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稳定均匀的燃烧温度是确保减少垃圾焚烧系统大气污染物排放量的一个重要因素.采用内旋流流化床(ICFB)进行了城市生活垃圾焚烧实验,探讨了不同的布风速度、垃圾焚烧量、流化床浓相区高度和不同种类垃圾对焚烧稳定性的影响,并给出了流化床内部温度和CO、NOX、SO2等大气污染物的浓度变化.内旋流流化床采用非均匀布风,低速风的移动区尚未流化时,浓相区温度存在一定的不均匀性,低速风区流速超过2倍初始流化速度后,浓相区温度是均匀一致的;流化床的床料具有较好的蓄热能力,较厚的床层有利于提高燃烧的稳定性,可减少垃圾给料和垃圾热值的波动对燃烧温度造成的不利影响;垃圾的焚烧效果与垃圾的热值有直接关系,焚烧低热值垃圾时,为了提高焚烧温度并达到较好的排放指标,需要增加一定量辅助燃料进行助燃;内旋流流化床在燃烧稳定性以及燃烧温度控制上具有一定优势. 相似文献
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针对垃圾焚烧飞灰中钙及两性重金属含量高的特点,在高液固比(10:1)条件下对焚烧飞灰进行加速碳酸化处理以改善飞灰的理化特性.采用XRD、SEM、压汞分析以及硫酸硝酸毒性浸出方法,对加速碳酸化处理后飞灰的晶相、形貌、孔隙特征及重金属(Pb、Cu、Zn、Cd、Ni、Cr)浸出特性进行了研究.结果表明,加速碳酸化处理后飞灰中的CaClOH峰消失,而CaCO3的峰增加,且强度增加.加速碳酸化处理可以有效降低焚烧飞灰的pH值, Pb、Cu、Zn和Ni的浸出分别减少了99.7%、93.9%、90.6%和27.8%,而Cr的浸出浓度增加了29.7%. 相似文献
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试验在650~1350℃条件下探讨了温度和时间对飞灰中Zn的挥发率的影响,采用XAFs对飞灰及二次飞灰中Zn的赋存形态进行分析,运用吉布斯自由能理论推导了Zn的氯化反应途径,并开展了验证试验.结果表明:温度是影响Zn挥发的主要因素,其挥发趋势随温度先增加而后降低,在1000℃时挥发率达到最高,而时间对其挥发效果影响较小;Zn主要以氯化物形态挥发,从假设反应途径的吉布斯自由能理论计算及验证试验得出,热处理过程中Zn的氯化反应分两步进行,首先飞灰中氯化物与SiO2反应生成Cl2,而后与ZnO反应生成ZnCl2,而小部分Cl2可能与水蒸气反应形成HCl,再与ZnO反应生成ZnCl2. 相似文献
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通过分析国内外垃圾焚烧发电厂烟气净化系统的现状,基于燃煤电站和垃圾焚烧发电厂烟气物性之间的相似性及燃煤电站超低排放系统的先进性,提出了分别以循环流化床法脱硫和高效协同型湿法脱硫技术为核心的垃圾焚烧烟气超低排放改造可行技术路线,并分析了2种技术路线的初投资和运行成本.结果表明:2种技术路线的初投资相当,约为1.37万元/t,但以湿法脱硫为核心的技术运行费用较高,日运行成本约为16.46元/t;采用环保电价补贴政策时,2种烟气超低排放技术路线超过政策发电量部分的发电收入分别可以在3a和7a内弥补超低排放改造及运行带来的资金支出. 相似文献
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垃圾焚烧飞灰是危险废物因而必须进行处理.用冶金高温熔融分离来处理飞灰是一个新的无害化处理方法.在了解飞灰特性的基础上,研究了飞灰的冶金性能.对飞灰进行冷固结造球,并分析了球团的强度和浸出毒性;测试了球团的粘度和熔化性温度;进行了飞灰球团高温熔融分离实验,分析了熔渣中的重金属和浸出毒性.实验结果表明,飞灰的矿物组成主要是CaO、SiO2等氧化物;选择7%消石灰,添加1%糖浆进行飞灰冷固结,并养护18d,单个球团平均抗压强度可达到1005 N,球团的浸出毒性没有超标.飞灰的熔化性温度范围为1250~1290℃,此时的熔渣粘度较低;飞灰高温熔融分离的适宜工艺参数为:熔融温度1400℃,熔融时问10min,球团碱度1.8,金属熔池与飞灰球团配比为5:4,金属熔融分离效果很好;飞灰经过1300℃以上的高温熔融,熔渣远远低于浸出毒性标准. 相似文献
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Incineration experiments with MSW, which had been impregnated with heavy metals, were presented to obtain information on the volatilization behavior of the elements cadmium (Cd), lead (Pb), and zinc (Zn) under different conditions. Experiments were carried out in a bubbling fluid bed system connected to a customized inductively coupled plasma optical emission spectroscopy(ICP-OES) for analyzing metals in the flue gas. The results indicated that the combustion temperature, the gas atmosphere, and the chlorine content in the flue gas could affect the volatilization behavior of heavy metals. In the fluidized bed combustion, a large surface area was provided by the bed sand particles, and they may act as absorbents for the gaseous ash-forming compound. Comparer with the metals Cd and Pb, the vaporization of Zn was low. The formation of stable compounds such as ZnO.Al2O3 could greatly decrease the metals volatilization. The presence of chlorine would enhance the volatilization of heavy metals by increasing the formation of metal chlorides. However, when the oxygen content was high, the chlorinating reaction was kinetically hindered, which heavy metals release would be delayed. 相似文献
