Department of Environmental Engineering, Zhejiang University, Hangzhou 310029, People's Republic of China.
J Hazard Mater. 2011 Jan 30;185(2-3):639-46. doi: 10.1016/j.jhazmat.2010.09.066. Epub 2010 Sep 25.
Rice straw charcoal, soot and fly ash (collectively termed "black carbon" or BC), which were found to widely exist in the environment and exhibit strong sorption of many organic compounds, were prepared for this study, and recorded as RC, SC, and FC, respectively. The characterization, sorption isotherm, and the effect of pH (from 3.0 to 9.0) on sorption capacity of each BC were investigated. It is demonstrated that RC possessed the largest surface area (234.9 m(2)/g), the highest porosity (0.4392 mL/g), and the largest amount of functional groups (2.995 mmol/g) of all. All the Freundlich, Langmuir and Dual-mode model can fit the sorption data of each BC well. The pH value could apparently affect the sorption capacity of pentachlorophenol (PCP) to BCs, which reached maximum value at pH 4.0. Furthermore, in order to validate the effect of pH on desorption capacity, we designed sorption-desorption cycle experiments at pH 9.0 and then pH 7.0, and found that the effect of pH on irreversible sorption and hysteresis effects were significant. As pH value decreasing from 9.0 to 7.0, the irreversible sorption capacities for RC, FC, and SC increased, and the desorption hysteresis index (H) values of PCP increased approximately 3 times for each BC.
稻秆炭、烟尘和飞灰(统称“黑碳”或 BC)广泛存在于环境中,并对许多有机化合物表现出强烈的吸附能力,因此被选作本研究的对象,分别记为 RC、SC 和 FC。对各 BC 的特性、吸附等温线以及 pH 值(3.0 至 9.0)对吸附能力的影响进行了研究。结果表明,RC 具有最大的表面积(234.9 m²/g)、最高的孔隙率(0.4392 mL/g)和最多的官能团(2.995 mmol/g)。所有的 Freundlich、Langmuir 和双模式模型都能很好地拟合各 BC 的吸附数据。pH 值明显影响五氯苯酚(PCP)在 BC 上的吸附能力,在 pH 4.0 时达到最大值。此外,为了验证 pH 值对解吸能力的影响,我们在 pH 9.0 和随后的 pH 7.0 条件下设计了吸附-解吸循环实验,发现 pH 值对不可逆吸附和滞后效应的影响显著。当 pH 值从 9.0 降至 7.0 时,RC、FC 和 SC 的不可逆吸附容量增加,各 BC 的 PCP 解吸滞后指数(H)值增加了约 3 倍。