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首页> 外文期刊>ACS Omega >Influence of Synthesis Methods on the High-Efficiency Removal of Cr(VI) from Aqueous Solution by Fe-Modified Magnetic Biochars
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Influence of Synthesis Methods on the High-Efficiency Removal of Cr(VI) from Aqueous Solution by Fe-Modified Magnetic Biochars

机译:合成方法对水溶液水溶液中Cr(VI)的高效除去的影响

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Fe-modified biochars have been widely used in removal of Cr(VI) from water due to the resulting modified surface functional groups and magnetization property. However, few studies have synthetically investigated modification methods and synthesis parameters on the improvement of the removal efficiency of Cr(VI) by Fe-modified biochars. Herein, 10 types of corn straw-based magnetic biochars were produced using pre-modification and post-modification methods with various modifier ratios, and the highest heating temperature (HHT). Cr(VI) removal results suggest that the removal efficiency of pre-modified biochars ranged from 50.7 to 98.6%, which was much higher than that of post-modified (6.6–21.6%) and unmodified biochars (0.4–7.6%). The effect of synthesis methods on Cr(VI) adsorption was in the following order: Fe-modification method > modifier ratio > HHT. The adsorption kinetics and isotherm results of three types of pre-modified biochars were well fitted with the pseudo-second-order model (R ~(2) > 0.99) and the Langmuir adsorption model (R ~(2) > 0.99), respectively, indicating the surface homogeneity of the pre-modified biochars and unilayer chemisorptions of Cr(VI). Characterization results show that iron oxides or zerovalent iron particles were successfully deposited onto the surface of biochars and magnetism was introduced. A good Pearson correlation (r = ?0.9694) between the removal efficiency and pH value in modified biochar suggests that the lower pH value may offer more positive charges and promote electrostatic attraction. Therefore, the dominant mechanism for enhanced Cr(VI) adsorption on pre-modified biochar was electrostatic attraction, resulting from its distinguished acidity nature. Our findings provide new insights into the high-efficiency removal of Cr(VI) onto Fe-modified magnetic biochars and will benefit future design of more efficient magnetic biochars.
机译:由于所得修饰的表面官能团和磁化性能,Fe改性的生物脉被广泛用于从水中除去Cr(VI)。然而,很少有研究在通过Fe改性的Biochars改善Cr(vi)的去除效率的改善而有综合研究了修饰方法和合成参数。这里,使用具有各种改性剂比和最高加热温度(HHT)的预改性和改性方法产生10种类型的玉米秸秆磁性生物谱。 Cr(VI)去除结果表明,预改性生物脉的去除效率范围为50.7%至98.6%,远高于修饰后(6.6-21.6%)和未修改的生物脉(0.4-7.6%)。合成方法对Cr(VI)吸附的影响是下列顺序:Fe改性方法>改性剂比> HHT。吸附动力学和等温度的三种类型预修饰的生物脉冲均配有伪二阶模型( r〜(2)> 0.99)和朗米尔吸附模型( r〜(2 )> 0.99)分别表明Cr(VI)的预改性生物脉内的表面均匀性和联合化学载体。介绍了表征结果表明,介绍了氧化铁或Zeropalent铁颗粒被成功沉积在Biochars和磁性的表面上。修饰生物炭中的去除效率和pH值之间的良好的Pearson相关性( r =Δ0.9694)表明,较低的pH值可以提供更积极的电荷并促进静电吸引力。因此,提高CR(VI)对预改性生物炭的吸附的显性机制是静电吸引力,由其异数酸度性质引起的。我们的调查结果提供了新的洞察力,进入Fe改性磁性生物触盘的CR(VI)的高效移除,并将使未来设计更有效的磁性生物炸肉行。

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