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铝阳极氧化线的节能增产技术改造 被引量:1
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作者 何跃武 《电工技术》 2012年第3期42-43,共2页
通过使用新型开关电源型整流机,采用在线氧化膜厚检测技术,升级控制系统程序,改造滑车系统等处理措施,对大型铝阳极氧化线进行节能增产技术改造。实践证明,改造后的铝阳极氧化线节能增产效果明显。
关键词 铝阳极氧化线 变压器式 整流机 开关电源型 节能增产
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Removal of trace Cr(VI) from water using chitosan-iron nanowires in porous anodic alumina 被引量:1
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作者 Li Sun Zhigang Yuan +6 位作者 Wenbang Gong Zili Xu Jijun Lu Qinghua Zou Yuqin Wu Gongbing Su Huafang Wang 《Science China Chemistry》 SCIE EI CAS CSCD 2016年第4期383-386,共4页
Chitosan-iron nanowires in porous anodic alumina (PAA) have been successfully prepared under ambient conditions as an ad- sorbent. The adsorbent was characterized by scanning electron microscopy, X-ray photoelectron... Chitosan-iron nanowires in porous anodic alumina (PAA) have been successfully prepared under ambient conditions as an ad- sorbent. The adsorbent was characterized by scanning electron microscopy, X-ray photoelectron spectroscopy and N2-BET surface area. The results showed that PAA can disperse and protect Fe0 nanorods from oxidation. The adsorption characteris- tics of trace Cr(VI) onto adsorbent have been examined at different initial Cr(VI) concentrations with pH 5. Batch adsorption studies show that the removal percentage of adsorbent for the removal of trace Cr(VI) is strongly dependent on the initial Cr(VI) concentrations. Langmuir and Freundlich isotherm models were used to analyze the experiment data. The adsorption of trace Cr(VI) by adsorbent is well modeled by the Langmuir isotherm and the maximum adsorption capacity of Cr(VI) is calcu- lated as 123.95 mg/g which is very closed to the experiment results. Intraparticle diffusion study shows that the intraparticle diffusion of adsorbent is not the sole rate-controlling step. The negative value of Gibbs free energy change,△G0, indicated that the process of Cr(VI) onto adsorbent was spontaneous. This work has demonstrated that chitosan-iron nanowires in porous anodic alumina as an adsorbent has promising potential for heavy metal removal at trace level. 展开更多
关键词 chitosan-iron nanowires isotherms Cr(VI) THERMODYNAMICS adsorption kinetics
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