共查询到18条相似文献,搜索用时 140 毫秒
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烟气脱硫关注的是对流扩散.脱硫工艺根据双膜理论的基本概念所确定的相际传质速度关系,为传质设备设计的主要依据.烟气脱硫技术中大量采用化学吸收法.合理提高吸收塔内烟气流速,有利于提高系统传质速率,减少传质阻力;通过对塔局部优化设计,可增强系统传质性能.对石灰石-石膏法而言,液气比决定了石灰石的消耗量.烟气中的飞灰既在液相膜表面结壳,阻碍石灰石的溶解,又影响脱硫系统含尘量排放指标,降低石膏品质.石灰石粒径确定原则为在保证一定脱硫率的前提下,获取最优的经济指标.浆液的pH值是影响脱硫效率的重要因素.通过对系统操作、运行和设计中几个重要参数的分析,提出相应工程对策. 相似文献
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为探究煤炭生产过程中呼吸性粉尘难以捕捉且对人体造成伤害的问题,提出超音速水雾荷电降尘技术。基于荷电雾化机理,研究电极环直径、电极间距、电压3因素对超音速气动液滴荷电、雾化效果的影响。利用网状目标法测量雾滴群电流并计算荷质比,采用SPSS软件分析3因素与雾滴荷质比之间的相关性,并用激光粒度仪测量雾滴粒径。最后,采用最优荷电雾化参数进行喷雾降尘试验。研究结果表明:各因素对荷电效果的影响次序为:电压>电极间距>电极环直径;雾滴粒径随电压的升高而减小,随电极间距的增大先增大后减小,随电极环直径的增大先减小后增大;当电压12 kV,电极间距2.5 cm,电极环直径6 cm时,超音速荷电水雾降尘效果最佳,与普通水雾降尘相比,全尘降尘效率提高12.4%,呼尘降尘效率提高49.6%。 相似文献
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为实现对煤尘的有效防控,进一步提高磁化水降尘性能,提出磁化荷电喷雾降尘技术,通过研究液滴在磁化、荷电情况下的受力,揭示磁化荷电喷雾降尘机理;通过自主搭建的动、静态综合除尘实验平台,研究不同磁化强度、荷电电压下溶液表面张力和雾滴粒径的变化规律,进而确定最佳雾化参数。研究结果表明:磁化荷电后的溶液表面张力和雾滴粒径随磁化强度、荷电电压的增大呈现先下降而后上升,最后趋于平稳。荷电电压为9 kV、磁化强度为350 mT时达到最佳效果,此时,与清水相比全尘降尘效率达到92.79%、提高69.63%,呼尘降尘效率达到78.59%、提高94.01%。磁化荷电的溶液表面张力降低,破碎时所做表面功更小,雾化后液滴粒径更小更均匀,与尘粒接触面积增大,可提高捕尘效率,改善矿井环境。 相似文献
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半干半湿法烟气脱硫技术的原理及应用研究 总被引:1,自引:0,他引:1
半干半湿法烟气脱硫技术利用蒸气激活粉煤灰中的碱性物质,以及水蒸气与石灰反应生成的强碱性的消石灰,降低了石灰的使用量.脱硫灰在蒸气输送过程中,CaSO3被携带的空气氧化生成CaSO4.由于采用高盐锅炉废水进行增湿,提高了SO2与脱硫剂的反应速度与效率.本文通过对脱硫机理的讨论,研究了该技术的工艺特点.在CaO和SO2的物质的量比值小于1的条件下,SO2去除率达80%以上.这项技术不但适用于锅炉烟气脱硫处理,还可用于垃圾焚烧炉的烟气脱酸净化. 相似文献
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活性炭应用于烟气脱硫技术具有脱硫效率高、原料来源广泛、工艺适应范围广、环保性能好、脱硫过程不耗水等优点,受到人们的高度重视。简要介绍了我国SO2的污染现状及目前各种脱硫技术,采用干法脱硫工艺,着重对影响脱硫效率的反应温度、烟气中O2体积分数、SO2体积分数和活性炭粒径等因素进行了研究。结果表明:1)温度的降低有利于提高脱除SO2的效率;2)烟气中O2体积分数越高,活性炭脱硫效果越好,活性炭脱硫能力与烟气中O2体积分数成正比;3)烟气中SO2体积分数越低,活性炭脱硫效果越好,活性炭脱硫能力随SO2体积分数增加而降低;4)活性炭粒径对活性炭的脱硫能力没有明显影响。 相似文献
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在自行设计和搭建的模拟湿法脱硫烟气系统中,研究了基于控制冷凝法原理的SO_3/硫酸雾采集装置对湿法脱硫后SO_3/硫酸雾的捕集性能,重点考察了螺旋管与石英棉冷凝温度、采样枪温度、采样流量、采样时间和SO_3/硫酸雾质量浓度对SO_3/硫酸雾捕集性能的影响。结果表明,在研究范围内,湿法脱硫后SO_3/硫酸雾采集装置优化的操作参数为:螺旋管及石英棉冷凝温度95℃,采样枪温度280℃,采样流量17 L/min,采样时间30 min。SO_3/硫酸雾质量浓度较高时,螺旋冷凝管对SO_3/硫酸雾的捕集起主要作用,其捕集的SO_3/硫酸雾比例在75.8%~80.8%,远高于螺旋冷凝管与石英棉捕集SO_3/硫酸雾的比例;SO_3/硫酸雾质量浓度较低(约1mg/m3)时,采样枪对SO_3/硫酸雾的捕集起主要作用,其捕集SO_3/硫酸雾的比例大于50%。 相似文献
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《Process Safety and Environmental Protection》2014,92(3):242-250
