ABSTRACT With the accelerated development of modernization, metallurgical waste containing heavy metals emissions increase, more and more serious environmental pollution, heavy metal pollution need to be resolved。
In the paper, abundant and easily available low-cost raw material diatomite as the adsorbent, with CaCO3 modified to improve the performance of the diatomite adsorption of heavy metals, and byscanning electron microscopy before and after modification diatomite morphology analysis。Experimental study concluded that having moresurface-modified diatomite micron pore structure,and Modified Diatomite performance for heavy metal ions as follows: at 50℃, modified diatomaceous earth in an amount of 10 g / L, pH value of 5。5, Cu2+ initial concentration was 2 mmol / L, adsorption conditions under 1 h on Cu2+ removal better, removal of up to 98。06%; at 20 ℃, modified diatomaceous earth in an amount of 10 g / L, pH value of 5。5, Zn2+ and Cr3+ initial concentration was 2 mmol / L, adsorption 1 h under the conditions of Zn2+ and Cr3+ removal better removal rates were as high as 97。31%, 93。891%; at 20 ℃, modified diatomaceous earth in an amount of 10 g / L, pH value of 5。5, Pb2+ initial concentrations of 2 mmol / L, adsorption under 2 h, more preferably of Pb2+ removal rates as high as 99。81%。In this study, further study of the dynamical behavior of the modified diatomite adsorption of heavy metal ions, the adsorption process in line with the pseudo-second order kinetic model; established isotherm model, draw the thermodynamic behavior of heavy metal ions adsorption by Diatomite meet Langmuir equation 。
Key words: diatomite; modified; adsorption; heavy met
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