Zhang Chen, Sun Shuzhuang, Xu Shaojun, Johnston Chris, Wu Chunfei
School of Chemistry and Chemical Engineering, Queens University Belfast, BelfastBT7 1NN, United Kingdom.
School of Chemistry, Cardiff University, CardiffCF10 3AT, United Kingdom.
Ind Eng Chem Res. 2022 Dec 5;62(45):19216-19224. doi: 10.1021/acs.iecr.2c02668. eCollection 2023 Nov 15.
The management of anaerobic digestate is important to realize the value of the waste and enhance the whole system sustainability of anaerobic digestion. In this study, the phosphorus treatment of dirty irrigation water by biochar samples derived from digestate of anaerobic digestion were investigated. The biochars were further activated by steam activation with different duration time and KOH activation with different introducing ratios; the textural properties of biochars were optimized after activation from the aspect of biochar characterization. Notably, AD-N demonstrates a remarkable adsorption effect of phosphorus, with an adsorption efficiency of 8.99 mg g. Besides the effect of biochar dosage on phosphorus removal, adsorption kinetics and thermodynamic isotherms are studied. According to the adsorption kinetics, the adsorption of phosphorus from dirty water fits the Elovich equation ( = 0.95). Furthermore, the thermodynamic isotherm results illustrate the process of phosphorus removal by biochar is endothermic (Δ = 17.93 kJ mol) and spontaneous (Δ = 96.24 J mol K). Therefore, this work suggests a promising solution to phosphorus-related environmental challenges in industry and agriculture.
厌氧消化残余物的管理对于实现废物价值和提高厌氧消化整个系统的可持续性至关重要。在本研究中,对源自厌氧消化残余物的生物炭样品处理污水中的磷进行了研究。通过不同持续时间的蒸汽活化和不同引入比例的KOH活化对生物炭进行进一步活化;从生物炭表征方面对活化后的生物炭结构性质进行了优化。值得注意的是,AD-N对磷表现出显著的吸附效果,吸附效率为8.99 mg/g。除了生物炭用量对磷去除的影响外,还研究了吸附动力学和热力学等温线。根据吸附动力学,污水中磷的吸附符合Elovich方程( = 0.95)。此外,热力学等温线结果表明,生物炭去除磷的过程是吸热的(Δ = 17.93 kJ/mol)且自发的(Δ = 96.24 J/mol·K)。因此,这项工作为应对工农业中与磷相关的环境挑战提供了一个有前景的解决方案。