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1.
探讨以河道底泥、污水污泥、黏土为原料制作陶粒的最佳烧制工艺条件,利用单因素实验对陶粒性能进行比较分析,利用X射线衍射(XRD)、扫描电子显微镜(SEM)对微观结构进行表征分析。结果表明:以河道底泥烧制陶粒是可行的,预热温度和时间的控制将影响陶粒的轻质化,烧结温度应接近陶粒低共熔点,通过改变烧结时间可获得不同类型陶粒。烧制高强陶粒时,在陶粒体系低共熔点温度环境下延长烧结时间比单纯提高烧结温度更恰当。以预热温度400℃、预热时间20min、烧结温度1 175℃、烧结时间25min为烧制条件制作的河道底泥陶粒具有良好的性能,堆积密度为620kg/m~3,表观密度为1 125kg/m~3,筒压强度约为0.7MPa,吸水率达36.27%。  相似文献   

2.
城市河道是城市生态系统的重要组成部分.以淮河流域某城市河道为研究对象,在了解其污染物分布特征的基础上,分析了底泥中的微生物组成,分别测定了厌氧氨氧化、硫酸盐还原氨氧化、异养反硝化、硫自养反硝化和硫酸盐还原等氮、硫转化过程的潜力.结果表明:(1)底泥中微生物以变形菌门为主,相对丰度为30%左右,同时包含与氮、硫循环密切相...  相似文献   

3.
分析赤泥、膨润土和煤粉的理化性质,并在此基础上烧制赤泥陶粒。考察不同发泡剂煤粉掺量下所烧制陶粒的烧胀性能。采用热性质分析、矿物分析和红外光谱等手段分析陶粒样品,研究煤粉的掺量和烧结温度对陶粒烧胀过程的影响以及赤泥陶粒的烧胀机理。结果表明:烧结温度为1 000℃时,随着煤粉掺量的增加,赤泥陶粒的显气孔率和吸水率升高,而体积密度和抗压强度降低;煤粉掺量为30%时,赤泥陶粒显气孔率45.13%,体积密度0.131 g·cm~(-3),吸水率39.0%,抗压强度14.7 MPa;掺入煤粉后赤泥陶粒生料有机组分烧失量增加,熔融温度降低,烧胀过程中还原性气氛增强;烧结温度升高能够促进易熔融矿物铁橄榄石的生成,提高陶粒的烧胀性能。  相似文献   

4.
粉煤灰/污泥烧结陶粒的研制与应用   总被引:12,自引:0,他引:12  
以粉煤灰和工业污水处理站的剩余污泥为主要原材料,采用烧结法研制复合陶粒.分析了不同配方和不同烧结温度对陶粒性能的影响,以陶粒吸水率、容重为评价指标确定最佳配比和最佳烧结温度,并对陶粒用于铺设景观水底、治理城市水体进行了可行性分析.粉煤灰/污泥陶粒的容重为0.79~0.90 g/m3,吸水率为68.95%~80.01%.陶粒对水中氨氮和总磷吸附容量分别为0.03~0.05 mg/g和0.01~0.02 mg/g.  相似文献   

5.
城市生活污泥烧结制陶粒的两种工艺比较研究   总被引:10,自引:0,他引:10  
通过试验比较了"湿法造粒-烧结"和"干化-烧结"2种利用城市生活污泥烧结制陶粒的工艺路线.分析了工艺路线、原料配比和烧结温度对污泥陶粒的产品强度、吸水率和密度等性能指标的影响,同时指出了沸石粉和粘土作为助熔剂的不同作用机理和作用温度.实验结果表明,污泥"干化-烧结"制陶粒更有优势.烧结陶粒不会造成二次污染.综合考虑产品性能与经济性,适宜的物料配比为干污泥50%、粉煤灰30%~40%、粘土10%~20%.  相似文献   

