Combined effect of desulfurization ash-FeCl3 on sludge dewatering performance
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摘要: 以毛細吸水時間和濾餅含水率為評價指標,研究脫硫灰-FeCl3對污泥脫水性能的影響.通過污泥各層胞外聚合物含量的變化以及紅外光譜分析,探討脫硫灰-FeCl3調理污泥的作用機理.結果表明:脫硫灰和FeCl3對污泥進行聯合調理的處理效果明顯好于這兩種調理劑單獨投加的處理效果.在調理過程中,脫硫灰-FeCl3將大量緊密結合的胞外聚合物剝落,部分轉化為結合度更低的上清液層胞外聚合物和松散結合的胞外聚合物,部分被Fe(OH)3吸附而除去,有效降低毛細吸水時間和濾餅含水率.Pearson相關性分析表明,緊密結合的胞外聚合物與毛細吸水時間和濾餅含水率均存在顯著的正相關性,是影響污泥脫水性能的重要因素.污泥濾液紅外光譜分析表明,脫硫灰-FeCl3使胞外聚合物剝落進入上清液的同時水解生成氨基酸、脂肪酸等小分子有機物.脫硫灰和FeCl3的最佳投加量分別為300mg·g-1和60mg·g-1,毛細吸水時間和濾餅含水率分別降至14.3s和70.22%,相比于原泥分別降低98.48%和16.10%,脫水性能得到大幅改善.Abstract: The effects of desulfurization ash and ferric chloride as conditioners on the sludge dewatering performance were investi-gated with the capillary suction time and the water content of the sludge cake as evaluating indicators. Extracellular polymeric substance measurements and Fourier transform infrared spectroscopy were used to analyze the sludge dewatering mechanism. The results show that a significantly better treatment effect can be obtained with desulfurization ash and ferric chloride together than just one conditioner. In the treatment process, a large amount of the tightly bound extracellular polymeric substance is spalled by desulfuriza-tion ash and ferric chloride, in which a part turns into a loosely bound extracellular polymeric substance and a slime extracellular polymeric substance, and the other part is removed by ferric hydroxide, which effectively decreases the water content of the sludge cake and the capillary suction time. Pearson correlation analysis results indicate that the tightly bound extracellular polymeric substance has significant correlation with the capillary suction time and the water content of the sludge cake, so it is an important factor affecting the sludge dewatering performance. Infrared spectrum analysis of the sludge filtrate reveals that hydrolysis happens when the extracellular polymeric substance enters into the sludge supernatant, and the contents of amino acid, aliphatic acid and other small molecule organic matter increase. When the dosages of desulfurization ash and ferric chloride are 300 mg·g-1 and 60 mg·g-1, respec-tively, the capillary sop time and the water content of the sludge cake decrease to the lowest. Their minimum values are 14.3 s and 70.22%, falling by 98.48% and 16.10%, respectively.
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Key words:
- sludge disposal /
- dewatering /
- desulfurization ash /
- ferric chloride /
- solid waste disposal
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