首页> 外文期刊>Environmental Geology >Will the river Irtysh survive the year 2030? Impact of long-term unsuitable land use and water management of the upper stretch of the river catchment (North Kazakhstan)
【24h】

Will the river Irtysh survive the year 2030? Impact of long-term unsuitable land use and water management of the upper stretch of the river catchment (North Kazakhstan)

机译:额尔齐斯河能否在2030年生存?长期不合适的土地利用和流域上游水管理的影响(北哈萨克斯坦)

获取原文
获取原文并翻译 | 示例
           

摘要

The Irtysh river basin all the way from river spring in China across Kazakhstan as far as the Russian part of Siberia is among the most ecologically endangered and affected regions on our planet. The study provides a summary of the historical reasons for anthropological interventions in this area, which began with the construction of plants of the military—industrial complexes in the forties of the last century during World War Ⅱ. These plants have a major share in extreme high concentrations of heavy metals in surface as well in groundwaters locally. The Semipalatinsk nuclear polygon plays a specific role as a source of contamination of local waters. The release of top secret data enabled us to gain knowledge about serious problems related to high radioactivity of groundwaters, which should spread uncontrollably through a system of secondary fissures activated by nuclear blasts. Another serious problem in this region is the quantitative aspect of contamination. Model simulations of water balance indicate that large industrial development in the spring area in China and continuously increasing water consumption in Kazakhstan may lead to desiccation of the lower stretch of this large river in Siberia during the summer months of 2030.
机译:从中国的河水一直到哈萨克斯坦,再到西伯利亚的俄罗斯部分,额尔齐斯河流域一直是我们星球上生态受到威胁和影响最大的地区之一。该研究总结了该地区人类学干预的历史原因,其始于上个世纪二战四十年代军事和工业综合体的工厂建设。这些植物在地表以及地下水中的极高浓度重金属中占有很大份额。 Semipalatinsk核多边形作为当地水域的污染源起着特殊的作用。最高机密数据的发布使我们获得了与地下水高放射性有关的严重问题的知识,地下水应通过核爆炸激活的次生裂隙系统不受控制地扩散。该区域的另一个严重问题是污染的定量方面。水平衡的模型模拟表明,中国春季地区的大型工业发展以及哈萨克斯坦的耗水量不断增加,可能会导致2030年夏季几个月西伯利亚这条大河的下游河段干des。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号