6.
为减少城市生活垃圾焚烧飞灰(简称飞灰)与电解锰渣中的重金属对环境的危害,考察了利用两者辅以粉煤灰烧制陶粒的可行性。通过单因素实验确定原材料最佳配比以及最宜烧制工艺条件,并对焙烧后陶粒的微观形貌以及重金属浸出浓度进行分析。结果表明:随着飞灰掺量的增加,陶粒的颗粒强度与堆积密度降低,1 h吸水率升高;确定最佳原料配比为飞灰掺量12%、电解锰渣掺量43%、粉煤灰掺量45%;确定最宜烧制工艺条件为预热温度600℃、焙烧温度1140℃。在最佳条件下,烧制陶粒的颗粒强度为769 N,堆积密度为687 kg·m~(-3),1 h吸水率为6.44%。通过微观结构观察,陶粒表面致密呈釉化,内部呈现多孔隙结构。陶粒中重金属浸出浓度均低于国家标准。此陶粒的使用可为飞灰与电解锰渣资源化利用提供参考。  相似文献   

7.
建立了中试研究生产线,工艺流程包括干燥、粉磨、混合上料、成型、烧结和烟气处理等,在中试生产线上,对污泥(包括工业污泥(ISS)和生活污泥(DSS))与底泥烧结制备陶粒骨料的物料配比、烧结温度、添加剂等相关技术参数进行了系统研究。研究发现,ISS中CaO和磷的化合物含量较高,导致骨料的膨胀性能不佳,添加一定量的生活污水污泥(DSS)可改善骨料的膨胀性能。中试研究确定600~800级的陶粒骨料烧结的适宜工艺条件为:配比SS∶DSS∶RS=1∶4∶5~1∶5∶4或DSS∶RS=3∶7~5∶5,烧结温度1 140℃,烧结时间28 min环境安全性研究表明,在陶粒烧结过程中大部分重金属在烧结过程中被固定在陶粒中,重金属浸出率非常低,在使用过程中不会对环境产生危害。  相似文献   

8.
讨论了以河道底泥和生活污泥为原料烧制陶粒比表面的测定原理、方法和结果,并对生活污泥添加量、粘结刑添加量和烧结温度对陶粒比表面的影响作了进一步分析。  相似文献   

9.
弧叶型旋转窑烧制污泥陶粒实验研究   总被引:1,自引:1,他引:0  
实验选取污水污泥、粉煤灰和港口淤泥为原辅材料,采取正交实验设计物料质量配合比与烧制工艺参数,遴选出最佳物料配比和优化的烧制工艺;依照选定物料配比和工艺参数采用弧叶型旋转窑烧制污泥陶粒并测定产品的1 h吸水率,软化系数,堆积密度,表观密度,颗粒级配,粒型系数以及产品浸出毒性等技术指标,选取制得陶粒产品替代全部天然石料配制...  相似文献   

10.
为制备用于处理含磷废水的新型功能陶粒滤料,研究了以粉煤灰为主要原料的高效除磷型陶粒烧结制备工艺。通过L9(34)正交实验和极差分析,结合筒压强度实验得到最佳烧结条件为:预热时间30 min,烧结温度950℃,烧结时间30 min;各因子对除磷效率的影响程度为:烧结温度〉烧结时间〉预热时间。通过理化性质测试得出最佳工艺制备的陶粒特性:堆积密度为877 kg/m3,表观密度为1 509 kg/m3,空隙率为41.9%,筒压强度6.94 MPa,盐酸可溶率为2.3%。应用最佳工艺条件所制备的陶粒处理10 mg/L含磷废水获得高达99.83%的磷酸盐去除率。通过最佳烧结工艺能够制备高效除磷型粉煤灰陶粒滤料,在处理含磷废水方面具有一定的应用前景。  相似文献   

11.
In a laboratory model system consisting of fly ash from municipal waste incinerator, CuCl2 x 2H2O, NaCl and activated carbon in N2 + 10% O2 atmosphere, the de novo synthetic reactions of formation of polychlorinated dibenzo-p-dioxins (PCDDs), dibenzofurans (PCDFs), and polychlorinated biphenyls (PCBs) were studied under laboratory conditions in the presence of sulfur dioxide, hydrogen peroxide, and sulfuric acid. It has been found that the formation of PCDD is suppressed by sulfur dioxide more efficiently than the formation of PCDF. A similar effect has also been observed in the presence of hydrogen peroxide. The formation of PCDF is strongly suppressed in the presence of sulfuric acid. On the basis of the experimental results and thermodynamic calculations, the following mechanisms are proposed and discussed: oxidative destruction of PCDD and PCDF oxygen rings, conversion of cupric chloride and possibly also cupric oxide into the non-reactive sulfate, and the Deacon oxychlorination processes catalyzed by cupric chloride.  相似文献   

