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A nappies management by-product for the treatment of uranium-contaminated waters

机译:用于治疗铀污染水域的尿布管理副产品

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The direct disposal of municipal solid waste such as nappies to the environment may create serious pollution problems. Based on the circular economy and waste management concepts, the conversion of nappies and/or their ingredients (such as super absorbent polymer (SAP)) to high added value products is of great importance. In this work, a modified SAP (MSAP) was examined as an adsorbent for treatment of contaminated waters and uranium recovery. Batch experiments and spectroscopic techniques were used to examine the effect of various parameters (pH, contact time, temperature, initial concentration, and ionic strength), and the mechanism of adsorption U(VI) and desorption process. The U(VI) concentration was determined by alpha spectroscopy after addition of U-232 standard tracer solution to account for possible interferences during electrodeposition and alpha particle counting. The maximum adsorption monolayer capacity was found to be 217.4 mg/g at pH 4.0 and at 298 K. The adsorption of U(VI) on MSAP seems to occur mainly via the formation of inner-sphere surface complexes between U(VI) and the carboxylic surface moieties of MSAP. The MSAP could satisfactorily be regenerated with 0.1 M Na2CO3 (90%) and it also shows a promising applicability to real wastewaters contaminated with U(VI).
机译:城市固体废物直接处置,如尿布到环境可能会产生严重的污染问题。基于循环经济和废物管理概念,将尿布和/或其成分(如超级吸水性聚合物(SAP))转化为高附加值产品具有重要意义。在这项工作中,将修饰的SAP(MSAP)作为吸附剂,用于治疗污染的水域和铀恢复。用于检查各种参数(pH,接触时间,温度,初始浓度和离子强度)的效果的分批实验和光谱技术,以及吸附u(VI)和解吸过程的机理。在加入U-232标准示踪剂溶液后,通过α光谱法测定U(VI)浓度,以考虑电沉积和α粒子计数的可能干扰。在pH 4.0和298k时发现最大吸附单层容量为217.4mg / g。在MSAP上的吸附似乎主要通过形成U(VI)和所述内部球体表面复合物而发生MSAP的羧基表面部分。 MSAP可以令人满意地再生0.1M Na 2 CO 3(> 90%),并且还显示出对与U(VI)污染的真实废水器的有希望的适用性。

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