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µÚÒ»´ÎµÄÉó¸åÒâ¼û£ºCan you explain the data of adsorption capacity in Figure 5£¨²»Í¬Îü¸½¼ÁÖÊÁ¿¶ÔÎü¸½ÈÝÁ¿ºÍÈ¥³ýÂʵÄÓ°Ï죩 by the mass balance equation and the Langmuir isotherm equation? Reviewer: Comment (1). I think that the quantitative expression for Figure 5 are need as follows; For effect of adsorbent dose, the mass balance equation (1) and the Langmuir adsorption isotherm (9) as follows; Q=V(C0-Ce)/m=QbCe/(1+bCe) We can be estimated the value of Ce from these equations by using the experimental values of V, C0 and m, and the values of b and Qm for the Langmuir equation. With increase in adsorption dose, m, the value of Ce will be approached to zero value, then the adsorption quantity Q is inverse-proportional of m. I think that your experimental results over m=0.06 g as shown in Fig.5, is corresponding to this region. And, the remove efficiency can be calculated by the following equation. RE (%)=(C0-Ce)/C0*100 µÚ¶þ´ÎµÄÒâ¼û£ºComment (3). What are the values for Qm in Eq. (8)£¨Langmuir ¹«Ê½£©? The values of b were summarized in page 16, but the values of Qm for several temperature are not. If the value of Qm is known, the theoretical curve for Fig.5 can be calculated. Please shows the theoretical curve of Q and m in Fig.5. ÕâÌõÀíÂÛÇúÏßÔõô¼ÆËã°¡£¿ the theoretical curve for Fig.5 can be calculated. |
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