Department of Environmental Engineering, Delhi Technological University, Shahbad Daulatpur, Delhi, 110042, India.
Environ Sci Pollut Res Int. 2022 Jan;29(5):6670-6677. doi: 10.1007/s11356-021-16079-4. Epub 2021 Aug 28.
Mining of minerals exerts adverse pressure on different compartments of environment directly or indirectly. Air is the worst affected environmental matrix, and it can carry the harmful effect of pollutants generated from mining activity even to distant places. The present study was undertaken to estimate the emission of particulate matter (PM and PM) from different activities undertaken in stone quarrying in Mahendragarh, Haryana. The results obtained from the present study indicated that drilling, blasting, crushing, and transport of mined material are chiefly responsible for the generation of dust. Whereas drilling, blasting, and loading were responsible for emission of higher fraction of PM, crushing and re-suspension of roadside dust from movement of vehicles resulted in generation of relatively higher fraction of finer dust (PM). Modelling the transport of dust over the Hybrid Single-Particle Lagrangian Integrated Trajectory model revealed that the emitted particle may move up to the distance of about 40 km within 4 h of emission under average meteorological conditions. Fourier transform infrared (FTIR) spectroscopy analysis of dust confirmed the presence of calcite and gypsum, thus confirming the source as mining. The study concluded that generation of PM-sized particles may impose serious respiratory health effects over the workers engaged in mining, crushing, and transportation of sandstone. Apart from it, population residing downwind of the mining area is particularly vulnerable to the pulmonary effects due to inhalation of dust.
采矿活动直接或间接地对环境的不同部分施加了不利压力。空气是受影响最严重的环境基质,它可以携带采矿活动产生的污染物的有害影响,甚至传播到遥远的地方。本研究旨在估计哈里亚纳邦马亨德拉加尔地区采石场不同活动产生的颗粒物(PM 和 PM)的排放。本研究的结果表明,钻孔、爆破、粉碎和开采物料的运输是产生粉尘的主要原因。而钻孔、爆破和装载是产生较高比例 PM 的主要原因,而车辆行驶引起的路边灰尘的粉碎和再悬浮则导致较细粉尘(PM)的生成比例相对较高。使用混合单粒子拉格朗日积分轨迹模型对粉尘的传输进行建模表明,在平均气象条件下,排放后 4 小时内,排放的颗粒可能移动到约 40 公里的距离。粉尘的傅里叶变换红外(FTIR)光谱分析证实了方解石和石膏的存在,从而证实了来源是采矿。研究得出结论,PM 粒径颗粒的生成可能会对从事砂岩采矿、粉碎和运输的工人造成严重的呼吸健康影响。除此之外,由于吸入粉尘,矿区下风处的居民特别容易受到肺部影响。