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Synthetic Iron Oxides for Adsorptive Removal of Arsenic

机译:合成铁氧化物对砷的吸附去除

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Removal of arsenic from water reservoirs is the issue of great concern in many places around the globe. As adsorption is one of the most efficient techniques for treatment of As-containing media, thus the present study concerns application of iron oxides-hydroxides (akaganeite) as adsorbents for removal of this harmful metal from aqueous solution. Two types of akaganeite were tested: synthetic one (A) and the same modified using hexadecyltrimethylammonium bromide (A(M)). Removal of As was tested in batch studies in function of pH, adsorbent dosage, contact time, and initial arsenic concentration. The adsorption isotherms obey Langmuir mathematical model. Adsorption kinetics complies with pseudo-second-order kinetic model, and the constant rates were defined as 2.07 x 10(-3)and 0.92 x 10(-3) g mg(-1) min(-1) for the samples (A) and (A(M)), respectively. The difference was caused by significant decrease in adsorption rate in initial state of the process carried out for the sample A(M). The maximum adsorption capacity achieved for (A) and (A(M)) akaganeite taken from Langmuir isotherm was 148.7 and 170.9 mg g(-1), respectively. The results suggest that iron oxides-hydroxides can be used for As removal from aqueous solutions.
机译:从水库中去除砷是全球许多地方非常关注的问题。由于吸附是处理含As介质的最有效技术之一,因此,本研究涉及使用氧化铁-氢氧化铁(赤铁矿)作为吸附剂从水溶液中去除这种有害金属。测试了两种类型的赤霞石:合成的一种赤霞石(A)和使用十六烷基三甲基溴化铵(A(M))改性的赤霞石。在pH,吸附剂量,接触时间和初始砷浓度的函数中,对砷的去除进行了分批研究。吸附等温线符合Langmuir数学模型。吸附动力学符合伪二级动力学模型,样品的恒定速率定义为2.07 x 10(-3)和0.92 x 10(-3)g mg(-1)min(-1)(A )和(A(M))。差异是由于在样品A(M)进行的过程初始状态下吸附速率显着下降所致。取自Langmuir等温线的(A)和(A(M))赤铁矿的最大吸附容量分别为148.7和170.9 mg g(-1)。结果表明,可使用氧化铁-氢氧化铁从水溶液中去除As。

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