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首页> 外文期刊>Separation and Purification Technology >Residue catalyst support removal and purification of carbon nanotubes by NaOH leaching and froth flotation
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Residue catalyst support removal and purification of carbon nanotubes by NaOH leaching and froth flotation

机译:通过NaOH浸出和泡沫浮选去除残留催化剂载体并纯化碳纳米管

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The synthesis of single-walled carbon nanotubes (SWNTs) by the catalytic decomposition of gaseous carbon-containing molecules has been considered to be the most promising process for large-scale production with a relatively low cost.However,the as-prepared SWNTs from this process always contain significant amounts of impurities such as metallic catalysts,catalyst support,and other unwanted forms of carbon.For a variety of potential applications,the purification of SWNTs is considered to be an important step.In this research,NaOH solution was utilized to dissolve the silica support,a major impurity,from the SWNTs produced by the CO disproportionation over a CoMo/SiO2 catalyst.Subsequently,froth flotation was used to further recover and concentrate the total carbon after the NaOH pretreatment.To achieve a high purity of total carbon by the proposed purification techniques,the effects of operating parameters were investigated in order to minimize the entrainment of undissolved silica with the froth.At the optimum operating conditions:3 h of sonication time,30 mg/l of surfactant dosage,1.0 g/l of pulp density,100 ml/min of air flow rate,and 22 cm of froth height,the purity of total carbon was found to increase to 30% after the first step of NaOH treatment and to 78% after the second step of froth flotation as compared to the initial carbon content of only 4% of the as-prepared SWNTs.From the temperature-programmed oxidation (TPO) results,the Raman spectra and the scanning electron microscope (SEM) images,the physical and chemical structures of SWNTs are not damaged by NaOH treatment and froth flotation.
机译:通过气态含碳分子的催化分解来合成单壁碳纳米管(SWNT)被认为是以较低的成本大规模生产的最有前途的方法。但是,由此制备的SWNT过程中总是包含大量杂质,例如金属催化剂,催化剂载体和其他不需要的碳形式。对于各种潜在应用,SWNTs的纯化被认为是重要的一步。从CO在CoMo / SiO2催化剂上歧化产生的单壁碳纳米管中溶解二氧化硅载体(一种主要杂质)。通过提出的提纯技术对碳进行吸附,研究了操作参数的影响,以最大程度地减少不溶性硅石夹带在最佳操作条件下:超声处理时间为3 h,表面活性剂用量为30 mg / l,纸浆密度为1.0 g / l,空气流速为100 ml / min,泡沫高度为22 cm,与仅4%的SWNT初始碳含量相比,发现在NaOH处理的第一步后总碳增加到30%,在泡沫浮选第二步后增加到78%。氧化(TPO)结果,拉曼光谱和扫描电子显微镜(SEM)图像,SWNTs的物理和化学结构不受NaOH处理和泡沫浮选的损害。

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