Reddy M K, Rao K G Rama, Rao I Rammohan
NEERI Zonal Laboratory, Hyderabad, India.
Environ Monit Assess. 2004 Jul;95(1-3):1-12. doi: 10.1023/b:emas.0000029899.31965.33.
Industrial development in Visakhapatnam is conspicuous to urban agglomeration and the city is located in a topographical bowl formed by two-hill ranges. A major portion of the city is within the bowl area wherein most of the industrial and commercial activities are existing and lies within a distance of 10 km from the shore of the Bay of Bengal. Due to the peculiar geographic location of city, wind movement is either eastern or western and is engulfed within the hill ranges. Hence, there is a possibility of buildup of air pollution levels within the city. Due to gravity of prevailing situation, air quality status of Visakhapatnam on indices basis is analyzed using a non-linear equation for variable parameters i.e. Suspended particulate matter (SPM). Sulfur dioxide (SO2) and Oxides of nitrogen (NO(x)), which are main criteria pollutants in India. For current analysis seasonal air quality data is used, which indicates SPM values in winter at most of the sites and in summer at few sites are exceeding the prescribed standards. Calculated indices reveal that, in winter as well as in summer, most of the locations experienced poor or bad air quality, which is mainly due to higher concentration of SPM and certain extent of SO2 values. Application of Oak Ridge Air Quality Index (ORAQI) type equations (non-linear) are helpful for air quality management plan in the region on long-term basis and it has been also observed that there are certain lapses of weightage assignment for individual pollutant in application.
维沙卡帕特南的工业发展在城市群中十分显著,该市位于由两座山脉形成的地形盆地之中。城市的大部分区域位于盆地内,这里存在着大部分工商业活动,且距离孟加拉湾海岸不到10公里。由于城市独特的地理位置,风的移动方向要么是向东要么是向西,并且被山脉包围。因此,城市内部存在空气污染水平上升的可能性。鉴于当前形势的严重性,利用一个针对可变参数(即悬浮颗粒物(SPM)、二氧化硫(SO2)和氮氧化物(NO(x)),这些是印度主要的标准污染物)的非线性方程,对维沙卡帕特南的空气质量状况进行了基于指标的分析。对于当前分析,使用了季节性空气质量数据,该数据表明在大多数监测点冬季的SPM值以及少数监测点夏季的SPM值超过了规定标准。计算得出的指标显示,冬季和夏季大部分地区的空气质量都很差,这主要是由于SPM浓度较高以及一定程度的SO2值所致。应用橡树岭空气质量指数(ORAQI)类型的方程(非线性)有助于该地区长期的空气质量管理计划,并且还观察到在应用中对单个污染物的权重分配存在一定缺陷。