College of Ecology and Environment, Southwest Forestry University, Kunming 650224, China E-mail:
Yunnan Key Laboratory of Ecological Environment Evolution and Pollution Control in Mountainous Rural Areas, Kunming 650224, China.
Water Sci Technol. 2022 May;85(9):2443-2462. doi: 10.2166/wst.2022.143.
Structured biochar (SC) was prepared by biochar from cattail-sludge mixture (CS) and high-density polyethylene (HDPE) and treated as an adsorbent, and the KHPO and NHCl solution were treated as adsorbates, to explore the adsorption capacity of phosphorus (P) and nitrogen (N) on SC in water. A single factor experimental method was employed to determine the optimal parameters for SC. The results showed that: 60% sizing amount, 5 N (cm) molding pressure, 160 °C molding temperature and 95 min molding time were optimal parameters for SC preparation. The adsorption of P and N on SC conforms to the Langmuir model, with the distribution of adsorption sites on the surface tending to be even. The adsorption of P and N on SC is favorable and spontaneous, and the adsorption tends to be monolayer adsorption with a major role for chemical adsorption. The higher the temperature, the higher the adsorption capacity of P and N on SC is, and the affinity of SC with P is higher than that with N. The pseudo-second-order kinetic model for the adsorption of N and P by SC has a high degree of fit. The pH value of SC was 8.57. The hydrophobicity and stability of SC are rather high, with the surface particles closely bonded and increased roughness and pore diameter. The adsorption mechanism of P and N on SC can be attributed to pore filling, electrostatic attraction and hydrogen bonding. The results can provide a new technology for the resource utilization of cattails and sludge, a new idea for the recycling and reuse of biochar, and a basis for the selection of materials for the treatment of eutrophic water bodies.
结构型生物炭(SC)由茭白-污泥混合物(CS)和高密度聚乙烯(HDPE)制成的生物炭制备而成,并用作吸附剂,KHPO 和 NHCl 溶液作为吸附物,以探索 SC 在水中对磷(P)和氮(N)的吸附能力。采用单因素实验方法确定 SC 的最佳参数。结果表明:施胶量 60%、成型压力 5 N(cm)、成型温度 160°C 和成型时间 95 min 是 SC 制备的最佳参数。P 和 N 在 SC 上的吸附符合朗缪尔模型,表面吸附位的分布趋于均匀。P 和 N 在 SC 上的吸附是有利和自发的,吸附趋于单层吸附,化学吸附起主要作用。温度越高,SC 对 P 和 N 的吸附容量越高,SC 与 P 的亲和力高于与 N 的亲和力。SC 对 N 和 P 的吸附的拟二级动力学模型拟合度较高。SC 的 pH 值为 8.57。SC 的疏水性和稳定性相当高,表面颗粒紧密结合,粗糙度和孔径增大。P 和 N 在 SC 上的吸附机制可以归因于孔填充、静电吸引和氢键。研究结果可为茭白和污泥的资源化利用提供新技术,为生物炭的回收再利用提供新思路,为富营养化水体处理材料的选择提供依据。