使用生物监测来识别关键基础设施项目中的危害

Вікторія Олександрівна Хрутьба, Олена Василівна Барабаш, Вадим Ігорович Зюзюн, Дмитро Сергійович Нєвєдров
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引用次数: 0

摘要

本研究探讨了将生物监测纳入关键基础设施项目环境影响评估过程的可能性。关键基础设施项目包括与关键基础设施建设、改造和运营相关的项目。关键基础设施项目可能对环境有害,但及时确定关键基础设施项目对环境和公共卫生状况的性质、强度和危险程度,将能够防止表现过程,从而促进成功实施。确定了实施环境影响评价程序的特殊性及其作为项目在整个生命周期中成功通过的一个因素的重要性。已经确定,全面的环境影响评价程序将有助于作出有利于环境的无害环境管理决定。研究了关键基础设施项目环境影响评价算法。在研究人工林个体发育各阶段稳定性的基础上,采用树木指示法对大气污染进行了快速评估,以识别关键基础设施项目的危害。树木指示法的实际应用将提高检测大气中二氧化硫的可能性,并估计植物有机体的人为负荷的总价值。可以确定的是,使用树木学作为进行环境影响评价的另一种方法,将大大增加在查明关键基础设施项目的危害方面的机会,特别是在重建和运作这些项目的项目活动方面。在项目活动中应用建议的方法将有助于减少它们对环境状况可能产生的负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
USE OF BIOMONITORING TO IDENTIFY HAZARDS IN CRITICAL INFRASTRUCTURE PROJECTS
The study addresses the possibility of integrating biomonitoring into the environmental impact assessment process of critical infrastructure projects. It has been established that critical infrastructure projects include projects related to the construction, reconstruction and operation of critical infrastructure facilities. Critical infrastructure projects can be hazardous to the environment, but the timely identification of the nature, intensity, degree of danger of the critical infrastructure project for the state of the environment and public health will be able to prevent processes of manifestation and accordingly promote successful implementation. The peculiarities of carrying out the procedure of environmental impact assessment and its importance as a factor of successful passage of the project throughout the life cycle are determined. It has been established that a comprehensive environmental impact assessment procedure will help to make environmentally sound management decisions that will benefit the environment. An algorithm for carrying out environmental impact assessment for critical infrastructure projects has been developed. A rapid assessment of atmospheric air pollution was carried out using the method of dendroindication based on the study of the stability of tree plantations at all stages of ontogenesis to identify hazards in projects of critical infrastructure. Practical application of the method of dendroindication will allow to improve the possibilities for the detection of sulfur dioxide in the atmosphere and to estimate the total value of anthropogenic load on plant organisms. It is established that the use of dendrology as an additional method in carrying out the environmental impact assessment will significantly increase the opportunities in the field of hazard identification for critical infrastructure projects, especially in the aspect of project activities for their reconstruction and operation. The application of the proposed method in the project activities will help to reduce their possible negative impact on the state of the environment.
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