College of Environmental Science and Engineering, Hunan University, Changsha, 410082, China.
Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of Education, Changsha, 410082, China.
Environ Sci Pollut Res Int. 2016 Mar;23(5):4370-86. doi: 10.1007/s11356-016-6076-8. Epub 2016 Jan 14.
The management and treatment of contaminated sediment is a worldwide problem and poses major technical and economic challenges. Nowadays, various attempts have been committed to investigating a cost-effective way in contaminated sediment restoration. Among the remediation options, in situ capping turns out to be a less expensive, less disruptive, and more durable approach. However, by using the low adsorption capacity materials, traditional caps do not always fulfill the reduction of risks that can be destructive for human health, ecosystem, and even natural resources. Active caps, therefore, are designed to employ active materials (activated carbon, apatite, zeolite, organoclay, etc.) to strengthen their adsorption and degradation capacity. The active capping technology promises to be a permanent and cost-efficient solution to contaminated sediments. This paper provides a review on the types of active materials and the ways of these active materials employed in recent active capping studies. Cap design considerations including site-specific conditions, diffusion/advection, erosive forces, and active material selection that should be noticed in an eligible remediation project are also presented.
受污染沉积物的管理和处理是一个全球性问题,给技术和经济带来了重大挑战。如今,人们一直在努力寻找一种具有成本效益的受污染沉积物修复方法。在各种修复选择中,原位覆盖法是一种成本较低、破坏性较小、更持久的方法。然而,由于使用了吸附能力低的材料,传统覆盖层并不能总是降低对人类健康、生态系统甚至自然资源具有破坏性的风险。因此,活性覆盖层被设计用来使用活性材料(活性炭、磷灰石、沸石、有机粘土等)来增强其吸附和降解能力。活性覆盖技术有望成为一种永久性的、具有成本效益的受污染沉积物解决方案。本文综述了近年来活性覆盖研究中使用的活性材料类型和应用方式。还介绍了在合格的修复项目中应注意的覆盖设计考虑因素,包括特定场地条件、扩散/对流、侵蚀力和活性材料选择。