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231.
钢铁行业是我国二噁英的第一大排放源,但对不同钢铁生产过程二英的生成排放认识有所欠缺.本文系统探究了钢铁行业不同物料的二噁英生成能力和同系物分布特征.结果表明,烧结飞灰的二英生成能力最强,而烧结生料生成二噁英能力最弱.3种污泥(连铸、热轧、冷轧)和烧结生料的二英生成途径相似,4种飞灰(电炉、转炉、高炉一次、高炉二次)之间也有相似的二英生成途径,而烧结飞灰则与其他物料均不同.所有物料中,有毒2,3,7,8-PCDD同系物之间存在极强的相关性,且氯酚合成二噁英路径也被发现存在于钢铁生产过程中.  相似文献   
232.
编队内碰撞是编队飞行最大的安全威胁。为解决编队飞行灵活性与编队飞行安全的矛盾,建立了编队内各机碰撞风险评价模型指标体系,使用模糊互补判断矩阵确定了各指标的碰撞权重,实现了编队内各机碰撞的风险评估。以空军航空兵某部一架机型G与一架机型H混合双机编队为例进行了实证研究,结果表明,该模型简便易操作,可提高编队飞行训练效率。  相似文献   
233.
5.12汶川地震后理县甘堡乡磨子沟泥石流特征分析   总被引:1,自引:0,他引:1  
磨子沟泥石流位于四川省理县甘堡乡,历史上泥石流活动明显,沟口317国道和村庄都曾遭受其破坏。5.12汶川地震后,沟内出现大量松散固体物质,为泥石流的暴发提供了充足的物源。本文通过野外实地调查,对泥石流的形成条件和动力学特征进行分析。  相似文献   
234.
2007年7月在暴雨激发下,重庆境内多处暴发泥石流,本次泥石流的集中暴发是地形地貌、物源和暴雨等多因子耦合异变的必然结果,打破115年记录的降雨是泥石流暴发的客观因素,但人类工程活动,如山区城镇建设、采矿、交通建设等造成的弃渣、毁林,是引发泥石流灾害的重要原因。对本次泥石流形成条件、形成机理进行了分析,并综合历史泥石流事例、山洪、水土流失分区、地形地貌、物源、气候等因素,对重庆境内泥石流发育趋势进行了初步分区;并基于成因分析、机理研究和泥石流分区,提出了重庆境内泥石流灾害有关防治对策建议。  相似文献   
235.
通过近一年的野外地质调查、室内资料整理、GIS综合信息模型分析等方法,总结归纳出鲁甸县各类地质灾害的分布特征,并分析阐述了其形成条件和机理,发现地质构造对灾害的分布和形成及易发性有重大影响。  相似文献   
236.
好氧锥形流化床生物膜反应器启动与生物膜形成特征研究   总被引:2,自引:1,他引:1  
对好氧锥形流化床膜生物反应器(A-TFBBR)的启动特征、生物膜行为、特征和结构进行了详细的探讨,并与相近启动条件下的传统柱状流化床生物膜反应器(A-CFBBR)的启动行为进行比较.结果表明,自然培养生物种源的方法与传统的以活性污泥做种源的方法相比节省了生物驯化和淘汰的时间,在短时间内就完成了生物反应器的启动(柱状床11 d,锥形床16 d),而一般以活性污泥为种源则大都需要100~300 d的启动时间.另外,采用这种方法在A-TFBBR反应器和A-CFBBR反应器中获得的生物膜厚度分别仅为(32±1) μm 和(24±2) μm,低于大部分报道的生物膜厚度.2个生物反应器都表现出理想的COD去除能力,其中A-TFBBR反应器对COD的去除率高达95%以上,比A-CFBBR对COD的去除率平均高出15%.  相似文献   
237.
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   
238.
Experimental studies of boilover were conducted in small scale rig at Universiti Teknologi PETRONAS (UTP), Malaysia and Loughborough University, United Kingdom. The study at UTP was aimed to demonstrate the ability of conducting tests at a smaller scale to simulate the boilover phenomenon. At Loughborough University, a novel laboratory scale rig was designed and built in order to obtain visual records of fuels' behaviour in a pool fire. The ultimate objective of these studies is to develop a greater understanding of boilover pertaining to fires involving the contents of storage tanks. Fuel mixtures containing light and heavy components were burnt as to study the feasibility of reproducing hot zone formation and boilover in a smaller scale and a safe environment. Boilover occurred after certain period of burning. It is found that thickness of the hot zone changed with time. It is also found that the time needed to start boilover increased when fuel thickness increased. The visualization of the fuel behaviour during the experiments was obtained to better understand the formation and growth of hot zone, the boiling of water layer and hence the boilover occurrence. Based on the data analysis and the photographs recorded from the experiments, the laboratory scale experimental rig could be used to simulate the hot zone formation mechanism and the boilover event safely and successfully. Such information are important for the understanding towards boilover phenomenon.  相似文献   
239.
Carbon source is a critical constraint on nutrient removal in domestic wastewater treatment. However, the functions of particulate organic matter (POM) and some organics with high molecular weight (HMW) are overlooked in the conventional process, as they cannot be directly assimilated into cells during microbial metabolism. This further aggravates the problem of carbon source shortage and thus affects the effluent quality. Therefore, to better characterize organic matter (OM) based MW distribution, microfiltration/ultrafiltration/nanofiltration (MF/UF/NF) membranes were used in parallel to fractionate OM, which obtained seven fractions. Hydrolysis acidification (HA) was adopted to manipulate the MW distribution of dissolved organic matter (DOM) and further explore the correlation between molecular size and biodegradability. Results showed that HA pretreatment of wastewater not only promoted transformation from POM to DOM, but also boosted biodegradability. After 8 hr of HA, the concentration of dissolved organic carbon (DOC) increased by 65%, from the initial value of 20.25 to 33.48 mg/L, and the biodegradability index (BOD5 (biochemical oxygen demand)/SCOD (soluble chemical oxygen demand)) increased from 0.52 to 0.74. Using MW distribution analysis and composition optimization, a new understanding on the characteristics of organics in wastewater was obtained, which is of importance to solving low C/N wastewater treatment in engineering practice.  相似文献   
240.
坡面泥石流是山地分布最广,出现频率最高的灾害现象。基于野外现场调查及室内实验分析,阐述了老里沟坡面型泥石流的基本特征及形成机制,并结合泥石流动力特征参数进行了危险度评价。研究结果表明:滑坡体上坡面侵蚀沟道发育,为坡面型泥石流的形成提供了强有力的条件;降雨是诱发老里沟坡面流的主要因素;老里沟泥石流类型为高中频、小规模、粘性、暴雨型泥石流,属于中度危险泥石流沟。  相似文献   
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