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塔体倾斜条件下船舶尾气SO2洗涤脱除强化
引用本文:刘昶,王丁振,张涌新,赵中阳,吴卫红,沈敏强,戴豪波,郑成航,高翔.塔体倾斜条件下船舶尾气SO2洗涤脱除强化[J].中国环境科学,2021,41(6):2571-2576.
作者姓名:刘昶  王丁振  张涌新  赵中阳  吴卫红  沈敏强  戴豪波  郑成航  高翔
作者单位:1. 浙江大学能源工程学院, 能源清洁利用国家重点实验室, 国家环境保护燃煤大气污染控制工程技术中心, 浙江 杭州 310027;2. 浙江浙能迈领环境科技有限公司, 浙江 杭州 311202;3. 浙江天地环保科技股份有限公司, 浙江 杭州 311121
基金项目:国家自然科学基金资助项目(U1609212,51621005)
摘    要:针对恶劣海况下船舶洗涤塔倾斜的情况,利用船舶尾气净化小试试验台,开展了洗涤塔不同倾斜角度下对镁基吸收剂脱硫效率影响的实验,研究了液气比、入口SO2浓度、烟气量、浆液pH值、对洗涤塔内SO2脱除效率的影响.结果表明:脱硫效率随洗涤塔倾角度的增大而降低.脱硫效率随液气比的增大而升高,较低的液气比时倾斜角度对SO2脱除效率的影响更明显;脱硫效率随SO2入口浓度的增大而略微降低,入口SO2浓度较高时,SO2脱除效率的降低随倾斜角度的增加变化较为明显;相同液气比条件下,脱硫效率随塔内烟气量的增加而升高;脱硫效率随浆液pH值的增大而升高,低pH值时SO2脱除效率的降低随倾斜角度的增加变化较为明显.筛板-边壁环的加入可有效提高倾斜条件下洗涤塔的脱硫效率,倾斜角度为15°时,脱硫效率提高将约3%;倾斜角度为10°时,脱硫效率提高约5%;倾斜角度在5°以下时,脱硫效率可提高将近7%.

关 键 词:洗涤塔  倾斜  镁基吸收剂  脱硫效率  塔内构件  
收稿时间:2020-10-15

Investigation of SO2 removal enhancement from marine flue gas under scrubber swing condition
LIU Chang,WANG Ding-zhen,ZHANG Yong-xin,ZHAO Zhong-yang,WU Wei-hong,SHEN Min-qiang,DAI Hao-bo,ZHENG Cheng-hang,GAO Xiang.Investigation of SO2 removal enhancement from marine flue gas under scrubber swing condition[J].China Environmental Science,2021,41(6):2571-2576.
Authors:LIU Chang  WANG Ding-zhen  ZHANG Yong-xin  ZHAO Zhong-yang  WU Wei-hong  SHEN Min-qiang  DAI Hao-bo  ZHENG Cheng-hang  GAO Xiang
Institution:1. National Environmental Protection Coal-fired Air Pollution Control Engineering Technology Center, State Key Laboratory of Clean Energy Utilization, College of Energy Engineering, Zhejiang University, Hangzhou 310027, China;2. Zhejiang Energy Marine Environmental Technology Co., LTD., Hangzhou 311202, China;3. Zhejiang Tiandi Environmental Protection Technology Co. Ltd., Hangzhou 311121, China
Abstract:The SO2 removal efficiency of magnesia-based absorbent for different absorber inclined angles was investigated, aiming at desulfurization enhancement of the swing condition of ship absorber under severe sea conditions. The effects of liquid-gas ratio, inlet SO2 concentration, flow gas flow rate, pH value on desulphurization efficiency in scrubber tower were studied. The results showed that the desulfurization efficiency decreased with the increasing of inclined angle and the decreasing of the liquid-gas ratio, and the influence of inclined angle on desulfurization efficiency was more obvious at lower liquid-gas ratio. The desulfurization efficiency increased with the increasing of flue gas flow rate and pH value. For different pH values & inlet SO2 concentrations, the variation range of desulfurization efficiency caused by inclined angles was different. The sieve tray and distribution ring improved the desulfurization efficiency of the absorber under swing condition effectively. When the inclined angle was 15°, the desulfurization efficiency increased by about 3%, while the desulfurization efficiency increased by about 5% at the inclined angle of 10°. When the inclined angle was below 5°, the desulfurization efficiency could be improved by nearly 7%.
Keywords:scrubber  inclination  magnesia-based absorbent  desulfurization efficiency  internals  
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