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首页> 外文期刊>Environmental Science and Pollution Research >Tea waste derived activated carbon for the adsorption of sodium diclofenac from wastewater: adsorbent characteristics, adsorption isotherms, kinetics, and thermodynamics
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Tea waste derived activated carbon for the adsorption of sodium diclofenac from wastewater: adsorbent characteristics, adsorption isotherms, kinetics, and thermodynamics

机译:茶废物衍生的活性炭用于吸附双氯芬酸钠免受废水:吸附特性,吸附等温线,动力学和热力学

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摘要

The present experimental study reports the performance of tea waste (TW) derived adsorbent for the adsorption of sodium diclofenac (SD) from aqueous solution (SD concentration=10-50mg/L). The waste-derived activated carbon was prepared by chemical activation process of raw waste using H2SO4, KOH, ZnCl2, and K2CO3 as activating agents (TW: activating agent=1:1 by weight). Subsequently, the oven-dried material was carbonized at 600-degrees C temperature for 2h. The synthesized adsorbents were porous and their Brunauer-Emmett-Teller (BET) surface area was ranged 115-865m(2)/g. Among all synthesized adsorbents, the adsorbent activated by ZnCl2 exhibited the highest adsorption capacity (=62mg/g), though it was much lower compared to 91mg/g obtained with commercial activated carbon (CAC) (SD concentration=30mg/L, adsorbent dose=300mg/L and initial wastewater pH=6.47). SD equilibrium data could be described by Langmuir isotherm adequately, while pseudo-second-order rate model showed better fit to the time based adsorption data. Low activation energy of the adsorption process suggests the reaction to be temperature independent. Thermodynamic parameters showed the spontaneous and endothermic nature of adsorption process conducted in the presence of waste derived adsorbent.
机译:本实验研究报告了茶废料(TW)衍生的吸附剂对水溶液(SD浓度= 10-50mg / L)吸附的茶叶废弃物(SD)的性能。通过使用H2SO4,KOH,ZnCl 2和K 2 CO 3作为活化剂(TW:活化剂= 1:1),通过原料废物的化学活化方法制备废物衍生的活性炭。随后,将烘箱干燥的材料在600℃的温度下碳化2小时。合成的吸附剂是多孔的,它们的Brunauer-Emmett-keter(bet)表面积为115-865m(2)/ g。在所有合成的吸附剂中,由ZnCl2激活的吸附剂表现出最高的吸附容量(= 62mg / g),但与用商业活性炭(CAC)获得的91mg / g相比,它远低得多(SD浓度= 30mg / L,吸附剂量= 300mg / L和初始废水pH = 6.47)。 Langmuir等温性可以充分描述SD平衡数据,而伪二阶速率模型显示出更好地适合基于时间的吸附数据。吸附过程的低激活能量表明反应是温度无关的。热力学参数显示在废物衍生吸附剂存在下进行的吸附过程的自发性和吸热性。

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