Power generation from municipal solid waste incineration (MSWI) is in widespread use as a technology for solid waste treatment and energy recovery. One of the main environmental issues posed by MSWI plants is the continuous emission of pollutants into the atmosphere. Among flue gas components, acid gases are of particular concern due to their high potential impact on the environment. The two-stage dry treatment is among the Best Available Technologies for an enhanced removal efficiency of acid gases. In the first stage the removal process is based on the reaction of acid gases with solid calcium hydroxide (slaked lime), while in the second stage removal is obtained by reaction with sodium bicarbonate. In the present study, design and process data from an existing Municipal Solid Waste Incinerator, where a flue gas two-stage treatment is adopted, were used to test a previously developed operational model. The model was implemented in a simulation software to describe both design and process conditions, taking also into account the recycle rate of solid products and unreacted calcium hydroxide in the first stage. Simulations were carried out with the aim of optimizing both reactant feed rates and amounts of solid wastes formed in the acid gas removal process. 相似文献
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在恒温器中利用工业上常见的工业原料合成高分子物质,筛选出溶解性能合格的高分子物质作为脱硫添加剂,对添加剂的缓冲性能进行了系列研究,并且在液气比L/Q=5.0、石灰浆质量分数w=3%的条件下,对二氧化硫烟气进行脱硫对比试验研究。结果表明:添加剂作用效果明显,具有很强的缓冲性能;添加一定量的添加剂,脱硫效率上升4%;添加剂还具有一定的缓冲功能。 相似文献
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An air-recirculated stripping involved two processes and did not require any pretreatment. First, stripping CO2 decreased the buffer capacity of the anaerobic digestate, thereby reducing the amount of lime used to achieve a high pH. Second, lime was added to increase pH and remove ammonia from the anaerobic digestate of pig manure. pH increased from 8.03 to 8.86 by stripping CO2 in the first process (gas-to-liquid ratio = 180) and further reached 12.38 in the second process (gas-to-liquid ratio = 300). During process optimization, the maximum ammonia removal efficiency reached 96.78% with a lime dose of 22.13 g. The value was close to 98.25%, which was the optimal result predicted by response surface methodology using the software Design-Expert 8.05b. All these results indicated that air-recirculated stripping coupled with absorption was a promising technology for the removal and recovery of nitrogen in the anaerobic digestate of pig manure. 相似文献