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Runoff rates, chemical speciation and bioavailability of copper released from naturally patinated copper

机译:天然成铜铜释放出的铜的径流率,化学形态和生物利用度

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The release of copper, induced by atmospheric corrosion, from naturally patinated copper of varying age (0 and 30 years) has been investigated together with its potential ecotoxic effect. Results were generated in an interdisciplinary research effort in which corrosion science and ecotoxicology aspects were combined. The aim of the investigation was to elucidate the situation when copper-containing, rainwater leaves a roof in terms of runoff rate, chemical speciation, bioavailability and ecotoxicity effects. Data have been collected during a three-year field exposure conducted in the urban environment of Stockholm, Sweden. The potential environmental effects have been evaluated using a combination of a copper specific biosensor test with the bacterium Alcaligenes etitro-phus and the conventional 72-h growth inhibition test with the green alga Raphidocelis subcapitata. The results show annual runoff rates between 1.0 and 1.5 g/m~2 year for naturally patinated copper of varying age. The runoff rate increased slightly with patina age, which mainly is attributed to the enhanced first flush effect observed on thicker patina layers. The total copper concentration in investigated runoff samplings ranged from 0.9 to 9.7 mg/1. Both computer modeling and experimental studies revealed that the majority (60-100%) of released copper was present as the free hydrated cupric ion, Cu(H_2O)_6~(2+), the most bioavailable copper species. However, other copper species in the runoff water, such as, e.g. Cu(OH)~+ and Cu_2(OH)_2~(2+), were also bioavailable. The copper-containing runoff water, sampled directly after release from the roof, caused significant reduction in growth rate of the green alga. It should be emphasized that the results describe the runoff situation immediately after release from the copper roof and not the real environmental ecotoxicity. Therefore the data should only be used as an initial assessment of the potential environmental effect of copper runoff from building applications. Future risk assessments should also consider dilution effects of copper, changes in its chemical speciation and bioavailability during environmental entry, and type and sensitivity of the receiving ecosystem.
机译:已经研究了大气腐蚀引起的铜从不同年龄(0和30年)的天然镀锡铜中的释放及其潜在的生态毒性作用。跨学科研究成果是腐蚀科学和生态毒理学方面相结合的结果。调查的目的是从径流率,化学形态,生物利用度和生态毒性方面阐明含铜雨水离开屋顶的情况。数据是在瑞典斯德哥尔摩的城市环境中进行的三年现场暴露期间收集的。潜在的环境影响已通过将铜特异性生物传感器测试与细菌Alcaligenes etitrophus结合使用常规的72小时生长抑制测试与绿藻Raphidocelis subcapitata结合起来进行了评估。结果表明,不同年龄的天然镀锡铜的年径流量在1.0至1.5 g / m〜2年之间。径流率随古铜色年龄而略有增加,这主要归因于在较厚的古铜色层上观察到的首次冲洗效果增强。调查的径流样品中的总铜浓度范围为0.9至9.7 mg / 1。计算机建模和实验研究均表明,释放的铜的大部分(60-100%)以游离水合铜离子Cu(H_2O)_6〜(2+)的形式存在,是生物利用度最高的铜。然而,径流水中的其他铜种类,例如Cu(OH)〜+和Cu_2(OH)_2〜(2+)也可生物利用。从屋顶释放后直接取样的含铜径流水导致绿藻的生长速度显着降低。应该强调的是,结果描述的是从铜屋顶释放后立即产生的径流情况,而不是真实的环境生态毒性。因此,这些数据仅应用作对建筑应用中铜径流潜在环境影响的初步评估。未来的风险评估还应考虑铜的稀释效应,环境进入过程中铜的化学形态和生物利用度的变化以及接收生态系统的类型和敏感性。

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