Department of Environmental Science, Zhejiang University, Hangzhou, Zhejiang 310058, China.
Department of Environmental Science, Zhejiang University, Hangzhou, Zhejiang 310058, China; Zhejiang Provincial Key Laboratory of Organic Pollution Process and Control, Hangzhou, Zhejiang 310058, China.
Sci Total Environ. 2019 Jul 10;673:522-532. doi: 10.1016/j.scitotenv.2019.04.089. Epub 2019 Apr 8.
The bamboo biochars pyrolyzed at 400 °C and 600 °C (BC400 and BC600) were modified by hydrogen peroxide (HO) to obtain the oxidized biochars. Biochar stability and the effect of oxidation treatment on the adsorption and co-adsorption of tetracycline (TC) and Cu onto biochars were investigated. The calculated carbon loss of biochars after oxidation treatment indicated that BC600 presented higher carbon stability than BC400 due to the condensed aromatic structure of biochar. Moreover, oxidation treatment introduced O-containing functional groups on biochar surface, but destructed the aromatic structures of oxidized biochars, which in turn affected the adsorption capacity of biochars for TC and Cu. Oxidation treatment obviously enhanced the adsorption of TC and Cu onto BC400 owing to the increase of O-containing functional groups, but significantly decreased TC and Cu adsorption onto BC600 because of the decreased π-π dispersive forces between biochar and adsorbate. The promotion effect of Cu on TC adsorption onto BC400 changed into inhibition effect after chemical oxidation owing to the pore blockage. However, the promotion degree of Cu for TC adsorption onto BC600 was enhanced through oxidation treatment due to electrostatic attraction and complexation. Meanwhile, oxidation treatment reduced the inhibition degrees of TC for Cu adsorption onto biochars, which was attributed to the increased amount of electron-rich groups. The results are helpful for the application of biochars in the soils remediation.
竹生物炭在 400°C 和 600°C(BC400 和 BC600)下热解,然后用过氧化氢(HO)进行改性,得到氧化生物炭。研究了生物炭的稳定性以及氧化处理对四环素(TC)和 Cu 吸附和共吸附的影响。氧化处理后生物炭的碳损失计算表明,由于生物炭的稠环芳烃结构,BC600 比 BC400 具有更高的碳稳定性。此外,氧化处理在生物炭表面引入了含氧官能团,但破坏了氧化生物炭的芳烃结构,这反过来又影响了生物炭对 TC 和 Cu 的吸附能力。氧化处理明显增强了 TC 和 Cu 在 BC400 上的吸附,这是由于含氧官能团的增加,但由于生物炭和吸附质之间的π-π分散力降低,显著降低了 TC 和 Cu 在 BC600 上的吸附。由于孔堵塞,Cu 对 BC400 上 TC 吸附的促进作用在化学氧化后变为抑制作用。然而,通过氧化处理,Cu 对 BC600 上 TC 吸附的促进程度增强,这是由于静电吸引和络合作用。同时,氧化处理降低了 TC 对 Cu 吸附到生物炭上的抑制程度,这归因于富电子基团的增加。这些结果有助于生物炭在土壤修复中的应用。