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铜液中界面活性物的清除
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作者 黄榜元 《中氮肥》 1994年第6期43-44,共2页
铜液中界面活性物的清除黄榜元(江西氨厂江西省南昌市东郊,330012)在铜洗工艺中常遇到这样的情况:铜液总用下降后再怎么加酸、加氨、加铜和补氧,其总钠含量总是不易提高。这种情况我厂遇到过,其他用洗流程厂也都遇到过。我... 铜液中界面活性物的清除黄榜元(江西氨厂江西省南昌市东郊,330012)在铜洗工艺中常遇到这样的情况:铜液总用下降后再怎么加酸、加氨、加铜和补氧,其总钠含量总是不易提高。这种情况我厂遇到过,其他用洗流程厂也都遇到过。我们对江西萍乡化肥厂的用液进行了测定... 展开更多
关键词 合成氨 铜洗 界面活性物 界面吸附 清除
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Mechanistic insights for efficient inactivation of antibiotic resistance genes: a synergistic interfacial adsorption and photocatalytic-oxidation process 被引量:3
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作者 Zhiruo Zhou Zhurui Shen +5 位作者 Zhihui Cheng Guan Zhang Mingmei Li Yi Li Sihui Zhan John C.Crittenden 《Science Bulletin》 SCIE EI CSCD 2020年第24期2107-2119,M0006,共14页
Advanced oxidation processes(AOPs) have been applied to address multiple environmental concerns including antibiotic resistance genes(ARGs). ARGs have shown an increasing threat to human health,and they are either har... Advanced oxidation processes(AOPs) have been applied to address multiple environmental concerns including antibiotic resistance genes(ARGs). ARGs have shown an increasing threat to human health,and they are either harbored by antibiotic-resistant bacteria(ARB) or free in the environment.However, the control of ARGs has been substantially limited by their low concentration and the limited knowledge about their interfacial behavior. Herein, a novel AOP catalyst, Ag/TiO_(2)/graphene oxide(GO),combined with a polyvinylidene fluoride(PVDF) ultrafiltration membrane was designed with a synergistic interfacial adsorption and oxidation function to inactivate ARGs with high efficiency in both model solutions and in secondary wastewater effluent, especially when the residue concentration was low.Further analysis showed that the mineralization of bases and phosphodiesters mainly caused the inactivation of ARGs. Moreover, the interfacial adsorption and oxidation processes of ARGs were studied at the molecular level. The results showed that GO was rich in sp^(2) backbones and functional oxygen groups,which efficiently captured and enriched the ARGs via p-p interactions and hydrogen bonds. Therefore,the photogenerated active oxygen species attack the ARGs by partially overcoming the kinetic problems in this process. The Ag/Ti O2/GO catalyst was further combined with a PVDF membrane to test its potential in wastewater treatment applications. This work offers an efficient method and a corresponding material for the inactivation and mineralization of intra/extracellular ARGs. Moreover, the molecularlevel understanding of ARG behaviors on a solid–liquid interface will inspire further control strategies of ARGs in the future. 展开更多
关键词 Trace contaminants Antibiotic resistance genes(ARGs) Synergistic adsorption and photocatalytic oxidation Interfacial behaviors
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