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活性炭具有豐富的孔隙結(jié)構(gòu)和大的表面積,具有良好的脫硫能力而且價格低廉、資源豐富,是一種很有發(fā)展?jié)摿Φ奈接袡C(jī)硫的吸附劑,很早就被用于燃油脫硫研究,但其對噻吩類硫化物有限的吸附容量仍未能滿足工業(yè)化要求,影響了其在燃油脫硫方面的應(yīng)用。因此對活性炭進(jìn)行改性,提高其吸附容量是其用于吸附脫除燃油中有機(jī)硫急需解決的難題。本文以噻吩為目標(biāo)吸附質(zhì),研究活性炭表面負(fù)載不同量金屬銅離子對其吸附性能的影響,為改性活性炭用于吸附脫硫做一些探索。吸附是一種極具應(yīng)用前景的汽油深度脫硫分離技術(shù)。 本試驗(yàn)采用濃硝酸氧化改性活性炭,研究了 濃度對活性炭脫硫效率的影響。結(jié)果表明硝酸氧化可以增加活性炭表面酸性基團(tuán)的量,提高脫硫性能。 本實(shí)驗(yàn)采用等體積浸漬法制備了以活性炭為載體的 Cu/AC 吸附劑,并進(jìn)行了模型柴油中噻吩的吸附脫除性能研究。采用SEM、 BET、XRD 等方法對吸附劑進(jìn)行了表征,并考察了該吸附劑對模型油品中噻吩的吸附性能及吸附脫硫的機(jī)理?疾炝私䴘n時間、負(fù)載量、焙燒時間、焙燒溫度對吸附脫硫效果的影響,得出吸附劑的最佳制備條件:浸漬時間為 12 h,Cu 負(fù)載量為 5% (wt),焙燒溫度為 450 ℃,焙燒時間為 2 h。在此條件下制備的吸附劑對模型油中噻吩的脫除率達(dá) 96.6%。最后對吸附機(jī)理進(jìn)行了初步探討,一價銅對噻吩的吸附作用較強(qiáng),可能是通過 π 鍵配位作用對噻吩進(jìn)行脫除的,具體的吸附機(jī)理仍待于進(jìn)一步研究。結(jié)果表明N2氣氛下焙燒后吸附劑脫硫效果明顯優(yōu)于未被處理的活性炭;活性炭表面負(fù)載Cu金屬離子改性炭脫硫效果提高。 |
至尊木蟲 (著名寫手)
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The effect of different amount of copper ion loaded on active carbon surface on its adsorptive property was investigated in this paper based on using thiophene as target adsorbate, which has made some explorations to the use of modified activated carbon in adsorption desulfurization. Adsorption was a separation technology of deep desulfurization of gasoline with greatest application. The influence of concentration on desulphurization efficiency of active carbon was researched on the base of activated carbon oxidative modified by concentrated nitric acid. The results showed that nitric acid oxidation could increase the amount of acidic groups on active carbon surface to improve the desulfurization performance. And it also indicated that the desulfurization efficiency of adsorbent roasted in N2 atmosphere was obviously superior to untreated active carbon; it showed that desulfurization efficiency of active carbon modified by loading copper ion on its surface was increased. |

至尊木蟲 (著名寫手)

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