Fakinle Bamidele Sunday, Uzodinma Odera Bassey, Odekanle Ebenezer Leke, Sonibare Jacob Ademola
Department of Chemical Engineering, Landmark University, Omu-Aran, Nigeria.
Department of Chemical Engineering, Obafemi Awolowo University, Ile-Ife, Nigeria.
Heliyon. 2020 Jan 31;6(1):e03216. doi: 10.1016/j.heliyon.2020.e03216. eCollection 2020 Jan.
The impact of particulate matter on the ambient air quality of Landmark University Farm was assessed using deposition fluxes of Trace elements (TEs) in the airshed of the farm. Deposition gauges were employed to collect both dry and wet deposition samples of particulate matter between 2018 and 2019. Elemental compositions of particulates collected during the sampling period were analyzed using Energy Dispersive X-ray Fluorescence Spectroscopy (ED-XRF). The deposition fluxes of crustal and anthropogenic trace elements were also determined using standard methods. Results showed that in dry season, iron has the highest mean concentration (3283.61 mg/kg), while chromium has the lowest (0.023 mg/kg). On the other hand, in wet season, silicon and nickel have the highest and lowest mean concentrations of 159.34 mg/kg and 0.01 mg/kg respectively. Although the concentrations of these metals were higher in the dry season than wet season, there was no statistical significant difference between the mean concentrations of the elements measured in each season of the year (p > 0.05). The compositions of some of the elements in the particulate matters were found to be far above the recommended exposure limits prescribed by OSHA. The study concluded that the elemental composition of particulate matter in the airshed of the University Farm adversely impacts the ambient air quality of the Community.
利用农场空气流域中微量元素(TEs)的沉积通量评估了颗粒物对地标大学农场环境空气质量的影响。在2018年至2019年期间,使用沉积测量仪收集了颗粒物的干湿沉降样品。使用能量色散X射线荧光光谱仪(ED-XRF)分析了采样期间收集的颗粒物的元素组成。还使用标准方法测定了地壳和人为微量元素的沉积通量。结果表明,在旱季,铁的平均浓度最高(3283.61毫克/千克),而铬的平均浓度最低(0.023毫克/千克)。另一方面,在雨季,硅和镍的平均浓度最高和最低,分别为159.34毫克/千克和0.01毫克/千克。尽管这些金属的浓度在旱季高于雨季,但在一年中每个季节测量的元素平均浓度之间没有统计学上的显著差异(p>0.05)。发现颗粒物中某些元素的组成远高于职业安全与健康管理局(OSHA)规定的推荐接触限值。该研究得出结论:大学农场空气流域中颗粒物的元素组成对社区的环境空气质量产生了不利影响。