12.
Small concentrations, approximately 2-10 parts per million (ppm), of injected sulfur trioxide (SO3) have improved particulate collection efficiencies of electrostatic precipitators burning lower-sulfur coal. However, the addition of extra SO3 not only incurs costs but also presents negative environmental effects. This work explored a method that could be applied to existing coal-fired power plants to convert the sulfur dioxide (SO2) already present in the flue gas to sufficient levels of SO3 for fly ash conditioning as an alternative to adding SO3 by burning elemental sulfur. During this research, a pre-mixed natural gas flame was used to promote the conversion of SO2 to SO3 in a drop-tube furnace with average non-flame, free stream gas temperatures of 450 and 1000 K. SO3 concentrations measured by wet chemistry and confirmed using elemental balances of other sulfur species measured by gas chromatography revealed that as much as 7% of SO2 was homogeneously transformed to SO3. The results also showed that at low temperatures, the rate at which SO3 is converted back to SO2 decreased, thus extending the time period during which SO3 concentrations would be sufficient for ash conditioning. An additional benefit of this technique is speculated to result from increased flue gas humidity.  相似文献   

13.
通过间歇曝气形成微氧环境让SRB和CSB实现共生,使含硫酸盐有机废水中硫酸根最终转化成单质硫达到脱硫目的.研究考察了曝气量对SRB还原和CSB氧化的影响,确定了合适的曝气强度和水力停留时间,使得单质硫占系统内总硫比值最大.实验结果显示,在进水COD/SO42-=2000/1500 mg/L、曝气开关时间为2 s/2 min、生化时间为10 h时,单质硫产率最大,为89.53%,SO42-浓度降至最低值72.7 mg/L,还原率达95.1%,此时脱硫效果较好.  相似文献   

14.
This paper analyzes the natural desulfurization process taking place in coal-fired units using Greek lignite. The dry scrubbing capability of Greek lignite appears to be extremely high under special conditions, which can make it possible for the units to operate within the legislative limits of sulfur dioxide (SO2) emissions. According to this study on several lignite-fired power stations in northern Greece, it was found that sulfur oxide emissions depend on coal rank, sulfur content, and calorific value. On the other hand, SO2 emission is inversely proportional to the parameter gammaCO2(max), which is equal to the maximum carbon dioxide (CO2) content by volume of dry flue gas under stoichiometric combustion. The desulfurization efficiency is positively correlated to the molar ratio of decomposed calcium carbonate to sulfur and negatively correlated to the free calcium oxide content of fly ash.  相似文献   

15.
本文论述了我国燃煤工业锅炉排放SO2对大气污染的状况及发展趋势,以及应用工业固硫型煤控制燃煤工业锅炉对大气的污染。燃煤工业锅炉燃烧工业固硫型煤时,可明显地降低SO2和烟尘的排放量,并节约煤炭。在当前及今后相当长的时期内,推广和发展工业固硫型煤,是防治燃煤工业锅炉大气SO2污染的一条投资少、见效快、简便易行的实用措施,其经济效益及环境效益相当可观。  相似文献   

16.
氧化镁烟气脱硫反应特性研究   总被引:7,自引:2,他引:5  
利用实验室规模的鼓泡式反应装置,对比了碳酸钙、氧化镁和氧化镁/硫酸镁脱硫剂的反应活性,证实脱硫液中高浓度硫酸镁的存在是保证镁法脱硫效率高于钙法的重要因素,并考察了硫酸镁浓度、脱硫剂(氧化镁)浓度、烟气量、SO2浓度和吸收液温度等因素对脱硫效率的影响。结果表明,脱硫反应可以根据pH分为2个不同阶段;反应过程中脱硫效率随着硫酸镁浓度的增加而显著升高;烟气量增加将会导致脱硫效率有所下降;入口SO2浓度升高,脱硫效率下降;氧化镁浓度、温度对脱硫效率影响不显著。结合实验现象进行推断,氧化镁脱硫的反应过程受SO2在气液两相界面的传质扩散和其水解产物在液相的扩散控制。  相似文献   

