优化吸附多级分批工艺处理煤气化渣对焦化废水中挥发酚的高效去除

IF 3.8 4区 工程技术 Q2 CHEMISTRY, MULTIDISCIPLINARY Green Processing and Synthesis Pub Date : 2022-12-28 DOI:10.1515/gps-2022-8130
Ting Su, Bozhou Xianyu, Wen-wen Gao, Y. Gao, Pingqiang Gao, Cuiying Lu
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引用次数: 0

摘要

摘要以煤气化炉渣(CGS)为原料,采用粉末吸附剂对焦化废水(CW)中的污染物进行吸附。本研究最初关注CW对挥发性苯酚、NH3–N和化学需氧量(COD)的去除效率。CW酸沉淀4.0后,挥发酚的去除率从48.90%提高到70.50% mL硫酸试剂(3.0 M) 以及在优化条件下通过中心复合材料设计响应面方法优化吸附过程。液体和固体吸附剂的体积比(VL/S)和pH是影响吸附过程的重要因素。间歇实验使挥发酚、NH3-N和COD的去除率分别提高到85.1%、41.6%和77.3%。三级多级间歇工艺进一步提高了污染物去除率,分别为98.5%、73.6%和80.5%。利用扫描电子显微镜能谱仪和傅立叶变换红外光谱仪对吸附效果进行了验证。CGS基连续水处理吸附剂具有吸附性能好、成本低等优点。
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High removal efficiency of volatile phenol from coking wastewater using coal gasification slag via optimized adsorption and multi-grade batch process
Abstract Powder adsorbent made by coal gasification slag (CGS) was used to adsorb pollutants from coking wastewater (CW). This study initially focused on the removal efficiency of volatile phenol, NH3–N, and chemical oxygen demand (COD) from CW. The removal rate of volatile phenol increased from 48.90% to 70.50% after acid precipitation of CW by 4.0 mL reagent of sulfuric acid (3.0 M) and optimization of adsorption process by central composite design-response surface methodology with optimized conditions. Volume ratio of liquid and solid adsorbent (V L/S) and pH were the significant factors in the adsorption process. Batch experiment improved the volatile phenol, NH3–N, and COD removal rate to 85.1%, 41.6%, and 77.3%, respectively. Multi-grade batch process in grade 3 made a further promotion of pollutants removal rate as 98.5%, 73.6%, and 80.5%, respectively. Scanning electron microscope-energy dispersive spectrum and Fourier-transform infrared spectrometer were used to confirm the adsorption effect. CGS-based adsorbent for CW treatment has potential advantages due to the features of good adsorption performance and low cost.
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来源期刊
Green Processing and Synthesis
Green Processing and Synthesis CHEMISTRY, MULTIDISCIPLINARY-ENGINEERING, CHEMICAL
CiteScore
6.70
自引率
9.30%
发文量
78
审稿时长
7 weeks
期刊介绍: Green Processing and Synthesis is a bimonthly, peer-reviewed journal that provides up-to-date research both on fundamental as well as applied aspects of innovative green process development and chemical synthesis, giving an appropriate share to industrial views. The contributions are cutting edge, high-impact, authoritative, and provide both pros and cons of potential technologies. Green Processing and Synthesis provides a platform for scientists and engineers, especially chemists and chemical engineers, but is also open for interdisciplinary research from other areas such as physics, materials science, or catalysis.
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