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首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Weathering and Dissolution Rates Among Pb Shot Pellets of Differing Elemental Compositions Exposed to Various Aqueous and Soil Conditions
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Weathering and Dissolution Rates Among Pb Shot Pellets of Differing Elemental Compositions Exposed to Various Aqueous and Soil Conditions

机译:在水和土壤条件下暴露的不同元素组成的铅丸的风化和溶出速率

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The present study was performed to investigate the weathering and dissolution rates of Pb shot pellets differing in elemental composition (Pb, Sb, and As) exposed under various aqueous and soil conditions using five commercial shot pellet preparations. Upon immersion in distilled water, the dissolution rates of shot pellets, calculated from the difference in weight before versus after immersion, decreased with increasing Sb + As contents and the dominant precipitate was hydrocerussite. These subsidiary ingredients may be related to the difficulty of metallic Pb oxidation (transformation to PbO). Weight losses standardized by the amount of rainfall upon exposure to rainfall on open grassland and under canopies of Japanese cedar (Cryptomeria japonica) and bamboo-leafed oak (Quercus myrsinaefolia) were 1.11, 1.07, and 7.35 mg g pellets−1 year−1 L−1, respectively, and was also related to Sb + As contents in shot pellets. However, annual dissolution rates of Pb standardized by the amount of rainfall as the soluble fraction at the same sites were 0.72, 0.33, and 0.40 mg Pb g pellets−1 year−1 L−1 in the same order. These trends seemed to be related to the rainfall pH, which induces precipitation of Pb dissolved as PbCO3 under conditions of higher pH at the Q. myrsinaefolia site or organic matter released from leaves, etc., which can form metal complexes. Dissolution rates of shot pellets buried in soils (Cambisol, Fluvisol, Regosol, Andosol) also seemed to be related to the soil pH and dissolved organic matter contents but were about sixfold faster than those with exposure to rainfall.
机译:进行本研究以研究使用五种市售粒料制剂在不同水和土壤条件下暴露的元素组成(Pb,Sb和As)不同的Pb粒料的风化和溶解速率。浸入蒸馏水中后,根据浸入前后重量的差值计算出的丸粒的溶出度随Sb + As含量的增加而降低,主要沉淀物为水陶粒。这些辅助成分可能与金属Pb氧化的困难(转化为PbO)有关。在开阔的草原上以及在日本雪松(Cryptomeria japonica)和竹叶栎(Quercus myrsinaefolia)的冠层下暴露于降雨下的降雨量标准化的重量损失为1.11、1.07和7.35 mg g颗粒 -1 / sup> year -1 L -1 ,也与散粒中Sb + As的含量有关。然而,以降雨量作为同一地点可溶物分数标准化的铅的年溶出率分别为0.72、0.33和0.40 mg Pb g颗粒 -1 year -1 L -1 的顺序相同。这些趋势似乎与降雨pH有关,后者导致在桃金娘科(Q. myrsinaefolia)部位较高的pH值或叶片释放的有机物等条件下诱导PbCO 3 溶解的Pb沉淀。形成金属配合物。埋在土壤中(Cambisol,Fluvisol,Regosol,Andosol)的丸粒的溶解速率似乎也与土壤的pH和溶解有机物含量有关,但比暴露于降雨的速率快六倍。

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