Sorption and desorption of 1,4-dichlorobenzene (DCB) on peat (】92% organic matter) display large-scale hysteresis and nonlinearity. The magnitude of desorption hysteresis decreases in the order: untreated Pahokee pea...Sorption and desorption of 1,4-dichlorobenzene (DCB) on peat (】92% organic matter) display large-scale hysteresis and nonlinearity. The magnitude of desorption hysteresis decreases in the order: untreated Pahokee peat (P)】 acid treated peat (FP)】 humin (TP). The desorption percentages are lower than 28% of the sorbed 1, 4-DCB after desorbing for 6 days. The sorption and desorption isotherms are well fitted to Freundlich equation, whose parameter 1/n ranges from 0.055 to 0.527. Moreover, the parameter 1/n of the desorption isotherm is significantly lower than that of the sorption isotherm, but the parameter logK increases on contrary to 1/n. The desorption isotherms are very well fitted to Langmuir equation, whose Qm decreases in the order: TP】FP】 P. The apparent partition coefficients (Kp) increase with increasing sorption time or decreasing aqueous equilibrium concentration of DCB. And Kp of P is significantly higher than that of FP or TP.展开更多
Ammonium adsorption and desorption properties by purple soils with dif- ferent pH were studied. The results showed that the adsorption and desorption amounts of NH4+ by purple soils increased with the increase of NH4...Ammonium adsorption and desorption properties by purple soils with dif- ferent pH were studied. The results showed that the adsorption and desorption amounts of NH4+ by purple soils increased with the increase of NH4+ concentration, regardless of soil pH values; the largest adsorption and desorption amounts of NH4+ by purple soil at pH 6.0 were 10.3 and 7.96 mg/g, respectively; the largest adsorp- tion and desorption amounts of NH4+ by purple soil at pH 7.2 were 12.8 and 4.62 mg/g, respectively; the largest adsorption and desorption amounts of NH4+ by purple soil at pH 8.0 were 13.5 and 2.23 mg/g, respectively. The isothermal adsorption ki- netics of NH4+ by purple soils fits the Freundlich equation best (R〉0.95). This study shows that the adsorption of NH4+ by purple soils with different pH values is multi- molecular layer uneven surface adsorption.展开更多
文摘Sorption and desorption of 1,4-dichlorobenzene (DCB) on peat (】92% organic matter) display large-scale hysteresis and nonlinearity. The magnitude of desorption hysteresis decreases in the order: untreated Pahokee peat (P)】 acid treated peat (FP)】 humin (TP). The desorption percentages are lower than 28% of the sorbed 1, 4-DCB after desorbing for 6 days. The sorption and desorption isotherms are well fitted to Freundlich equation, whose parameter 1/n ranges from 0.055 to 0.527. Moreover, the parameter 1/n of the desorption isotherm is significantly lower than that of the sorption isotherm, but the parameter logK increases on contrary to 1/n. The desorption isotherms are very well fitted to Langmuir equation, whose Qm decreases in the order: TP】FP】 P. The apparent partition coefficients (Kp) increase with increasing sorption time or decreasing aqueous equilibrium concentration of DCB. And Kp of P is significantly higher than that of FP or TP.
基金Supported by National Natural Science Foundation of China(41271267)National Key Technology Research and Development Program(2013BAJ11B03)Special Scientific Research Fund of Environment Friendly Public Welfare Profession of China(2013467036)~~
文摘Ammonium adsorption and desorption properties by purple soils with dif- ferent pH were studied. The results showed that the adsorption and desorption amounts of NH4+ by purple soils increased with the increase of NH4+ concentration, regardless of soil pH values; the largest adsorption and desorption amounts of NH4+ by purple soil at pH 6.0 were 10.3 and 7.96 mg/g, respectively; the largest adsorp- tion and desorption amounts of NH4+ by purple soil at pH 7.2 were 12.8 and 4.62 mg/g, respectively; the largest adsorption and desorption amounts of NH4+ by purple soil at pH 8.0 were 13.5 and 2.23 mg/g, respectively. The isothermal adsorption ki- netics of NH4+ by purple soils fits the Freundlich equation best (R〉0.95). This study shows that the adsorption of NH4+ by purple soils with different pH values is multi- molecular layer uneven surface adsorption.