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971.
气体绝缘金属封闭开关(gas insulated switchgear, GIS)设备内部自由颗粒缺陷对GIS设备安全稳定运行构成较大危害,通过对GIS自由颗粒特性进行分析,提出采用超声波局部放电检测技术检测GIS中自由颗粒缺陷的方法。应用结果表明:超声波局部放电检测能有效检测出GIS设备内部自由颗粒缺陷,提前发现潜伏性缺陷,保障设备安全运行。 相似文献
972.
973.
选取太湖富营养化相对较严重的梅梁湾北部(ML)与西五里湖(WL)为研究对象,对沉积物及其间隙水中的无机硫形态进行了分析.结果表明,WL 和ML 间隙水中Fe2+的平均含量分别为72.1~162.7µmol/L 和63.0~182.7µmol/L,是∑S2-的18 倍和6 倍,分析认为,太湖沉积物中的还原环境是以Fe3+为主导而并非SO42-.沉积物中酸性可挥发性硫化物(AVS)的含量为1.0~11.7µmol/g,在未受污染湖泊范围之内.黄铁矿态硫(Pyrite-S)/AVS>3,表明AVS 能够高效地转化为黄铁矿,也说明黄铁矿是SO42-还原的主要产物.沉积物中黄铁矿化程度(DOP)<10%、硫化程度(DOS)<14%,说明黄铁矿的形成主要受SO42-的控制. 相似文献
974.
电法填埋场渗漏检测供电电极接地电阻研究 总被引:4,自引:1,他引:3
采用电法进行垃圾填埋场渗漏检测时,供电电极的接地电阻对回路电流起决定性作用.分别推导了半球状供电电极和圆柱状供电电极的接地电阻表达式,并对影响接地电阻大小的主要因素进行了分析和试验验证.结果表明:①电极的接地电阻主要由电极附近的土壤电阻决定;②随着电极埋深的增加,电极的接地电阻减少,但当埋深超过40 cm时,随着电极埋深的增加,电极接地电阻的减小趋势变缓;③随着电极直径的增加,电极的接地电阻减少.实际应用中,电极的埋深和直径应尽可能大一些,但电极直径较大时,电极质量也会显著增加,给操作带来不便.因此,可将电极直径定为10~15 cm.此外,由于土壤一般为颗粒状,这使得土壤和电极不能完全接触,为降低接地电阻,可对电极附近的土壤进行浇水. 相似文献
975.
电液压脉冲放电等离子体降解TNT废水的研究 总被引:2,自引:1,他引:1
用电液压脉冲放电等离子体实验平台和大容量反应器对TNT废水进行处理,在放电电压为24-48kV,废水体积为7-12L,TNT初始浓度为41.67-90mg·l-1,电极为尖-尖式,间距为3-8mm的条件下,增加放电次数、升高放电电压和增加电极绝缘层长度都能提高TNT降解率,而提高溶液的电导率会降低TNT降解率.在一定的放电电压下,电极间距有一个最佳值;投加铁屑可明显提高TNT降解率,投加铁屑时,G值最高可达1.34×10-1 molecules·h-1·eV-1. 相似文献
976.
977.
978.
在对转炉提钒浊环水质状况进行分析化验的基础上提出了水质调整措施,实施后有效地稳定了提钒浊环水质,改善了因提钒浊环酸性水质导致的缺陷,较好地满足了生产需要。 相似文献
979.
Combustion and inorganic bromine emission of waste printed circuit boards in a high temperature furnace 总被引:1,自引:0,他引:1
High temperature combustion experiments of waste printed circuit boards (PCBs) were conducted using a lab-scale system featuring a continuously-fed drop tube furnace. Combustion efficiency and the occurrence of inorganic bromine (HBr and Br2) were systematically studied by monitoring the main combustion products continuously. The influence of furnace temperature (T) was studied from 800 to 1400 °C, the excess air factor (EAF) was varied from 1.2 to 1.9 and the residence time in the high temperature zone (RTHT) was set at 0.25, 0.5, or 0.75 s.Combustion efficiency depends on temperature, EAF and RTHT; temperature has the most significant effect. Conversion of organic bromine from flame retardants into HBr and Br2 depends on temperature and EAF. Temperature has crucial influence over the ratio of HBr to Br2, whereas oxygen partial pressure plays a minor role. The two forms of inorganic bromine seem substantially to reach thermodynamic equilibrium within 0.25 s. High temperature is required to improve the combustion performance: at 1200 °C or higher, an EAF of 1.3 or more, and a RTHT exceeding 0.75 s, combustion is quite complete, the CO concentration in flue gas and remained carbon in ash are sufficiently low, and organobrominated compounds are successfully decomposed (more than 99.9%).According to these results, incineration of waste PCBs without preliminary separation and without additives would perform very well under certain conditions; the potential precursors for brominated dioxins formation could be destroyed efficiently. Increasing temperature could decrease the volume percentage ratio of Br2/HBr in flue gas greatly. 相似文献
980.
Hydrothermal carbonization (HTC) is a novel thermal conversion process that may be a viable means for managing solid waste streams while minimizing greenhouse gas production and producing residual material with intrinsic value. HTC is a wet, relatively low temperature (180-350 °C) thermal conversion process that has been shown to convert biomass to a carbonaceous residue referred to as hydrochar. Results from batch experiments indicate HTC of representative waste materials is feasible, and results in the majority of carbon (45-75% of the initially present carbon) remaining within the hydrochar. Gas production during the batch experiments suggests that longer reaction periods may be desirable to maximize the production of energy-favorable products. If using the hydrochar for applications in which the carbon will remain stored, results suggest that the gaseous products from HTC result in fewer g CO(2)-equivalent emissions than the gases associated with landfilling, composting, and incineration. When considering the use of hydrochar as a solid fuel, more energy can be derived from the hydrochar than from the gases resulting from waste degradation during landfilling and anaerobic digestion, and from incineration of food waste. Carbon emissions resulting from the use of the hydrochar as a fuel source are smaller than those associated with incineration, suggesting HTC may serve as an environmentally beneficial alternative to incineration. The type and extent of environmental benefits derived from HTC will be dependent on hydrochar use/the purpose for HTC (e.g., energy generation or carbon storage). 相似文献