摘要
现阶段,社会的飞速发展带来了越来越严重的环境污染问题,尤其是水源污染,已经成为区域性水环境问题。水污染具有整体性和多元性的特征,治理难度较高,如果治理措施不合理,易导致出现区域性、流域性的公共事件。为有效提高水污染监测技术的准确性,实现协同控制的理想目标,我们需要深入研究区域生态环境水污染监测与协同控制技术,以GIS平台为载体展开水污染监测建模、构建协同控制模型,以达到良好的控制效果。本文结合区域生态环境水污染的监测与协同控制技术展开分析,探讨水污染防治规划的基本概念及背景,解读区域生态环境监测与协同控制的内涵,并基于区域生态环境水污染监测与协同控制的重要性,探讨了有效监测与协同控制策略,以有效发挥该技术的应用价值,解决环境水污染问题。
At this stage,the rapid development of the whole society has brought more and more serious environmental pollution problems,especially water source pollution,which has become a regional water environment problem.Therefore,it is difficult to control water pollution,which is characterized by integrity and diversity.If the manipulation is unreasonable,regional and watershed public events are likely to occur.In order to effectively improve the accuracy of water pollution monitoring technology and achieve the ideal goal of collaborative control,it is required to deeply study the monitoring and collaborative control technology of regional ecological environment water pollution,carry out water pollution monitoring modeling with GIS platform as the carrier,build a collaborative control model,and finally achieve good control effect.This paper analyzes the monitoring and collaborative control technology of regional ecological environment water pollution,discusses the basic concept and background of water pollution prevention and control planning,interprets the connotation of regional ecological environment monitoring and collaborative control,and discusses effective monitoring and collaborative control strategies according to the significance of regional ecological environment water pollution monitoring and collaborative control,to effectively exert the application value of this technology and solving the problem of environmental water pollution.
作者
王宏
Wang Hong(Tongliao Branch of Inner Mongolia Environmental Monitoring Station,Tongliao 028000,China)
出处
《皮革制作与环保科技》
2022年第22期121-123,共3页
Leather Manufacture and Environmental Technology
关键词
区域生态环境
水污染
监测与协同控制
技术分析
regional ecological environment
water pollution
monitoring and collaborative control
technical analysis