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Novel carbothermal synthesis of Fe, N co-doped oak wood biochar (Fe/N-OB) for fast and effective Cr(VI) removal

机译:Fe,N共掺杂橡木Biochar(Fe / N-OB)的新型Carbothothermal合成用于快速有效的Cr(VI)去除

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摘要

In this study, nZVI and N-containing functional groups were simultaneously doped on oak wood biochar (Fe/N-OB) through a facile carbothermal reduction process followed by NH3 treatment, and employed for fast and effective hexavalent chromium (Cr(VI)) removal. Various techniques were employed and demonstrated the successful doping of Fe and N on biochar. The Fe/N-OB obtained at 1000 degrees C (Fe/N-OB1000) possessed the highest proportion of Fe and exhibited the best Cr(VI) removal compared to raw OB, N-OB, and Fe-OB. Various impacting factors were fully investigated. Fe/N-OB1000 displayed a fast removal kinetics for Cr(VI) with an excellent removal efficiency of 99.9% within 10 min, surpassing other reported nZVI supported biochar or N-doped biochar. XPS method verified the adsorption role of positively charged nitrogen group (-N= (+)) and the reduction role of Fe-0 and -NH- on Cr(VI) elimination. After reacted with Fe/N-OB1000, the adsorbed Cr on Fe/N-OB1000 mainly existed as Cr(III) (similar to 73.09%). The outstanding performance of Fe/N-OB1000 on Cr(VI) elimination was exhibited in Cr(VI) adsorption, Cr(VI) reduction along with Cr(III) complexation. This study showed that the facilely synthesized Fe/N-OB1000 has a promising environmental application on fast and effective Cr(VI) elimination from aqueous solution.
机译:在该研究中,通过容易的碳热还原过程同时掺杂NZVI和N含镍的官能团,然后用NH 3处理,并用于快速且有效的六价铬(Cr(VI))移动。采用各种技术,并证明了生物炭的Fe和N的成功掺杂。在1000摄氏度(Fe / N-OB1000)中获得的Fe / N-OB具有最高比例的Fe,并与RAW OB,N-OB和FE-OB相比表现出最佳的CR(VI)。完全调查了各种影响因素。 Fe / N-OB1000为CR(VI)的快速除去动力学,优异的去除效率为99.9%10分钟,超越其他报告的NZVI支持的生物炭或N掺杂的生物炭。 XPS方法验证了带正电荷的氮气组的吸附作用(-N =(+))和Fe-0和-NH-在Cr(VI)上的减少作用。与Fe / N-OB1000反应后,Fe / N-OB1000上的吸附Cr主要存在为Cr(III)(类似于73.09%)。在Cr(vi)吸附,Cr(vi)减少以及Cr(iii)络合中,在Cr(vi)吸附中的Fe / n-ob1000对Cr(vi)消除的出色性能。该研究表明,易于合成的Fe / N-OB1000具有关于从水溶液的快速有效的Cr(VI)消除的有前途的环境应用。

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