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101.
本文在数字化地下流体化学组分的观测中,认为热水井的脱气和脱气后的气体干燥是两个关键环节。我们在怀4井的气汞观测中,经过多次试验改进较好地解决了这两个环节。2004年以来,观测资料稳定,并清晰地记录到了固体潮形态。  相似文献   
102.
在采用分光光度法对氰化物的测定中,有些问题尚无明确的记载和经验.例如:显色液的有效时间;样品显色后最佳测定时间;样品馏出液可放置时间.本文在大量实验的基础上针对上述问题进行了探讨分析.此外又论述了方法的某些进展.这些内容对于氰化物的分析测定具有一定的实用价值.  相似文献   
103.
液膜分离技术及其在环境分析中的应用   总被引:1,自引:0,他引:1  
靳茂霞 《环境科技》1999,12(4):35-37
对液膜分离技术的作用、特点及其类型、组成与应用展开讨论,证明该技术具有广阔的应用前景。  相似文献   
104.
载体催化剂在许多有机反应中已证明可作为对环境有利的催化剂而取代传统催化剂(一般有腐蚀性,毒性或极难分解和重整并产生大量废物)。综述了近年来固体酸催化、固体碱催化剂和其它载体催化剂的特性及液相有机化学反应中的应用成果,催化机理及发展趋势。  相似文献   
105.
土壤石油污染物生物通风修复的研究进展   总被引:3,自引:0,他引:3  
隋红  茹旭  黄国强  李鑫钢 《生态环境》2003,12(2):216-219
生物通风是一种去污效果好、操作费用低的土壤原位修复技术。文章概述了生物通风系统的结构、设计目的、适用范围和优缺点,详细论述了生物通风的国内外研究现状,包括现场应用、影响因素和强化技术及理论研究,并展望了生物通风在我国的应用前景。  相似文献   
106.
Fracturing, either pneumatic or hydraulic, is a method to improve the performance of soil vapor extraction (SVE) in relatively low permeability soils (< 10(-5) cm/s). A two-dimensional model is presented to simulate trichloroethylene (TCE) soil vapor extraction modified by fracturing. Flow and transport is modeled using mobile macropore and micropore networks, which also have been identified in the literature as dual porosity, dual permeability, or heterogeneous flow models. In this model, fluids can flow in both the macropore and micropore networks. This represents a more general model compared to immobile micropore, mobile macropore models presented thus far in the literature for vapor flow and transport in two dimensions. The model considers pressure- and concentration-driven exchange between the macropore and micropore networks, concentration-driven exchange between the gas and sorbed phases within each network, and equilibrium exchange between the gas and water and a sorbed phase within each network. The parameters employed in an example simulation are based on field measurements made at a fractured site. Considered in the simulations were the influence of the volume percentage of fractures, the length of fractures, the relative location of the water table, and the influence of pulsed pumping. For these simulations, internetwork concentration-driven exchange most significantly affected mass removal. The volume percentage of fractures more significantly influence flow and mass removal than the length of fractures. The depth of the water table below the contamination plume only significantly influenced flow and mass removal when the water table was within 60 cm of the bottom of the contaminated soil in the vadose zone for the parameters considered in this study. Pulsed pumping was not found to increase the amount of mass removed in this study.  相似文献   
107.
活性炭吸附回收高含量油气的研究   总被引:18,自引:2,他引:18  
利用3种活性炭吸附分离汽油蒸汽和空气的混合气,研究了其吸附回收油气的动力学、热力学性能.活性炭ACl、AC3在20℃时的吸附容量分别为0.295 g/g、0.189 g/g,30 ℃时为0.284 g/g、0.165 g/g.活性炭吸附高含量油气时,吸附热高,如吸附油气摩尔分数为0.3 mol/mol时,吸附床温升达50~60 ℃.活性炭导热系数为0.15~0.20 W/m·℃,吸附过程可视为绝热吸附.建立了活性炭吸附油气热效应估算式,可用来评价活性炭吸附容量、进料油气摩尔分数、油气回收率与活性炭温升的关系.活性炭解吸宜先采取真空解吸,在解吸后期适当加入微量微热空气吹扫而深度脱附.解吸操作压力应低于1 kPa,解吸时间可控制在60 min内,热空气温度宜控制在50℃以下.油气吸附分离方法将主要用作其他分离方法的深度处理,以确保油气回收设备尾气达标排放.  相似文献   
108.
