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91.
辽河油田稠油泥砂综合处理工艺的研究* 总被引:5,自引:3,他引:2
稠油污泥作为含油污泥的典型代表,其成分极为复杂、处理难度极大,由于目前国内外尚无成熟工艺可完全实现其"减量化、资源化、无害化处理",给油田生产和环境保护带来了严重影响。文章分析了稠油污泥的组成及性质,根据稠油污泥来源不同实施分类预处理,利用热风干化技术将其减量,经热解气化焚烧和热能利用,为实现含油污泥无害化处理进行了有益探索。 相似文献
92.
Effects of planned expansion of waste incineration in the Swedish district heating systems 总被引:1,自引:0,他引:1
Recent targets for reduced amounts of waste to landfills in Sweden will result in a large increase in waste incineration with recovery of energy, used primarily for district heating. The aim of this study is to investigate what changes in the usage of other fuels and technologies for district heat production would be caused by this increase. A questionnaire was sent out to the largest district heating companies, and simulations in an energy systems model were carried out. The analysis shows that increased waste incineration reduces the demand for other fuels, especially biomass, for district heat production. The effects include reductions in operating hours as well as the avoidance or postponement of investments in new plants for district heat production. Increased waste incineration will also lead to a greater use of district heating in Sweden. 相似文献
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94.
城市垃圾焚烧中PVC环境影响研究 总被引:1,自引:0,他引:1
在城市生活垃圾中,大约有一半的氯来自PVC废物。在垃圾焚烧过程中,PVC含量的增加可导致HCl产生量的增加,并有可能成为二噁Ying生成的氯源。PVC中铅含量最高,但对生活垃圾相对贡献量不大。PVC对生活垃圾的镉相对贡献量最大,而且在含PVC垃圾焚烧过程中烟气中镉的浓度也有明显增加。此外,PVC有使重金属从底灰向飞灰转移的趋势,这对于后续的底灰处置是有利的。在分析PVC对城市垃圾焚烧过程影响的基础上,本文最后提出了结论和建议。 相似文献
95.
以城市垃圾焚烧后的残渣为研究对象 ,着重地介绍城市垃圾焚烧炉中灰渣的形成、结构、组成等基本性质 ,同时借鉴燃煤技术初步探讨了城市垃圾焚烧过程中结渣的形成。对垃圾焚烧炉的正常运行提供科学的保证 ,对残渣的管理及综合利用有一定的意义 相似文献
96.
针对城市生活垃圾焚烧(MSWI)过程中二(口恶)英类的生成机制以及焚烧飞灰的组成,研究了MSWI飞灰中常见的钙化合物(CaO,Ca(OH)2,CaCl2,CaSO4及Ca(NO3)2)对前生体五氯酚(PCP)及六氯苯(HCB)生成二(口恶)英类的阻滞作用.结果表明,280℃下加热2 h,Ca(NO3)2,Ca(OH)2和CaO对PCP生成二(口恶)英类的总阻滞效率分别为93.7%,80.4%和98.9%,而CaCl2和CaSO4几乎没有效果.CaO对PCP和HCB混合物生成二(口恶)英类物质同样具有良好的阻滞效果.另外,探讨了上述钙化合物对PCP及HCB生成二(口恶)英类的阻滞作用机理. 相似文献
97.
98.
Bures M Pekárek V Karban J Fiserová E 《Environmental science and pollution research international》2003,10(2):121-125
BACKGROUND, AIMS AND SCOPE: In the first part of this paper the main principles which control the dehalogenation of polychlorinated aromatic compounds on municipal waste incineration fly ash (MWI-FA) have been discussed and the model fly ash of similar dehalogenation activity has been proposed. Even if both systems show comparable dehalogenation properties, the main question concerning the postulated identical reaction mechanism in both cases is left unanswered. The other very important point is to what extent is this dechlorination mechanism thermodynamically controlled. The same problem is often discussed in the literature also for the de novo synthetic reactions. From the data it is clear that metallic copper plays a decisive role in the mechanism of the dehalogenation reaction. Although the results reported in the first part strongly support the idea that copper acts in this dechlorination as the reaction component, in contrast to its generally accepted catalytic behaviour, we believed that additional support for this conclusion can be obtained with the help of a thermodynamic interpretation of the mechanism of the reaction. RESULTS AND DISCUSSION: The pathways of hexachlorobenzene dechlorination on MWI-FA and model fly ash were studied in a closed system at 260-300 degrees C under nitrogen atmosphere. These pathways were the same for both systems, with the following prevailing sequences: hexachlorobenzene --> pentachlorobenzene --> 1,2,3,5-tetrachlorobenzene --> 1,3,5-trichlorobenzene --> 1,3-dichlorobenzene. Thermodynamic calculations were carried out by using the method of minimization total Gibbs energy of the whole system. In the calculations, the following reaction components were taken into account: all gaseous chlorinated benzenes, benzene, hydrogen chloride, a gaseous trimer Cu3Cl3, and also Cu2O and CuCl2 as solid components. The effect of the reaction temperature and the amount of copper and water vapour were considered as well. The effect of reaction temperature was determined from the data calculated for the 500 to 750 K temperature region. The effect of the initial composition was determined for the molar amounts of copper = 0.01-3 moles and water vapour = 0.2 to 3 moles per mole of chlorobenzene isomer CONCLUSIONS: The results of hexachlorobenzene dechlorination by MWI-FA and model fly ash under comparable reaction conditions allow us to conclude that both dechlorinations proceed via the same dechlorination pathways, which can be taken as an evidence of the identical dehalogenation mechanism for both systems. The relative percentual distribution of the dehalogenated products depends on the temperature, but not on the initial amount of water vapour or copper metal. On the other hand, the initial amount of copper substantially affects the conversion of the dehalogenation as well as the molar ratio of Cu3Cl3 to HCl in the equilibrium mixture. Comparison of the experimental with thermodynamic results supports the idea that dehalogenation reactions are thermodynamically controlled. RECOMMENDATIONS AND OUTLOOK: Thermodynamic analysis of the dehalogenation reactions may prove useful for a wide range of pollutants. The calculations concerning polychlorinated biphenyls and phenols are under study. 相似文献
99.
100.
对流化床垃圾焚烧炉的工艺改进进行了分析 ,在焚烧炉内更有利于脱除酸性气体 ,当垃圾热值达 4 5 0 0kJ/kg时 ,部分吹入氧气可使燃烧温度达 1 30 0℃以上。用空心球代替流动砂可以取消流动砂的循环环节 相似文献