Department of Environmental Engineering, Kyungpook National University, 80 Daehak-ro, Buk-gu, Daegu 41566, Republic of Korea.
Department of Chemical Engineering, Hanbat National University, 125 Dongseodae-ro, Yuseong-gu, Daejeon 34158, Republic of Korea.
Sci Total Environ. 2018 Feb 15;615:698-707. doi: 10.1016/j.scitotenv.2017.10.023. Epub 2017 Oct 17.
Biochars from agricultural residues have recently attracted significant attention as adsorbents for purifying contaminated water and wastewater. In this study, the removal of strontium from aqueous solutions was investigated using rice straw-based biochar (RSBC) beads in both batch and continuous fixed-bed column systems. The RSBC beads had negatively charged surfaces and exhibited a large surface area (71.53m/g) with high micro-porosity. The synthesized beads showed a maximum adsorption capacity of 175.95mg/g at an initial strontium concentration of 10g/L at 35°C and pH7. Furthermore, they showed a good selectivity toward strontium ions in the presence of competing ions such as Al, Mg, and K. The effects of different operating conditions like flow rate and initial strontium concentration were investigated in the fixed-bed column reactor. The Thomas, Adams-Bohart, and Yoon-Nelson models were applied to the experimental data to predict the breakthrough curves using non-linear regression. Both the Thomas and the Yoon-Nelson models were appropriate for describing entire breakthrough curves under different operating conditions. Overall, RSBC beads demonstrate great potential as efficient adsorbents for the treatment of wastewater polluted with strontium in a continuous operation mode.
农业废弃物生物炭作为一种吸附剂,近年来在净化受污染水和废水方面引起了广泛关注。本研究采用稻草基生物炭(RSBC)珠粒,在间歇式和连续式固定床柱系统中研究了从水溶液中去除锶的情况。RSBC 珠粒具有带负电荷的表面,表现出大的表面积(71.53m/g)和高微孔率。在初始锶浓度为 10g/L、温度为 35°C、pH 值为 7 的条件下,合成的珠粒的最大吸附容量为 175.95mg/g。此外,它们在存在竞争离子如 Al、Mg 和 K 的情况下对锶离子表现出良好的选择性。在固定床柱反应器中,考察了不同操作条件如流速和初始锶浓度的影响。采用 Thomas、Adams-Bohart 和 Yoon-Nelson 模型对实验数据进行非线性回归,以预测穿透曲线。Thomas 和 Yoon-Nelson 模型都适用于描述不同操作条件下的整个穿透曲线。总的来说,RSBC 珠粒作为一种高效吸附剂,在连续操作模式下,有望用于处理含有锶的废水。