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With the lack of space for new landfills, municipal solid waste (MSW) incineration is playing an increasingly important role
in municipal solid waste management in China. The literatures on certain aspects of incineration plants in China are reviewed
in this paper, including the development and status of the application of MSW incineration technologies, the treatment of
leachate from stored MSW, air pollution control technologies, and the status of the fly-ash control method. Energy policy
and its promotion of MSW-to-energy conversion are also elucidated. 相似文献
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珠三角地区生活垃圾焚烧厂汞的排放特征 总被引:3,自引:1,他引:3
利用OH法对珠三角8家垃圾焚烧厂(6家采用炉排炉工艺,2家采用流化床工艺)进行烟气采样,同时采集飞灰、底渣、煤炭样品进行分析.研究结果表明,珠三角炉排炉焚烧烟气平均总汞(THg)排放浓度为(51.4±28.3) μg·Nm-3,流化床为(19.5±13.6) μg·Nm-3.炉排炉飞灰THg含量为6674 μg·kg-1,流化床飞灰THg含量为2135 μg·kg-1,底渣中炉排炉THg含量为70 μg·kg-1,流化床为30 μg·kg-1.飞灰中的汞含量要远远高于底渣.垃圾焚烧过程中炉排炉70.8%的汞由烟气排放,26.3%存在飞灰中,底渣中的汞仅占2.9%.流化床工艺烟气汞排放占总汞排放的33.2%.利用质量平衡法计算珠三角垃圾中汞含量平均值为0.293 mg·kg-1,流化床工艺因添加燃煤所产生的汞排放占到垃圾焚烧总汞排放的31.6%. 相似文献
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利用响应面法进行试验设计,选定蔗糖初始浓度、黑曲霉孢子浓度、投加的飞灰浓度以及飞灰投加时间作为影响因素,对生物淋滤城市生活垃圾焚烧飞灰的处理条件进行优化.通过响应面法,得到飞灰中Cd、Cr、Fe、Mn、Zn及重金属总量与4种因素之间的非线性回归方程,确定了生物淋滤的最适条件范围:蔗糖初始浓度为114~126g/L;黑曲霉孢子浓度为(1.6~2.1)×107个/mL;飞灰浓度为29~39g/L;飞灰投加时间为3.6~4.4d.在最适条件下,70g/L飞灰经20d生物淋滤后,溶出重金属总浓度降为901mg/L,占飞灰中重金属总量的41%,处理后飞灰的重金属浸出毒性远低于国家标准. 相似文献
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Bio-surfactant is a new type of surfactant that is produced in microbial metabolism. Adding bio-surfactant during composting process, especially to those contain some toxic substances, has been proved to be a promising way. In this study, Strains Ⅲ(2), a bacterial with high activity to produce bio-surfactant, were isolated firstly. Following comparison experiments with and without adding Strains Ⅲ(2), namely Run 1 and Run R, were conducted, respectively. The experimental results showed that, by adding Strains Ⅲ (2),the surface tension could reduce from 46.5 mN/m to 39.8 mN/m and the corresponding time to maintain the surface tension under 50 mN/m could prolong from 60 h to 90 h. The oxygen uptake rate and total accumulated oxygen consumption with Stains Ⅲ (2) were both higher than those without Strains Ⅲ (2), while the accumulation of H2S in outlet gas was reduced to around 50% of Run R. Moreover, two additional experiments were also carried out to examine the effects of strains coming from different systems. One is adding Strains Ⅲ (2)with a dose of 0.4% (Run 2), and the other is seedling commercial Strains at the same conditions, the composting experiments showed that: Run 2 was more effective than Run 3, because the commercial Strains can be suppressed significantly in a complex composting system with different pH, high temperature and some of metals. The bio-surfactant was also added into the solid waste, which contained some toxic substances, the corresponding results showed that the remove rate of Hg and sodium pentachlorophenolate(PCP-Na) could be improved highly. Thus, the microenvironment, reactionrate and composting quality could be enhanced effectively by adding bio-surfactant to the composting process. 相似文献
