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过量浸渍、镁含量和热解温度对氧化镁包覆西瓜皮生物炭及其铅去除能力的影响。

Effects of excessive impregnation, magnesium content, and pyrolysis temperature on MgO-coated watermelon rind biochar and its lead removal capacity.

机构信息

School of Environment, Tsinghua University, Beijing, 100084, China.

School of Environment, Tsinghua University, Beijing, 100084, China.

出版信息

Environ Res. 2020 Apr;183:109152. doi: 10.1016/j.envres.2020.109152. Epub 2020 Jan 20.

Abstract

MgO-coated watermelon rind biochar (MWRB) is a potentially highly-effective waste-derived material in environmental applications. This research aims to provide valuable insights into the optimization of the production of MWRB for superior environmental performance. It was found that the Mg content of the MWRB could be easily controlled by adjusting the Mg/feedstock mass ratio during excessive impregnation. The BET surface area was found to first increase and then decrease as the Mg content of the MWRB (produced at 600 °C) increased from 1.52% to 10.1%, with an optimal surface area of 293 m/g observed at 2.51%. Similarly, an optimum pyrolysis temperature of 600 °C was observed in the range of 400-800 °C for a maximum surface area of the MWRB at a fixed Mg/feedstock ratio of 0.48% (resulting in MWRBs with Mg contents of 1.89-2.51%). The Pb removal capacity of the MWRB (produced at 600 °C) increased with increasing Mg content, with a greatest Pb removal capacity of 558 mg/g found for the MWRB with the highest Mg content (10.1%), an improvement of 208% over the 181 mg/g Pb removal capacity of unmodified WRB produced at 600 °C. The Pb removal capacity of the MWRB (produced with 1.89-2.51% Mg) was also discovered to increase from 81.7 mg/g (at 400 °C) to 742 mg/g (at 700 °C), before dropping to 368 mg/g at 800 °C. These findings suggest that the MWRB can be more efficiently utilized in soil and water remediation by optimizing its synthesis conditions.

摘要

氧化镁包覆西瓜皮生物炭(MWRB)是一种在环境应用中具有潜在高效性的废基材料。本研究旨在为提高 MWRB 的环境性能提供有价值的见解,优化其生产工艺。研究发现,通过在过量浸渍过程中调整 Mg/原料质量比,可以轻松控制 MWRB 的 Mg 含量。研究发现,当 MWRB(在 600°C 下制备)的 Mg 含量从 1.52%增加到 10.1%时,BET 比表面积先增加后减小,在 2.51%时观察到最佳比表面积为 293 m/g。同样,在 400-800°C 的范围内,观察到最佳热解温度为 600°C,在固定的 Mg/原料比为 0.48%(导致 Mg 含量为 1.89-2.51%的 MWRB)下,MWRB 的最大比表面积。在 600°C 下制备的 MWRB 的 Pb 去除能力随 Mg 含量的增加而增加,具有最高 Mg 含量(10.1%)的 MWRB 的 Pb 去除能力最大,为 558 mg/g,比在 600°C 下制备的未改性 WRB 的 181 mg/g Pb 去除能力提高了 208%。研究还发现,具有 1.89-2.51% Mg 的 MWRB 的 Pb 去除能力从 400°C 的 81.7 mg/g 增加到 700°C 的 742 mg/g,然后在 800°C 下降至 368 mg/g。这些发现表明,可以通过优化其合成条件,更有效地将 MWRB 用于土壤和水修复。

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