17.
Abstract

This paper analyzes the natural desulfurization process taking place in coal-fired units using Greek lignite. The dry scrubbing capability of Greek lignite appears to be extremely high under special conditions, which can make it possible for the units to operate within the legislative limits of sulfur dioxide (SO2) emissions. According to this study on several lignite-fired power stations in northern Greece, it was found that sulfur oxide emissions depend on coal rank, sulfur content, and calorific value. On the other hand, SO2 emission is inversely proportional to the parameter y CO2max, which is equal to the maximum carbon dioxide (CO2) content by vol ume of dry flue gas under stoichiometric combustion. The desulfurization efficiency is positively correlated to the molar ratio of decomposed calcium carbonate to sulfur and negatively correlated to the free calcium oxide content of fly ash.  相似文献   

18.
为了探讨碱式硫酸铝对二氧化硫的吸收效果,对所需试剂硫酸铝和碳酸钙的适宜比例(碱度),以及碱式硫酸铝能稳定存在的铝量范围等进行了研究,测定了不同铝量和碱度的碱式硫酸铝对二氧化硫的吸收量以及pH值,并分析每种吸收液的饱和吸收量,最后将其与乙二胺/磷酸溶液的吸收情况进行对比。结果表明,碱度为40%时,铝量要保持在70 g/L以下才能在加热时不产生沉淀,吸收过程pH由4.5左右一直下降到2.0左右保持稳定,饱和吸收时间控制在140~160 min为宜,较为理想的方案是铝量32 g/L,碱度35%。  相似文献   

19.
对净化废气中SO2的生物膜填料塔内的微生物进行了分离纯化并做鉴定,得到一株嗜酸性氧化硫硫杆菌(Acidithiobacillus thiooxidans IEL001)和一株分类地位非常接近链二孢属(Bispora sp.)的极端嗜酸真菌IEL002,生物膜填料塔内的极端酸性环境和有机营养的缺乏导致生物膜上的微生物种类较为单一,多样性程度不高。本研究还发现IEL002自身并不能氧化单质硫,但它能促进Acidithiobacillus thiooxidans IEL001对单质硫的氧化。  相似文献   

20.
Bottom ash is a waste material from coal-fired power plants, and it is known to contain elements that are potentially toxic at high concentration levels when disposed in landfills. This study investigates the use of bottom ash as a partial substitute sorbent for wet flue gas desulfurization (FGD) processes by focusing on its leaching kinetics in adipic acid. This was studied basing on the shrinking core model that was applied to the experimental data obtained by the authors presented at the International Conference on Industrial, Manufacturing, Automation and Mechanical Engineering, Johannesburg, South Africa, November 27–28, 2013) on dissolution of bottom ash. The leaching rate constant was obtained from different reaction variables, namely, temperature, pH, acid concentration, and solid-to-liquid ratio, that could affect the leaching process. The solid sample of bottom ash was characterized at different leaching periods using X-ray diffraction (XRD) and scanning electron microscopy (SEM). It was found that solid-to-liquid ratio had a significant effect on the leaching rate constant when compared with other variables. The leaching kinetics showed that diffusion through the product layer was the rate-controlling step during leaching, and the activation energy for the process was found to be 18.92 kJ/mol.

Implications:?The use of coal bottom ash waste as a sorbent substitute in wet flue gas desulfurization (FGD) has both economic and environmental advantages. This is because it is a waste from coal-fired thermal power plant and this study has proven that it can leach out a substantial amount of calcium ions for wet FGD process. This will abate anthropogenic pollution due to landfill disposal of bottom ash wastes and also reduce sulfur dioxide emissions.  相似文献   

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