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Inhibitory role of citric acid in the adsorption of tetracycline onto biochars: Effects of solution pH and Cu2+

机译:柠檬酸在四环素吸附到Biochars中的抑制作用:溶液pH和Cu2 +的影响

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摘要

Biochar, a cost-effective carbonaceous material, has shown great promise in many applications such as soil remediation and wastewater treatment. Citric acid in soil and water environments may affect interactions between biochar and organic contaminants (e.g., tetracycline). To evaluate the effect of citric acid on the adsorption of tetracycline onto biochars, this study investigated the adsorption behavior of tetracycline onto biochars of two different pyrolysis temperatures (300 and 450 degrees C, referred to as BC_300 and BC_450) in the present of citric acid, accompanying with the effects of solution pH and Cu2+. The results indicated that citric acid significantly inhibited the adsorption of tetracycline onto both biochars, that was mainly due to the multimechanisms including pore blocking effect, surface adsorption sites competition, and steric hindrance induced by citric acid. Moreover, citric acid more significantly suppressed the adsorption of tetracycline onto the two biochars at pH 9.0 than at pH 5.0 and 7.0. Because increasing pH could promote electrostatic repulsion between the negative tetracycline and the negatively charged surface of biochars. Cu2+ had greater enhancing effect on the sorption of tetracycline onto BC_300 than BC_450 via cation-bridging effect. Meanwhile, citric acid inhibited the adsorption of tetracycline onto BC_300 to a larger extent than the adsorption onto BC_450 in the presence of Cu2+. That is possibly due to BC_300 has more surface oxygen-containing functional groups than BC_450. Thus, the effect of coexisting citric acid needs to be taken into account when biochar is increasingly used as an amendment in soil and water systems.
机译:生物炭是一种经济高效的碳质材料,在许多应用中表现出诸如土壤修复和废水处理的许多应用中的许多希望。土壤和水环境中的柠檬酸可能影响生物炭和有机污染物之间的相互作用(例如,四环素)。为了评估柠檬酸对四环素吸附到Biochars上的影响,本研究研究了四环素在柠檬酸存在于两种不同热解温度(300和450℃,称为BC_300和BC_450)的生物脉冲中的吸附行为,伴随溶液pH和Cu2 +的影响。结果表明,柠檬酸显着抑制四环素对两种生物脉的吸附,主要是由于包括孔隙阻断效果,表面吸附位点竞争和由柠檬酸诱导的空间障碍的多机构。此外,柠檬酸更明显地抑制了在pH9.0的两种生物脉冲到PH 9.0的两个生物蛋白上的吸附,而不是在pH 5.0和7.0时。因为增加的pH可以促进阴性四环素和生物触头带负电的表面之间的静电排斥。 Cu2 +通过阳离子桥接效应对四环素的吸附对BC_300的对BC_300的吸附的影响更大。同时,柠檬酸抑制四环素在BC_300上吸附到大小范围内,而不是在Cu 2+存在下吸附到BC_450上。这可能是由于BC_300具有比BC_450更多的含表面氧的官能团。因此,当Biochar越来越多地用作土壤和水系统的修正时,需要考虑共存柠檬酸的效果。

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