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131.
Recent studies have shown that dechlorinating bacteria can accelerate the dissolution rate of dense, nonaqueous phase liquids (DNAPLs) containing tetrachloroethene (PCE). We present an advection-dispersion-reaction model for a two-dimensional domain, with groundwater flowing over a pool of free-product PCE. PCE is converted to cis-1,2-dichloroethene (cDCE) and toxicity due to PCE or cDCE is neglected. We adopt previously published correlations relating biomass concentrations and hydraulic conductivity, accounting for biofilm growth and plug-like growth. The system of coupled equations is solved numerically. The high biotransformation rate of PCE increases the concentration gradient of PCE at the water-DNAPL interface, enhancing dissolution. The higher the electron donor (ED) concentration, the larger the dissolution enhancement. Based on the values of maximum specific rate we used, when the electron donor is unlimited, the active biomass accumulates adjacent to the water-NAPL interface and microbial reactions can significantly enhance the pool dissolution. The resulting steady-state dissolution rate can be approximated by a half-order solution when zero-order kinetics are suitable for representing the microbial reaction. However, bioclogging may significantly reduce local hydraulic conductivity; thus, it decreases the flow near the water-DNAPL interface, decreasing dissolution. When the ED is the limiting factor, active biomass accumulates away from the interface. This creates a no-flow zone between the active biomass and the interface. The enlargement of the no-flow zone, due to the donor limitation, diminishes the concentration gradient and the flushing around the water-DNAPL interface. Such adverse impacts may significantly decrease the enhancement predicted by models that do not consider the effects of bioclogging.  相似文献   
132.
The removal system for the absorption of CO2 with amines and NH3 is an advanced air pollution control device to reduce greenhouse gas emissions. Absorption of CO2 by amines and NH3 solutions was performed in this study to derive the reaction kinetics. The absorption of CO2 as encountered in flue gases into aqueous solutions of monoethanolamine (MEA), diethanolamine (DEA), and NH3 was carried out using a stirred vessel with a plane gas-liquid interface at 50 degrees C. Various operating parameters were tested to determine the effect of these variables on the absorption kinetics of the reactants in both gas and liquid phases and the effect of competitions between various reactants on the mass-transfer rate. The observed absorption rate increases with increasing gas-liquid concentration, solvent concentration, temperature, and gas flow rate, but changes with the O2 concentration and pH value. The absorption efficiency of MEA is better than that of NH3 and DEA, but the absorption capacity of NH3 is the best. The active energies of the MEA and NH3 with CO2 are 33.19 and 40.09 kJ/mol, respectively.  相似文献   
133.
Organic contamination in the greenhouse soils from Beijing suburbs, China   总被引:1,自引:0,他引:1  
Selected persistent organic pollutants including HCHs, DDTs and PAHs together with PAEs were determined in the greenhouse soils from Beijing suburbs. The total concentrations were 11.64-29.80 ng g(-1) for HCHs, 18.04-101.33 ng g(-1) for DDTs, 1.34-3.15 microg g(-1) for PAEs and 1.92-7.84 microg g(-1) for PAHs, respectively. Predominance of beta-HCH in all samples was obviously observed, suggesting a lack of new HCHs sources. High concentrations of DDE and DDD in comparison to their parents in the samples indicated that most of the DDT had been transformed into its metabolites. The contamination of PAHs was relatively serious and the most abundant compounds were 4-, 5- and 6-ring unsubstituted PAHs. The profiles reflect the important effect of traffic on the PAHs remaining in greenhouse soils. Three phthalate esters (DIBP, DnBP and DEHP) accounted for more than 97% of the phthalates studied. Analysis of n-alkanes was also performed in order to trace the natural or anthropogenic sources of hydrocarbons. Characterization and identification of these compounds in greenhouse soil may help in development of strategies to be used in monitoring organic pollutants in this region.  相似文献   
134.
