Department of Environmental Science on Biosphere, Tokyo University of Agriculture and Technology, Tokyo, Japan.
Fukushima Branch, National Institute for Environmental Studies, 10-2, Fukasaku, Miharu-machi, Fukushima Prefecture, 963-7700, Japan.
Sci Rep. 2019 Mar 14;9(1):4499. doi: 10.1038/s41598-019-40634-2.
This study compared state of pollution around an intermediate treatment plant of industrial wastes before and after the change of its treatment procedure. Bulk atmospheric deposition, surface soil, suspended particulate matter and groundwater were collected after the plant changed main operation to waste crushing and volume reduction. Their heavy metals content were comparatively investigated with the previous results obtained when it was burning wastes. The bulk heavy metals deposition showed a clear distance-related attenuation both in burning and crushing periods, indicating that the plant was the main emissions source in either case. High concentrations of heavy metals in suspended particles, soil, and groundwater during the crushing period indicated their diffusion to water environment over time. The bulk atmospheric heavy metals deposition decreased significantly, 0.20~ 0.49 times for Cu, Zn, Cd and Pb and 0.69~0.94 times for Cr, during the crushing period than burning period. However, change of their enrichment factors was not significant. It may indicate that the pollution state did not change qualitatively in a bulk deposition basis and quantitatively in a depositing particle basis. The results showed that heavy metals deposition is dominated by suspended and precipitated particulate matters that adsorb and transport the metals.
本研究比较了工业废物中间处理厂在改变处理程序前后的污染状况。在工厂将主要作业改为废物破碎和体积减小后,采集了大气沉降物、地表土壤、悬浮颗粒物和地下水样本,并对其重金属含量进行了调查,与之前燃烧废物时获得的结果进行了比较。在燃烧和破碎两个时期,大气重金属沉降物均表现出明显的距离相关衰减,这表明无论哪种情况,该工厂都是主要的排放源。在破碎时期,悬浮颗粒物、土壤和地下水中的重金属浓度较高,表明它们随着时间的推移向水环境扩散。在破碎时期,大气重金属沉降物的 Cu、Zn、Cd 和 Pb 含量分别显著降低了 0.200.49 倍,Cr 含量降低了 0.690.94 倍,显著低于燃烧时期。然而,它们的富集因子变化并不显著。这可能表明,在大气沉降物基础上,污染状况没有发生质的变化,而在沉降颗粒物基础上,污染状况没有发生量的变化。研究结果表明,重金属沉降主要由吸附和传输金属的悬浮和沉淀颗粒物所主导。