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101.
以垃圾衍生燃料(RDF)为研究对象,在600~1100℃条件下灼烧RDF灰渣,对灰渣中的主要元素变化情况进行分析.研究结果表明,RDF灰渣中主要元素包括硅、氧、铝、钙、镁、钾、钠、碳、硫、氯、磷、钛、锌等;灰渣中的可溶盐倾向富集在≤0.3 mm的灰渣颗粒上;在600~1000℃范围内,其总量处于动态平衡,在1100℃则大幅度减少.随着温度的上升,碳转化为二氧化碳气体;硫元素转化为硫酸盐,随后部分再转化为二氧化硫气体;氯元素转化为以氯化钠和氯化钾为主的氯化盐,在达到一定温度时发生相变转化为气体.硅、氧、铝、钙、镁、磷等元素留存于废渣中,随着温度提高,发生复合化学反应,相互键接形成复合硅酸盐物质.  相似文献   
102.
由液体和气体泄漏引发的喷射火灾事故屡见不鲜,而现有的喷射火模型却有诸多缺陷。将喷射火形状近似为圆锥,鉴于液体和气体的泄漏速度随压强和温度均有变化、点源离地面会有一定高度、风速对火焰倾角也有影响、圆锥喷射中心线上每个点源对目标的热辐射均不同等实际情况,新建液体和气体扩展半径的计算方法,引入风速对火焰高度和火焰偏角的作用,比较AGA法和Thornton模型,发现AGA法更加符合实际,再利用微积分原理建立三维点源喷射火模型,展示火焰形状对目标的影响,从而得出热辐射的最终危险性。最后以LPG和CNG储罐喷射火事故为例进行对比验证,首次模拟出喷射火的形状,更清晰准确地展示了目标入射热辐射通量随目标点位置的变化和危险范围,可为火焰阵面处的消防安全决策提供参考。  相似文献   
103.
螺旋型垂直筛板布气的喷射鼓泡脱硫除尘塔的研制和性能   总被引:1,自引:0,他引:1  
研制了一种中试规模的螺旋型垂直筛板布气的喷射鼓泡脱硫除尘装置,具有螺旋型布气、环流布气、气动搅拌等特点.装置中特有的螺旋型气室是由两块按阿基米德螺线设计的垂直筛板围成,有结构简单紧凑、开孔面积大、不容易堵塞、气速稳定等优点.对中试规模装置进行了压降和湿法脱硫除尘实验.结果表明:空塔与喷射鼓泡运行时装置各部分压降随气量增加而增加,喷射鼓泡运行中控制"临界液位差"约170mm,当气量为1856m.3h-1时,塔总压降为3.37kPa;脱硫效率随鼓泡层高度和气动搅拌器旋转速度的增加而升高;当石灰石浆液浓度上升时,pH升高,有效脱硫时间延长;pH是控制装置脱硫效率的关键,pH=5.35时脱硫效率可达70%,pH为6~7时脱硫效率保持在80%以上;当烟气中含尘浓度大于304mg.m-3时(粉尘粒径小于50μm),除尘效率可达91%以上;该装置脱硫、除尘效率高,塔体高度较低,结构紧凑,具有很好的应用前景.  相似文献   
104.
A/O膜生物反应器处理生活污水的试验研究   总被引:1,自引:0,他引:1  
根据传统脱氮除磷工艺——好氧硝化缺氧反硝化原理,设计并制作了一种分置式A/O膜生物反应器,并且对其曝气方式进行合理改进,利用射流曝气强大的复氧能力和混合能力,使好氧区的泥水能更加均匀地混合以及能提供充足的氧气。并就其对生活污水中污染物的去除效果及其机制进行了试验研究,结果表明,该改进后的膜生物反应器在连续运行60天内,系统不排泥,水力停留时间为16h时,对COD、总氮、氨氮有良好的去除效果,平均去除率分别达到94%,70.7%,98.4%,出水CODCr、总氮、氨氮浓度分别在50mg/L,15mg/L,1mg/L以下。  相似文献   
105.
文章计算了在不同焦炭加入量及不同焦炭和煤的配比条件下处理城市生活垃圾时气化熔融炉的炉温。计算结果表明,用焚烧法处理重庆市的生活垃圾时,在常温鼓风条件下,要使垃圾灰渣完全熔融,焦炭配比至少应在42%以上;在一定的条件下,可以用煤部分或全部代替焦炭,同时配以高温鼓风,可使炉温达到并超过垃圾灰渣的熔融温度,从而使得垃圾灰渣熔融。  相似文献   
106.
从废水中回收沼气能及氢能与电能   总被引:1,自引:0,他引:1  
厌氧发酵制沼气、厌氧发酵制氢和微生物燃料电池技术是利用微生物在废水处理的同时回收能源的三种主要方式。文章结合相关研究现状,介绍了这三种技术的基本原理及其在废水处理领域的发展状况和展望,并对三种生物能源进行了比较。  相似文献   
107.
