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作 者:任俊树[1] 牟涛[1] 杨胜亚[1] 赵玉杰[1] 罗顺全[1]
出 处:《核化学与放射化学》2008年第4期201-205,共5页Journal of Nuclear and Radiochemistry
摘 要:针对含盐量较高的低放废水开展了絮凝沉淀处理技术研究。结果表明,钚在碱性条件下可被有效去除,增大絮凝剂投加量及降低废水初始pH可以提高铀的絮凝效果。pH的控制是获得铀的高去除率的关键。当Fe2+投加量为100 mg/L、废水初始pH为6时,铀的去除率可达95.5%以上。采用两次絮凝沉淀的方法,第二次沉淀时调节pH<7.0,Fe2+投加量控制在80 mg/L左右,可以使出水铀质量浓度降到10μg/L以下。Treatment of low level radioactive wastewater with high salinity by flocculation was studied. The results show that plutonium can be removed effectively in alkaline condition, and that flocculation of uranium can be improved by increasing the dosage as well as decreasing the pH. The pH control is critical to obtaining high removal efficiency of uranium. The removal efficiency of uranium is over 95.5% by adjusting the pH to 6 and adding Fe^2+ at a dosage of 100 mg/L. Two-step flocculation method was studied. The concentration of uranium after the second flocculation is lower than 10μg/L by adjusting the pH〈7.0 and adding Fe^2+ at a dosage of about 80 mg/L.
分 类 号:X591[环境科学与工程—环境工程]
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