Analysis of polychlorinated dibenzo-p-dioxins (PCDD) and polychlorinated dibenzofurans (PCDF) has been performed using gas chromatography mass spectrometry (GC-MS). Analysis of the most toxic isomers, in particular, 2,3,7,8-substituted PCDD/PCDF in the presence of other isomers requires a special isomer specific capillary column or high performance liquid chromatography (HPLC) fractionation prior to GC-MS analysis. Commercially available long (>50 m) polar columns can separate 2,3,7,8-TCDD from other tetra isomers. However, those columns are not satisfactory for the analyses of total PCDD/PCDF in the environmental samples. Gas chromatography -high resolution mass spectrometry (GC-HRMS) and GC-MS/MS techniques are not helpful in the analysis of 2,3,7,8-TCDD unless it is separated from the other tetra isomers. The analysis of 2,3,7,8-TCDD and total PCDD and PCDF in a single GC-MS run can ease the laborious techniques presently used. In this study we have developed a new stationary phase for the GC capillary column. The capillary column developed using this new stationary phase showed unsurpassed selectivity for the separation of 2,3,7,8-TCDD from other tetra isomers. There are several advantages of the newly developed GC capillary column.  相似文献   
109.
The potential hazard of chemicals on aquatic communities are generally evaluated by standardised single-species bioassays. Safety assessment is based on results gained from organisms adapted to lentic systems and biological interactions in ecosystems are neglected. While lotic communities are often at first in contact with chemicals, it is astonishing that microcosms with lentic communities are mainly used as a bridge between laboratory bioassays and outdoor aquatic systems. Hence, we established five artificial indoor streams to simulate abiotic factors of small rivers. The closed-circuit system was filled with nutrients added to tap water. Washed pebbles were used as sediment. The dynamics of a simple biocoenoses consisting of aufwuchs, Lumbriculus variegatus Asellus aquaticus and Gammarus fossarum was investigated. The dynamic of aufwuchs and periphyton was determined as dry weight and chlorophyll-a, respectively and qualitatively by pigment pattern. The abundance of different developmental stages of L. variegatus was determined at the end of the experiment as well as the population dynamics of G. fossarum and A. aquaticus. Survival rates of gammarids and juveniles per female were investigated and data were used for modelling the population dynamics. The experiment was carried out to investigate the performance of the established artificial streams and the developed approaches to investigate effects of chemicals on a basic lotic community. The prime reason to establish this approach was to close a gap between complex artificial stream systems and laboratory single species tests to assess the impact of chemicals on the aquatic environment.  相似文献   
110.
Soil vapor extraction (SVE) systems are intended to cause substantial volumes of air to flow through the subsurface with the purpose of removing volatile contaminants. The effectiveness of SVE can be influenced by any effect that changes the specific gas capacity (discharge as a function of vacuum) of a well. Skins of low permeability material enveloping a well bore are widely recognized to affect the performance of wells used to recover water, natural gas, or petroleum, and skin can also significantly diminish the performance of an SVE well. Skins a few mm thick consisting of material whose gas phase permeability is 0.01 of the formation can reduce the specific gas capacity of an SVE well by factors of 2 to 10 or more. Hydraulic fractures created in the vicinities of shallow wells commonly resemble sand-filled layers shaped like flat-lying disks or gently dipping saucers. The contrast between the gas-phase permeability of the sand in the fracture and that of the formation is particularly important, with significant effects requiring the ratio to be greater than approximately 50. Shallow hydraulic fractures filled with several tenths of m3 of sand in formations that are several orders of magnitude less permeable than that of the enveloping formation should increase specific gas capacity by factors of 10 or more. Field tests of the effects of hydraulic fractures on the performance of SVE were conducted by creating four wells intersecting fractures and a suite of control wells created using conventional methods in silty saprolite. Specific gas capacities ranged over more than an order of magnitude for 10 wells completed within a small area (2 m2) and at the same depth. Specific capacities correlate to the drilling method that was used to create the bore for the well: lowest values occurred in wells drilled with a machine auger, slightly better results were obtained using a Shelby tube, and the best results were obtained from conventional wells bored with a hand auger. Skin factors determined for wells created with a machine auger could be explained by a layer 1 cm thick that has 0.007 times the permeability of the enveloping material, which could readily have been created during the drilling procedure. Specific capacities of wells intersecting hydraulic fractures were 5 to 100 times more than those of conventional wells. The large difference in performance appears to be due in part to the beneficial effects of the fracture, and in part to the detrimental effects of well skin.  相似文献   
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