毕哲  胡勇有  孙健 《环境科学学报》2009,29(8):1635-1642
构建了生物阴极型微生物燃料电池(BCMFC),研究了以葡萄糖-偶氮染料(活性艳红X-3B)为共基质条件下,BCMFC产电性能及偶氮染料的降解特性.结果表明,电能的产生源于BCMFC对葡萄糖的降解,共代谢下活性艳红X-3B的(ABRX3B)的生物降解是主要的脱色机理.当葡萄糖初始浓度为500mg·L-1(以COD计),ABRX3B浓度低于300 mg·L-1时,功率密度维持50.7 mW·m-2,最终脱色率在94.4%以上,而ABRX3B浓度的进一步提高对BCMFC产电会产生抑制作用.阳极液的COD去除率和UV-Vis光谱表明,ABRX3B的降解过程中,有中间产物的积累.共基质条件下,BCMFC可成功实现同步电能输出和高效脱色.  相似文献   
108.
This paper examines the energy and carbon balance of two residential house alternatives; a typical wood frame home using more conventional materials (brick cladding, vinyl windows, asphalt shingles, and fibreglass insulation) and a similar wood frame house that also maximizes wood use throughout (cedar shingles and siding, wood windows, and cellulose insulation) in place of the more typical materials used – a wood-intensive house. Carbon emission and fossil fuel consumption balances were established for the two homes based on the cumulative total of three subsystems: (1) forest harvesting and regeneration; (2) cradle-to-gate product manufacturing, construction, and replacement effects over a 100-year service life; and (3) end-of-life effects – landfilling with methane capture and combustion or recovery of biomass for energy production.The net carbon balance of the wood-intensive house showed a complete offset of the manufacturing emissions by the credit given to the system for forest re-growth. Including landfill methane emissions, the wood-intensive life cycle yielded 20 tons of CO2e emissions compared to 72 tons for the typical house. The wood-intensive home's life cycle also consumed only 45% of the fossil fuels used in the typical house.Diverting wood materials from the landfill at the end of life improved the life cycle balances of both the typical and wood-intensive houses. The carbon balance of the wood-intensive house was 5.2 tons of CO2e permanently removed from the atmosphere (a net carbon sink) as compared to 63.4 of total CO2e emissions for the typical house. Substitution of wood fuel for natural gas and coal in electricity production led to a net energy balance of the wood-intensive house that was nearly neutral, 87.1 GJ energy use, 88% lower than the scenario in which the materials were landfilled.Allocating biomass generation and carbon sequestration in the forest on an economic basis as opposed to a mass basis significantly improves the life cycle balances of both houses. Employing an economic allocation method to the forest leads to 3–5 times greater carbon sequestration and fossil fuel substitution attributable to the house, which is doubled in forestry regimes that remove stumps and slash as fuel. Thus, wood use has the potential to create a significantly negative carbon footprint for a house up to the point of occupancy and even offset a portion of heating and cooling energy use and carbon emissions; the wood-intensive house is energy and carbon neutral for 34–68 years in Ottawa and has the potential to be a net carbon sink and energy producer in a more temperate climate like San Francisco.  相似文献   
109.
In the present study, response surface methodology (RSM) involving central composite design (CCD) was applied to optimize the reaction parameters of biodiesel production from yellow mustard (Sinapis alba L.) seed oil during the single-step transesterification process. A total of 30 experiments were designed and performed to determine under the effects of variables on the biodiesel yield such as methanol to oil molar ratio (2:1–10:1), catalyst concentration (0.2–1.0 wt.% NaOH), reaction temperature (50–70°C), and reaction time (30–90 min). The second order polynomial model was used to predict the biodiesel yield and coefficient of determination (R2) was found to be at 0.9818. The optimum biodiesel yield was calculated as 96.695% from the model with the following reaction conditions: 7.41:1 of methanol to oil molar ratio, 0.63 wt. % NaOH of catalyst concentration, 61.84°C of reaction temperature, and 62.12 min of reaction time. It is seen that the regression model results were in agreement with the experimental data. The results showed that RSM is a suitable statistical technique for optimizing the reaction parameters in the transesterification process in order to maximize the biodiesel yield.  相似文献   
110.
Liquid water management is still a critical issue in the improvement of proton exchange membrane fuel cell (PEMFC) performance. In this work, for the first time, the liquid water behavior and transport inside the cathode of a PEMFC with a stirred tank reactor (STR) design, rather than the conventional PEMFC flow channel design, are numerically studied. The dynamic contact angle (DCA) is applied to multiple wall boundaries in the numerical model through a user-defined-function (UDF) code, i.e., STR-DCA model. Another numerical model with the static contact angle (SCA) and same operating conditions, i.e., STR-SCA model, is also developed for comparison. The volume of fluid (VOF) method is employed in the simulation to track the gas-liquid interface. The results show that the liquid water distribution and transport are significantly different between these two models, indicating the remarkable effects of DCA on the simulation results. It is also verified the capability of STR-PEMFC to reduce the liquid water flooding, showing the potential of this channel-less type fuel cell in the further development.  相似文献   
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