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Comparison of ultrasound-assisted and traditional caustic leaching of spent cathode carbon (SCC) from aluminum electrolysis

机译:铝电解铝电解碳(SCC)超声辅助和传统腐蚀性腐蚀的比较

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摘要

The spent cathode carbon (SCC) from aluminum electrolysis was subjected to caustic leaching to investigate the different effects of ultrasound-assisted and traditional methods on element fluorine (F) leaching rate and leaching residue carbon content. Sodium hydroxide (NaOH) dissolved in deionized water was used as the reaction system. Through single-factor experiments and a comparison of two leaching techniques, the optimum F leaching rate and residue carbon content for ultrasound-assisted leaching process were obtained at a temperature of 70 degrees C, residue time of 40 min, initial mass ratio of alkali to SCC (initial alkali-to-material ratio) of 0.6, liquid-to-solid ratio of 10 mL/g, and ultrasonic power of 400 W, respectively. Under the optimal conditions, the leaching residue carbon content was 94.72%, 2.19% larger than the carbon content of traditional leaching residue. Leaching wastewater was treated with calcium chloride (CaCl2) and bleaching powder and the treated wastewater was recycled caustic solution. All in all, benefiting from advantage of the ultrasonication effects, ultrasound-assisted caustic leaching on spent cathode carbon had 55.6% shorter residue time than the traditional process with a higher impurity removal rate.
机译:将来自铝电解的阴极碳(SCC)进行腐蚀性浸出,以研究超声辅助和传统方法对元素氟(F)浸出率和浸出残留碳含量的不同效果。溶解在去离子水中的氢氧化钠(NaOH)用作反应体系。通过单因素实验和两个浸出技术的比较,在70℃,残余时间为40分钟的碱基次数,碱性次数,碱性急性浸出过程中获得最佳F浸出率和用于超声辅助浸出过程的残余碳含量。 SCC(初始碱金属比)0.6,液体至固体比为10mL / g,分别为400W的超声波。在最佳条件下,浸出残余物碳含量为94.72%,比传统浸出残留物的碳含量大2.19%。用氯化钙(CaCl 2)和漂白粉末处理浸出废水,处理过的废水再循环苛性溶胶溶液。总而言之,受益于超声波效应的优势,在花费阴极碳上的超声辅助腐蚀性浸出比具有更高杂质去除率的传统方法较短的残留时间比较短的残留时间。

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