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首页> 外文期刊>Journal of Hazardous Materials >Characterization of mesoporous rice husk ash (RHA) and adsorption kinetics of metal ions from aqueous solution onto RHA
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Characterization of mesoporous rice husk ash (RHA) and adsorption kinetics of metal ions from aqueous solution onto RHA

机译:介孔稻壳灰(RHA)的表征以及金属离子从水溶液到RHA的吸附动力学

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The present study deals with the characterization of low-cost rice husk ash (RHA) for its various physico-chemical properties and adsorption characteristics of metal ions. The average particle size of RHA was 150.47 μm. Proximate analysis showed the presence of high amount of ash in RHA. Bulk density and the heating value of RHA were 104.9 kg/m~3 and 9.68 MJ/kg, respectively. The pore size distribution results showed that the RHA was predominantly mesoporous. The BET surface area was 36.44 m~2/g. The average pore diameter by BET was 42.603 A. The BJH pore area showed 80% of the pore area due to the mesopores. The polar groups present on the RHA surface imparted considerable cation exchange capacity to it. RHA was found to be an effective adsorbent for the removal of cadmium (Cd(II)), nickel (Ni(II)) and zinc (Zn(II)) metal ions from aqueous solutions. The pH_0 ≈ 6.0 is found to be the optimum for the removal of individual cations from the aqueous solutions by RHA at an optimum dose of 10kg/m~3. The kinetics of adsorption showed that the metal ions adsorption on RHA is a gradual process with quasi-equilibrium being attained in 5 h. The pseudo-second-order kinetics represents the equilibrium data well. The effective diffusion coefficient of the cations onto the RHA is of the order of 10~(-13) m~2/s.
机译:本研究针对低成本稻壳灰(RHA)的各种物理化学性质和对金属离子的吸附特性进行了表征。 RHA的平均粒径为150.47μm。最近的分析表明,RHA中存在大量的灰分。 RHA的堆积密度和发热量分别为104.9 kg / m〜3和9.68 MJ / kg。孔径分布结果表明RHA主要是中孔的。 BET表面积为36.44m 2 / g。 BET法测得的平均孔径为42.603A。由于中孔的存在,BJH孔面积占孔面积的80%。 RHA表面上存在的极性基团赋予了它相当大的阳离子交换能力。发现RHA是从水溶液中去除镉(Cd(II)),镍(Ni(II))和锌(Zn(II))金属离子的有效吸附剂。发现pH_0≈6.0是通过RHA以10kg / m〜3的最佳剂量从水溶液中去除单个阳离子的最佳选择。吸附动力学表明,金属离子在RHA上的吸附是一个渐进过程,在5 h内达到了准平衡。拟二级动力学很好地表示了平衡数据。阳离子在RHA上的有效扩散系数约为10〜(-13)m〜2 / s。

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