Department of Mathematics, 103 Neil Hall, Washington State University, Pullman, WA 99164, USA.
Department of Wood Science and Engineering, 230 Richardson Hall, Oregon State University, Corvallis, OR 97331, USA.
J Environ Manage. 2015 Apr 1;152:268-72. doi: 10.1016/j.jenvman.2015.02.001. Epub 2015 Feb 7.
Migration of heavy metals into aquatic environments has become a concern in some regions of the world. Many wood preservatives are copper based systems that have the potential to migrate from the wood and into the surrounding environment. Some wood treaters have developed "best management practices" (BMPs) that are designed to reduce the risk of migration, but there are few comparative studies assessing the efficacy of these processes. The potential for using various heating combinations to limit copper migration was assessed using ammoniacal coper zinc arsenate treated Douglas-fir lumber. Kiln drying and air drying both proved to be the most effective methods for limiting copper migration, while post-treatment steaming or hot water immersion produced more variable results. The results should provide guidance for improving the BMP processes.
重金属向水生环境的迁移已经成为世界上一些地区关注的问题。许多木材防腐剂都是以铜为基础的系统,它们有可能从木材中迁移到周围环境中。一些木材处理商已经制定了“最佳管理实践”(BMPs),旨在降低迁移风险,但很少有比较研究来评估这些过程的效果。本研究使用氨铜锌砷酸处理的花旗松木材评估了各种加热组合限制铜迁移的潜力。窑干和风干都被证明是限制铜迁移最有效的方法,而蒸汽后处理或热水浸泡则产生了更可变的结果。研究结果应为改进 BMP 工艺提供指导。