Alvarez-Ayuso E, García-Sánchez A, Querol X
Department of Environmental Geochemistry, IRNASA, CSIC. Apto 257, Salamanca E-37071, Spain.
Water Res. 2003 Dec;37(20):4855-62. doi: 10.1016/j.watres.2003.08.009.
The sorption behaviour of natural (clinoptilolite) and synthetic (NaP1) zeolites has been studied with respect to Cr(III), Ni(II), Zn(II), Cu(II) and Cd(II) in order to consider its application to purify metal finishing waste waters. The batch method has been employed using metal concentrations in solution ranged from 10 to 200 mg/l and solid/liquid ratios ranged from 2.5 to 10 g/l. The Langmuir model was found to describe well all sorption processes, allowing to establish metal sorption sequences from which the main retention mechanism involved for each metal has been inferred. Synthetic zeolite exhibited about 10 times greater sorption capacities (b(Cr)=0.838 mmol/g, b(Ni)=0.342 mmol/g, b(Zn)=0.499 mmol/g, b(Cu)=0.795 mmol/g, b(Cd)=0.452 mmol/g) than natural zeolite (b(Cr)=0.079 mmol/g, b(Ni)=0.034 mmol/g, b(Zn)=0.053 mmol/g, b(Cu)=0.093 mmol/g, b(Cd)=0.041 mmol/g), appearing, therefore, as most suitable to perform metal waste water purification processes. This mineral showed the same high sorption capacity values when used in the purification of metal electroplating waste waters.
为了考虑其在金属加工废水净化中的应用,研究了天然(斜发沸石)和合成(NaP1)沸石对Cr(III)、Ni(II)、Zn(II)、Cu(II)和Cd(II)的吸附行为。采用批量法,溶液中金属浓度范围为10至200mg/l,固液比范围为2.5至10g/l。发现Langmuir模型能很好地描述所有吸附过程,从而建立了金属吸附顺序,并据此推断出每种金属的主要保留机制。合成沸石的吸附容量(b(Cr)=0.838 mmol/g,b(Ni)=0.342 mmol/g,b(Zn)=0.499 mmol/g,b(Cu)=0.795 mmol/g,b(Cd)=0.452 mmol/g)比天然沸石(b(Cr)=0.079 mmol/g,b(Ni)=0.034 mmol/g,b(Zn)=0.053 mmol/g,b(Cu)=0.093 mmol/g,b(Cd)=0.041 mmol/g)高约10倍,因此似乎最适合用于金属废水净化过程。这种矿物在用于金属电镀废水净化时表现出相同的高吸附容量值。