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城市生活垃圾焚烧飞灰中钾盐浸出研究 总被引:1,自引:0,他引:1
通过物理化学表征手段和多因素水浸试验对城市生活垃圾焚烧飞灰的性质和飞灰中钾盐浸出规律进行研究.结果表明,飞灰的主要成分为CaO、KCl和NaCl,平均粒径为12.599μm,水洗后的飞灰颗粒粒径会变大,而比表面积变小.粒径范围0.037~0.075 mm飞灰中的金属元素含量对飞灰金属总量贡献率全部在60%左右.浸出过程中,在pH=12的条件下,搅拌强度为400 r·min~(-1),浸出温度为90℃,采用液固质量比为5∶1能使氯化钾的浸出率达到90%以上.浸出液中含有大量的可溶性氯化钾表明飞灰中的钾盐可以通过水洗、过滤、纯化、分布结晶的方式收,氯化钾晶体纯度可达到90%. 相似文献
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1IntroductionIthasbeenreportedthatmunicipalsolidwasteincinerationflyash(MSWFA)containsconsiderableamountsofheavymetals(Berg,1... 相似文献
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Chemical speciation and mobility of heavy metals in municipal solid waste incinerator fly ash 总被引:1,自引:0,他引:1
Chemical speciation is a significant factor that govems the toxicity and mobility of heavy metals in municipal solid waste incinerator fly ash. Sequential extraction procedure is applied to fractionate heavy metals( Pb, Zn, Cd, Cu, and Cr) into five defined groups: exchangeable, carbonate, Fe-Mn oxide, organic, and residual fractions. The mobility of heavy metals is also investigated with the aid of toxicity characteristic leaching procedure. In the fly ash sample, Pb is primarily presented in the carbonate (51%) and exchangeable(20% ) fractions; Cd and Zn mainly exist as the exchangeable(83% and 49% respectively) ; Cu is mostly contained in the last three fractions(totally 87% ) ; and Cr is mainly contained in the residual fraction(62% ). Pb, Zn and Cd showed the high mobility in the investigation, thus might be of risk to the natural environment when municipal solid waste incinerator fly ash is landfilled or reutilized. 相似文献
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根据二 英类物质在常温大气环境中的固相吸附态比例约为90%~100%的特性,提出以颗粒物TSP和PM10为载体模拟二 英类物质扩散迁移过程,并采用AERMOD模型进行模拟.结果表明,100%和80%的气-固分配系数设置对二 英类物质扩散迁移落地点浓度和距离影响不显著,颗粒物粒径分布系数影响较明显.二 英类物质实测浓度值为0.23~1.66 pg I-TEQ/m3.以TSP为载体AERMOD模拟浓度值为0.13~1.81 pg I-TEQ/m3,以PM10为载体模拟浓度为0.15~1.68 pg I-TEQ/m3.两参数对模拟结果产生的平均总不确定性分别为24.31%和12.43%.AERMOD模型模拟值与实测值相对差比值为0.01~0.89,PM10模拟浓度值比TSP模拟浓度值更接近于实测值. 相似文献
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压实作用被认为是影响填埋垃圾降解过程的一个重要因素,实验通过自制的压缩降解模拟填埋反应器装置,研究了阶梯增加式压力21k Pa→42 k Pa→84 k Pa(分别在垃圾填埋后的第75、103和131 d时施加)对填埋垃圾产甲烷这一资源化重要阶段的影响,包括产气特性、渗滤液性质及固体沉降等的变化.21 k Pa和42 k Pa分别恒定了4周,垃圾最后在84 k Pa恒定压力下降解,实验总共持续了170 d.结果表明,在初始21k Pa的压力作用下,由于接种物跟垃圾接触面积的增大,甲烷日产量从第75 d的1.85 L·d-1增加到了第76 d的2.95 L·d-1,产甲烷速率提高了59.82%,42 k Pa和84 k Pa时均有所增加,但增加程度均不明显.压力还使砾石层上部积留了一定水位高度的渗滤液,渗滤液的COD和含氮量在压力作用下都有了暂时的升高.压实作用还令垃圾体产生了较大的沉降,但压力进一步增大并没有使垃圾继续发生较多的沉降.实验结果有助于更好地了解压力对填埋垃圾降解过程的影响. 相似文献