Cold-region environments along the China-Russia Crude Oil Pipeline and their management Cold-region environments along the China-Russia Crude Oil Pipeline and their management

Cold-region environments along the China-Russia Crude Oil Pipeline and their management

  • 期刊名字:寒旱区科学(英文版)
  • 文件大小:
  • 论文作者:RuiXia He,HuiJun Jin,LanZhi L,
  • 作者单位:State Key Laboratory of Frozen Soils Engineering
  • 更新时间:2023-02-02
  • 下载次数:
论文简介

The cold-region eco-environments along the China-Russia Crude Oil Pipeline(CRCOP)in northern Northeast China are in disequilibrium due to the combined influences of pronounced climate warming and intensive anthropogenic activities.This is evidenced by the sharp areal reduction and northward shifting of the boreal forests,shrinking of wetlands,enhancing of soil erosion,accelerating degradation of permafrost and deteriorating of cold-region eco-environments.The degradation of permafrost plays an important role as an internal drive in the eco-environmental changes.Many components of the cold-region eco-environments,including frozen ground,forests,wetlands and peatlands,forest fires and"heating island effect"of rapid urbanization,are interdependent,interactive,and integrated in the boreal ecosystems.The construction and long-term operation of the CRCOP system will inevitably disturb the cold-region environments along the pipeline.Therefore,a mandatory and carefully-elaborated environmental impact statement is indispensable for the proper mitigation of the ensued adverse impacts.Proper management,effective protection and practical rehabilitation of the damaged cold-region environments are a daunting,costly and long-term commitment The recommended measures for protection and restoration of permafrost eco-environments along the pipeline rome include adequate investigation,assessment and monitoring of permafrost and cold-region environments,compliance of pipeline construction and operation codes for environmental management,proper and timely re-vegetation,returning the cultivated lands to forests and grasslands,and effective mitigation of forest fire hazards.

论文截图
版权:如无特殊注明,文章转载自网络,侵权请联系cnmhg168#163.com删除!文件均为网友上传,仅供研究和学习使用,务必24小时内删除。