Hot Laboratories and Waste Management Center, Atomic Energy Authority, Cairo 13759, Egypt.
J Hazard Mater. 2009 Dec 15;172(1):416-22. doi: 10.1016/j.jhazmat.2009.07.033. Epub 2009 Jul 15.
The objective of the proposed work was focused to provide promising solid-phase materials that combine relatively inexpensive and high removal capacity of some radionuclides from low-level radioactive liquid waste (LLRLW). Four various zeolite minerals including natural clinoptilolite (NaNCl), natural chabazite (NaNCh), natural mordenite (NaNM) and synthetic mordenite (NaSM) were investigated. The effective key parameters on the sorption behavior of cesium (Cs-134) were investigated using batch equilibrium technique with respect to the waste solution pH, contacting time, potassium ion concentration, waste solution volume/sorbent weight ratio and Cs ion concentration. The obtained results revealed that natural chabazite (NaNCh) has the higher distribution coefficients and capacity towards Cs ion rather than the other investigated zeolite materials. Furthermore, novel impregnated zeolite material (ISM) was prepared by loading Calix [4] arene bis(-2,3 naphtho-crown-6) onto synthetic mordenite to combine the high removal uptake of the mordenite with the high selectivity of Calix [4] arene towards Cs radionuclide. Comparing the obtained results for both NaSM and the impregnated synthetic mordenite (ISM-25), it could be observed that the impregnation process leads to high improvement in the distribution coefficients of Cs+ ion (from 0.52 to 27.63 L/g). The final objective in all cases was aimed at determining feasible and economically reliable solution to the management of LLRLW specifically for the problems related to the low decontamination factor and the effective recovery of monovalent cesium ion.
本研究旨在提供具有前景的固相材料,以从低放废液(LLRLW)中结合相对廉价和高去除能力去除某些放射性核素。研究了四种不同的沸石矿物,包括天然斜发沸石(NaNCl)、天然方沸石(NaNCh)、天然丝光沸石(NaNM)和合成丝光沸石(NaSM)。采用批平衡技术,研究了废溶液 pH 值、接触时间、钾离子浓度、废溶液体积/吸附剂重量比和 Cs 离子浓度对 Cs-134 吸附行为的有效关键参数。结果表明,天然方沸石(NaNCh)对 Cs 离子的分配系数和容量均高于其他研究的沸石材料。此外,通过将杯[4]芳烃双(-2,3-萘并冠-6)负载到合成丝光沸石上,制备了新型浸渍沸石材料(ISM),将丝光沸石的高去除能力与杯[4]芳烃对 Cs 放射性核素的高选择性结合起来。比较 NaSM 和浸渍合成丝光沸石(ISM-25)的结果,可以观察到浸渍过程导致 Cs+离子的分配系数显著提高(从 0.52 提高到 27.63 L/g)。在所有情况下,最终目标都是确定可行且经济可靠的 LLRLW 管理解决方案,特别是针对去污因子低和有效回收单价铯离子的问题。