天气系统.中尺度云团不断生成于江西省西北部的罗霄山脉北支和中支的迎风坡附近,受沿海大槽阻挡而缓慢东移,与系统性云团合并从而导致江西省西北部地区出现持续性强降水.湘、赣两省交界处的罗霄山脉北支和中支地形对暴雨强度有实质性的影响,去除相应罗霄山脉地形的数值试验模拟的降水量明显减少.罗霄山脉附近持续长时间的辐合线是引发此次大暴雨过程的直接中尺度天气系统,其生成与低层风场辐合、低空急流和地形均有关.受地形抬升作用,对流天气系统在地形迎风坡附近不断生成并持续向东移过江西省西北部,是造成暴雨持续的重要原因. 相似文献
60.
盆山沉积耦合原理在定量恢复造山带隆升剥蚀过程中的应用 总被引:4,自引:1,他引:3
造山带的隆升剥蚀过程研究一直是地学界研究的热点和难点,而与造山带毗邻的沉积盆地则真实地记录了造山带隆升剥蚀演化历史。因此,通过对沉积盆地中沉积物的研究可以反演山地隆升剥蚀历史。基于这种思路,介绍了两种定量恢复造山带隆升剥蚀的方法,即裂变径迹热年代学方法和质量平衡法。前者利用样品碎屑单颗粒的裂变径迹年龄的统计分析确定其源区,并量化源区的抬升剥露及热演化历史,但要求对样品的沉积时代有很好的年代学控制,沉积后样品没有遭受热重置。后者则假定在一定时间间隔内,盆山耦合系统中物源区的地形变化总和与沉积区的碎屑沉积质量总和成正比,即隆升过程中产生侵蚀总量与毗邻盆地的沉积总量之间质量守恒,从而通过研究盆地中相应时间段的沉积总量、沉积速度来定量恢复古地形,反演造山带的演化,但盆山系统的界定以及地层定年的精度直接影响到恢复造山带隆升剥蚀过程的可靠性。 相似文献