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首页> 外文期刊>Journal of the air & waste management association >Assessing The Current And Future Impacts Of The Disposal Of Chromated Copper Arsenate-treated Wood In Unlined Landfills
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Assessing The Current And Future Impacts Of The Disposal Of Chromated Copper Arsenate-treated Wood In Unlined Landfills

机译:评估无衬里垃圾填埋场处理铬酸砷铜处理木材的当前和未来影响

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Several states have recently considered altering disposal requirements for chromated copper arsenate (CCA)-treated wood waste, particularly Florida, where CCA-treated wood waste is disposed in unlined construction and demolition (C&D) debris and Class III municipal solid waste (MSW) landfills. The primary concern is the potential for CCA-treated wood waste to elevate arsenic levels in groundwater downgradient of the disposal sites. To address this concern, we evaluated the impact of past disposal practices of these wastes in unlined Florida C&D and Class III landfills by conducting a statistical analysis of two sets of groundwater data compiled by the Florida Department of Environmental Protection (FDEP). The databases contain water quality data from C&D and Class III landfills in Florida covering 15 yr of record from February 1992 through February 2007 and together provide the most complete datasets to evaluate this issue. Comparative statistics of the different population groups in therndatabases showed that the arithmetic mean concentrations of total arsenic were in most cases higher in background wells than in wells downgradient of the landfills. The statistical analysis indicates that past disposal of CCA-treated wood in C&D and Class III landfills in Florida has not increased arsenic levels downgradient of the landfills. Policy decisions regarding the continued disposal of CCA-treated wood waste as a nonhazardous waste in unlined landfills must therefore be based on a scientifically sound assessment of potential future impacts. Quantitative predictions of future impacts are difficult and pose several scientific challenges. Therefore, future management decisions should be based on a more accurate and comprehensive risk analysis that assesses the risks and benefits of different alternatives and takes into account the natural attenuation capacity of soils and aquifer solids for arsenic and the practical limitations of managing this waste stream as a hazardous waste.
机译:几个州最近考虑改变对铬酸砷酸铜(CCA)处理的木材废物的处理要求,特别是在佛罗里达州(佛罗里达州),将经过CCA处理的木材废物处理在未衬砌的建筑和拆除(C&D)垃圾和III类城市固体废物(MSW)垃圾填埋场中。主要关注的问题是,经过CCA处理的木材废料有可能提高处置场址地下水降级中的砷含量。为了解决这一问题,我们通过对佛罗里达环境保护局(FDEP)汇编的两组地下水数据进行统计分析,评估了这些废物在佛罗里达州未拆封的C&D和III类垃圾填埋场中过去处置方式的影响。该数据库包含来自佛罗里达州C&D和III类垃圾填埋场的水质数据,涵盖从1992年2月到2007年2月的15年记录,并一起提供了最完整的数据集来评估这一问题。数据库中不同人群的比较统计表明,在大多数情况下,本底井中总砷的算术平均浓度高于垃圾填埋场降级井中的总砷浓度。统计分析表明,过去在佛罗里达州的C&D和III类垃圾填埋场中使用CCA处理过的木材并没有增加砷含量,降低了垃圾填埋场的等级。因此,关于在无衬里的垃圾填埋场中继续处理经CCA处理的木材废物作为无害废物的政策决定,必须基于对未来潜在影响的科学合理评估。对未来影响的定量预测是困难的,并带来了一些科学挑战。因此,未来的管理决策应基于更准确,更全面的风险分析,该分析评估各种替代方案的风险和收益,并考虑土壤和含水层固体对砷的自然衰减能力以及管理该废物流的实际局限性。危险废物。

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