Hsieh Ching-Hong, Lo Shang-Lien, Hu Ching-Yao, Shih Kaimin, Kuan Wen-Hui, Chen Ching-Lung
Research Center for Environmental Pollution Prevention and Control Technology, Graduate Institute of Environmental Engineering, National Taiwan University, 71 Chou-Shan Road, Taipei 106, Taiwan, ROC.
Chemosphere. 2008 Apr;71(9):1693-700. doi: 10.1016/j.chemosphere.2008.01.006. Epub 2008 Feb 15.
Industrial wastewater sludge was treated by microwave processes to enhance the stabilization of laden copper. The effects of additives, processing time, microwave adsorbents, moisture content, reaction atmosphere, and cooling gas were investigated. The stabilization results were significantly enhanced by metal powder additives, prolonged microwave processing time, proper moisture content, the addition of carbonaceous materials, and a reaction environment with inert gas. It was also found that the moisture content would increase the homogeneity of applied microwave energy, and thus achieve a better overall efficiency between stabilizing agents and copper. The added metal powders may reduce Cu(II) to Cu(0) in the sludge or TCLP. The resulting thermal energy of microwave radiation, and microarcing process and the oxidation heat of Al powder may also assist the transformation of Cu(II) into CuO and CuAl2O4 phases. Part of the sludge was vitrified within inert gas environment when the processing time was longer than 18 min and active carbon dosage was more than 3g. Reduction reactions also occurred in the hybrid microwave processes, leading to the reduction of sulfates and metal ions, and the formation of Cu2S and FeS. Moreover, the microwave radiation can also enhance the feasibility of co-treating of inorganic and organic solid waste.
采用微波工艺处理工业废水污泥,以提高负载铜的稳定性。研究了添加剂、处理时间、微波吸附剂、含水量、反应气氛和冷却气体的影响。金属粉末添加剂、延长微波处理时间、适当的含水量、添加含碳材料以及在惰性气体反应环境下,显著提高了稳定化效果。还发现,含水量会增加微波能量施加的均匀性,从而在稳定剂和铜之间实现更好的整体效率。添加的金属粉末可能会将污泥或TCLP中的Cu(II)还原为Cu(0)。微波辐射产生的热能、微电弧过程以及铝粉的氧化热也可能有助于将Cu(II)转化为CuO和CuAl2O4相。当处理时间超过18分钟且活性炭用量超过3克时,部分污泥在惰性气体环境中发生玻璃化。混合微波过程中也发生了还原反应,导致硫酸盐和金属离子的还原,以及Cu2S和FeS的形成。此外,微波辐射还可以提高无机和有机固体废物协同处理的可行性。