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用核桃壳活性炭处理和改良修饰后的 thiodicarb 在农药废水中的应用:吸附行为。

Treatment on thiodicarb in pesticide wastewater with walnut shells-derived carbon and its improved modification: adsorption behavior.

机构信息

Key Laboratory of Coal Conversion & Chemical Engineering Process (Xinjiang Uyghur Autonomous Region), School of Chemical Engineering and Technology, Xinjiang University, Urumqi 830046, PR China E-mail:

出版信息

Water Sci Technol. 2022 May;85(9):2682-2692. doi: 10.2166/wst.2022.118.

Abstract

The health problems caused by water pollution cannot be ignored, and the contribution of pesticides to water pollution has also become increasingly unignorable. The modified semi-coke as an adsorbent for reducing pesticide pollution to water was obtained from activated semi-coke which was modified by nitric acid (HNO). The semi-coke was obtained by carbonization using 60 mesh walnut shell powder. After acid-base deashing, the semi-coke is dipped into zinc chloride (ZnCl) solution to obtain activated semi-coke. Through BET analysis, the specific surface areas of semi-coke, activated semi-coke and modified semi-coke were 26.8 m/g, 243.9 m/g, and 339.6 m/g respectively. An extremely high adsorption capacity of the adsorbents which is used to treat wastewater was achieved. The optimum adsorption conditions for modified semi-coke on thiodicarb solution were 30 mg/L of thiodicarb solution, adsorbent dosage of 0.01 g, adsorption temperature of 25 °C and adsorption time of 90 min. The optimum adsorption amount of 29.54 mg/gsor was achieved (sor is the abbreviation for sorbent). Moreover, through kinetics study, the result manifests that the modified semi-coke adsorption process is more fitted to the second-order kinetic model. This study provided a research implication theoretically for the treatment of pesticides in water.

摘要

水污染所导致的健康问题不容忽视,而农药对水污染的贡献也变得越来越不可忽视。本研究通过硝酸(HNO₃)改性半焦,得到了一种可用于降低水中农药污染的吸附剂——改性半焦。半焦是由 60 目核桃壳粉碳化而成,经过酸碱脱灰后,再浸入氯化锌(ZnCl)溶液中,得到活化半焦。通过 BET 分析,半焦、活化半焦和改性半焦的比表面积分别为 26.8、243.9 和 339.6 m²/g。这些吸附剂对废水的处理具有极高的吸附容量。改性半焦对涕灭威溶液的最佳吸附条件为:涕灭威溶液浓度 30 mg/L、吸附剂用量 0.01 g、吸附温度 25°C、吸附时间 90 min,此时的最大吸附量为 29.54 mgg⁻¹(sor 是 sorbent 的缩写)。此外,通过动力学研究发现,改性半焦的吸附过程更符合二级动力学模型。本研究为水中农药的处理提供了理论上的研究启示。

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