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The adsorption mechanism of uranium(VI) from seawater on a macroporous fibrous polymeric adsorbent containing amidoxime chelating functional group

机译:含a胺肟螯合官能团的大孔纤维聚合物吸附剂对海水中铀(VI)的吸附机理

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To adsorb and recover uranium(VI) from seawater, an improved macroporous fibrous polymeric adsorbent containing amidoxime chelating functional group (FPAO) was synthesized by irradiation-induced graft polymerization utilizing methacrylic acid (MAA) as a hydrophilic monomer. The adsorption mechanism of U(VI) on FPAO adsorbent was investigated in a wide pH range by the method of the thermodynamics. It was found that the pH value at different conditions had significant effect on the adsorption of U(VI) on FPAO adsorbent. The adsorption ability of FPAO for U(VI) increased from pH 2.0 to pH 6.0 and decreased from pH 6.0 to pH 9.0. U(VI) was effectively adsorbed by FPAO adsorbent at around pH 6.0. The predominant composition of resulting the mononuclear complex was determined as UO_(2·)2R-C(NO)NH_2 by investigating the effect of the concentrations of U(VI), FPAO, H~+ and Cl~- on the adsorption reaction. The adsorption equilibrium equation of U(VI) on FPAO adsorbent was expressed as UO_2OH)_(aq)~+ + 2R-C(NOH)NH_(2(fp)) reversible UO_(2·)2R-C(NO)NH_(2(fp)) + H_(aq)~+ + H_2O. The overall adsorption equilibrium constant was calculated to be K_(ad) = 7.08 x 10~7 M~(-1) at ionic strength of 0.1 M at 25 ℃. A monolayer molecule adsorption mechanism between U(VI) and FPAO was also determined by examining the relationships between the adsorbed amount of U(VI) and contact time.
机译:为了从海水中吸附和回收铀(VI),使用甲基丙烯酸(MAA)作为亲水单体,通过辐射诱导的接枝聚合反应合成了一种改良的含macro胺肟螯合官能团(FPAO)的大孔纤维状聚合物吸附剂。用热力学方法研究了在宽pH范围内U(VI)在FPAO吸附剂上的吸附机理。发现不同条件下的pH值对U(VI)在FPAO吸附剂上的吸附有显着影响。 FPAO对U(VI)的吸附能力从pH 2.0增加到pH 6.0,从pH 6.0降低到pH 9.0。在pH 6.0左右,FPAO吸附剂可有效吸附U(VI)。通过研究U(VI),FPAO,H〜+和Cl〜-的浓度对吸附反应的影响,确定得到的单核络合物的主要组成为UO_(2·)2R-C(NO)NH_2。 U(VI)在FPAO吸附剂上的吸附平衡方程表示为UO_2OH)_(aq)〜+ + 2R-C(NOH)NH_(2(fp))可逆UO_(2·)2R-C(NO)NH_ (2(fp))+ H_(aq)〜+ + H_2O。在25℃离子强度为0.1 M时,总吸附平衡常数经计算为K_(ad)= 7.08 x 10〜7 M〜(-1)。通过检查U(VI)的吸附量和接触时间之间的关系,还确定了U(VI)和FPAO之间的单分子吸附机理。

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