A multi-channel continuous water toxicity monitoring system was, after confirming the systems' performance, implemented to samples of water discharged from power plants to detect and classify their toxicity using several recombinant bioluminescent bacteria. Each channel of the system is composed of a series of two mini-bioreactors to enable a continuous operation, i.e., without system interruption due to highly toxic samples. A different recombinant bacterial strain was present in each channel: DPD2540 (fabA::lux CDABE), DPD2794 (recA::luxCDABE), and TV1061 (grpE::luxCDABE), which are induced by cell membrane-, DNA-, and protein-damaging agents, respectively. GC2 (lac::luxCDABE) is a constitutive strain, whose bioluminescence is reduced by an increase in cellular toxicity. Phenol and mitomycin C (MMC) were used for evaluating the system's performance to detect toxic chemicals. These samples were injected into the second mini-bioreactor according to a step or bell-curve manner. The field samples used in this study were obtained from the water discharged from two different power plants in Korea – from a nuclear power plant and a thermo-electronic power plant, and were injected into the second mini-bioreactor to initiate the toxicity test. Each channel showed specific bioluminescent (BL) response profiles due to the toxic compounds present in the water samples. Comparing the BL signals between the standard toxic chemical samples and discharged water samples, the equivalent toxicity of the field water could be estimated. Finally, it was proved that this novel continuous toxicity monitoring system can be used as an alternative tool for the quick monitoring and control of water quality, as well as aid in the setting up of a new monitoring strategy to protect the source of tap water and in the prevention of polluted water discharge.  相似文献   
135.
介绍了煤炭地下气化技术的开发与应用,相比传统煤炭开采燃用技术,煤炭地下气化实现了煤炭清洁开采与利用,指出煤炭地下气化技术是环保型开采与利用技术,应用积极推广利用。  相似文献   
136.
含油污水乳化液微波分离实验研究   总被引:2,自引:0,他引:2  
针对油气田乳化含油污水难分离的特点,利用微波技术进行的实验室研究结果表明,微波辐照温度与其后的静置时间都是影响其破乳率的重要因素,其分离效果随微波辐照后温度的增高而加强,而且在相同温度下乳液破乳率随静置时间加长而迅速增高。研究结果证实,微波辐射技术具有时间短、能耗少、效率高等特点,且经过微波处理后的含油污水易于进行油品回收再利用,有良好的应用前景。  相似文献   
137.
厌氧UASB-混凝沉淀法处理高浓度屠宰废水   总被引:7,自引:1,他引:6  
应用UASB混凝沉淀法对高浓度屠宰废水的处理进行了试验研究。用UASB反应器处理屠宰废水,CODCr容积负荷可达6.8g(L·d),CODCr去除率达93%左右,并对UASB出水投加一定量的混凝剂PFS和助凝剂MZ,实验表明:系统出水达到《肉类加工工业水污染物排放标准》(GB1345792)二级标准。  相似文献   
138.
Environmental Science and Pollution Research - Among air pollutants, particulate matter (PM) has been identified as a major cause of environmental pollutants due to the advancement of industrial...  相似文献   
139.
采用室内培养方法,以氨氮和总磷以及植物生长量作为观测指标,分别研究了阴离子型表面活性剂LAS、阳离子型表面活性剂CTMAB和非离子型表面活性剂Tween-80对紫背浮萍吸收氮磷及植株生长的影响。结果表明,无表面活性剂影响时紫背浮萍在模拟富营养化水体中生长良好并表现出很强的氮磷去除能力;LAS和CTMAB浓度低于1 mg/L时,紫背浮萍对总磷的吸收比对氨氮的吸收更易受影响;当浓度达到10 mg/L时,LAS和CTMAB的存在使紫背浮萍明显受到损伤,氮磷吸收率出现负值,而非离子型表面活性剂毒性相对最小,对紫背浮萍吸收氮磷的影响明显低于阴离子型和阳离子型的表面活性剂。  相似文献   
140.
介绍和评价了国内外硫酸法制二氧化钛生产中废酸的浓缩技术,从工艺、设备及材质3方面分析了国内在二氧化钛废酸处理中存在的问题,指出最有效的解决措施是:以防为主,改善工艺条件;使硫完全参与反应,减少硫的损失和对环境的破坏;完善配套设施,提高设备质量;综合考虑废酸、新酸和钛铁矿的物料配比;选择耐腐蚀性较好的复合材料作为设备材质;最终使废酸少产生或无产生。  相似文献   
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