Priyantha N, Sandamali H K W, Kulasooriya T P K
Postgraduate Institute of Science, University of Peradeniya, Peradeniya, Sri Lanka and Department of Chemistry, University of Peradeniya, Peradeniya, Sri Lanka E-mail:
Water Sci Technol. 2018 Nov;78(7):1615-1623. doi: 10.2166/wst.2018.395.
Although rice husk (RH) is a readily available, natural, heavy metal adsorbent, adsorption capacity in its natural form is insufficient for certain heavy metal ions. In this context, the study is based on enhancement of the adsorption capacity of RH for Cu(II). NaOH modified rice husk (SRH) shows higher extent of removal for Cu(II) ions than that of heated rice husk (HRH) and HNO modified rice husk (NRH). The extent of removal of SRH is increased with the concentration of NaOH, and the optimum NaOH concentration is 0.2 mol dm, used to modify rice husk for further studies. The surface area of SRH is 215 m g, which is twice as much as that of HRH according to previous studies. The sorption of Cu(II) on SRH obeys the Langmuir adsorption model, leading to the maximum adsorption capacity of 1.19 × 10 mg kg. Kinetics studies show that the interaction of Cu(II) with SRH obeys pseudo second order kinetics. The X-ray fluorescence spectroscopy confirms the adsorption of Cu(II) on SRH, while desorption studies confirm that Cu(II) adsorbed on SRH does not leach it back to water under normal conditions.
尽管稻壳(RH)是一种易于获得的天然重金属吸附剂,但其天然形式对某些重金属离子的吸附能力不足。在此背景下,本研究基于提高稻壳对Cu(II)的吸附能力。NaOH改性稻壳(SRH)对Cu(II)离子的去除程度高于加热稻壳(HRH)和HNO改性稻壳(NRH)。SRH的去除程度随NaOH浓度的增加而增加,用于进一步研究改性稻壳的最佳NaOH浓度为0.2 mol dm。根据先前的研究,SRH的表面积为215 m g,是HRH的两倍。SRH对Cu(II)的吸附符合Langmuir吸附模型,最大吸附容量为1.19×10 mg kg。动力学研究表明,Cu(II)与SRH的相互作用符合准二级动力学。X射线荧光光谱证实了Cu(II)在SRH上的吸附,而解吸研究证实,在正常条件下,吸附在SRH上的Cu(II)不会将其重新释放回水中。