College of Biological and Chemical Engineering, Anhui Polytechnic University, Wuhu 241000, China.
School of Architecture and Civil Engineering, Anhui Polytechnic University, Wuhu 241000, China.
Int J Environ Res Public Health. 2020 Feb 8;17(3):1075. doi: 10.3390/ijerph17031075.
In this paper, biochar (BC) was prepared from discarded grapefruit peel and modified to prepare magnetic biochar (MBC). Physical and chemical properties of BC and MBC were characterized, and the results showed that the type of iron oxide loaded by MBC was γ-FeO. Compared with BC, MBC has a larger specific surface area and pore volume, with more oxygen-containing functional groups on the surface. BC and MBC were used to adsorb and remove endocrine-disrupting chemical (EDC) bisphenol A (BPA) from simulated wastewater. The results showed that the adsorption kinetics and adsorption isotherm of BPA adsorption by BC and MBC were mainly in accordance with the pseudo-second-order kinetics model and the Langmuir model. This indicates that the adsorption of BPA on BC and MBC is mainly a chemically controlled monolayer adsorption. Adsorption thermodynamics show that BC and MBC adsorption of BPA is a spontaneous exothermic reaction, and lowering the temperature is conducive to the adsorption reaction. The effect of solution pH on the adsorption of BPA by both was significant. The optimum pH for BC and MBC to absorb BPA was 6 and 3, respectively. The concentration of Na in the range of 0-0.10 mol·L can promote the adsorption of BPA to MBC. MBC loaded with γ-FeO not only has excellent magnetic separation ability, but can also reach about 80% of the initial adsorption capacity after four cycles of adsorption. By analyzing the adsorption mechanism, it was found that the H-bond and the π-π electron donor-acceptor interaction (EDA) were the main forces for BC and MBC to adsorb BPA.
本文以废弃柚子皮为原料制备生物炭(BC),并对其进行改性制备磁性生物炭(MBC)。对 BC 和 MBC 的物理化学性质进行了表征,结果表明,MBC 负载的氧化铁类型为γ-FeO。与 BC 相比,MBC 具有更大的比表面积和孔体积,表面含有更多的含氧官能团。BC 和 MBC 被用于从模拟废水中吸附和去除内分泌干扰化学物质(EDC)双酚 A(BPA)。结果表明,BC 和 MBC 吸附 BPA 的吸附动力学和吸附等温线主要符合准二级动力学模型和 Langmuir 模型。这表明 BPA 在 BC 和 MBC 上的吸附主要是化学控制的单层吸附。吸附热力学表明,BC 和 MBC 吸附 BPA 是自发的放热反应,降低温度有利于吸附反应。溶液 pH 对两者吸附 BPA 的影响显著。BC 和 MBC 吸附 BPA 的最佳 pH 分别为 6 和 3。Na 的浓度在 0-0.10 mol·L 的范围内可以促进 BPA 向 MBC 的吸附。负载γ-FeO 的 MBC 不仅具有优异的磁分离能力,而且在吸附四次循环后仍可达到初始吸附容量的约 80%。通过分析吸附机制,发现氢键和π-π 电子给体-受体相互作用(EDA)是 BC 和 MBC 吸附 BPA 的主要作用力。