氨汽提塔处理城市生活垃圾渗滤液污染地下水结垢:结垢原因及其对氨汽提性能影响的研究

Q3 Environmental Science
P. Viotti, R. Gavasci
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引用次数: 12

摘要

本文介绍了意大利北部一个旧城市固体垃圾填埋场的渗滤液污染地下水处理时,汽提塔结垢的原因。本文还报道了尺度对汽提性能的影响。为了提高去除率,整个工艺过程包括在pH为bbbb11的条件下进行混凝-絮凝预处理,然后将水加热至38℃后进行氨汽提阶段。剥离后的氨用硫酸吸收回收,生成30%的硫酸铵溶液(作为基肥重复使用)。排出的气流再循环到汽提塔(闭环系统),以避免填料内部温度过度下降,主要是在冬季,从而降低效率和结冰的风险。填料的逐渐结垢导致氨去除效率从初始值98%(清洁填料)下降到连续运行六个月后的80%,需要进行化学清洗。对汽提工艺的设计和操作的最佳条件也进行了记录。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scaling of ammonia stripping towers in the treatment of groundwater polluted by municipal solid waste landfill leachate: study of the causes of scaling and its effects on stripping performance.
This paper documents the causes of the scaling of stripping towers used for the treatment of groundwater polluted by the leachate from an old municipal solid waste (MSW) landfill in northern Italy. The effects of the scaling on the stripping performance are also reported. The whole process consists of a coagulation-flocculation pre-treatment at pH > 11, followed by an ammonia stripping stage, after heating the water to 38°C in order to improve removal efficiency. The stripped ammonia is recovered by absorption with sulfuric acid, producing a 30% solution of ammonium sulfate (reused as a base fertilizer). The effluent air stream is recirculated to the stripping towers (closed loop systems) in order to avoid an excessive temperature drop inside the packings, mainly in winter, with consequent loss of efficiency and risk of icing. The progressive scaling of the packing has resulted in a loss of ammonia removal efficiency from an initial value of 98% (clean packing) down to 80% after six months of continuous operation, necessitating a chemical cleaning. Optimum conditions for design and operation of the stripping process are also documented.
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来源期刊
Revista Ambiente e Agua
Revista Ambiente e Agua Environmental Science-Environmental Science (all)
CiteScore
1.80
自引率
0.00%
发文量
48
审稿时长
22 weeks
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