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1.
超声空化降解水中有机污染物的研究进展(续) 总被引:3,自引:0,他引:3
(接 2 0 0 2年第 5期 )3 影响超声降解的因素3.1 超声场超声场主要是指超声频率和声能强度。3.1.1 超声频率超声频率效应的研究是超声降解有机物的一个重要内容。这方面的文献较多 ,但对频率效应的认识不太一致。Petrier和Francony[2 0 ] 认为 ,随着超声频率的增大 ,超声空化阈值明显增大 ,空化过程变得难以进行 ;当超声声强超过空化阈值时 ,不同频率的超声均能产生相同的效果。Witekowa等[4 5] 发现 ,超声频率对在水溶液中发生的氧化还原反应效果影响甚微。Cum等[4 6 ] 考察 2 0~ 10 0kHz范围内的超声频… 相似文献
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采用水力空化-Fenton氧化联合超声吸附处理煤气化废水,考察了单独Fenton氧化及单独水力空化工艺条件,并对Fenton氧化、水力空化和水力空化-Fenton氧化工艺处理过程进行了动力学初探。实验结果表明:在反应时间60 min、废水pH 3.0、Fe~(2+)加入量900 mg/L、H_2O_2加入量3 600 mg/L、空化压力0.4 MPa的条件下,水力空化-Fenton处理煤气化含酚废水的COD和苯酚去除率分别为93.05%和90.29%;进一步采用超声吸附处理后,出水COD和苯酚质量浓度分别为92.9 mg/L和4.5 mg/L,达到GB 8978—1996《污水综合排放标准》三级指标。 相似文献
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采用水力空化-O3氧化与超声吸附法联合处理煤气化废水。吸附剂以钙基膨润土为原料,经十六烷基三甲基溴化铵改性制得。通过单因素实验分别探讨了水力空化-O3氧化与超声吸附的适宜处理条件,并在该条件下对废水进行联合处理。实验结果表明:在O3通量194.4 mg/L、空化时间60 min、入口压力0.4 MPa、废水pH 10.00的优化条件下,水力空化-O3氧化对COD和苯酚的去除率分别达67.3%和57.5%;在此基础上进一步采用超声吸附法处理废水,在吸附剂投加量0.06 g/mL、超声时间60 min、废水pH 4.00、吸附温度25 ℃的优化条件下,处理后出水中COD和苯酚质量浓度分别降至317.1 mg/L和117.9 mg/L;COD和苯酚的总去除率分别达97.9%和96.6%。 相似文献
4.
采用超声强化臭氧氧化技术处理经絮凝、沉降脱固、过滤预处理的页岩气压裂返排液,通过实验室实验优化工艺参数,并在自行研制的超声强化臭氧氧化装置上进行了中试验证。实验结果表明,在反应时间为30min、废水pH为10、废水臭氧质量浓度为40 mg/L、超声波功率为200 W时,COD去除率可达55.2%,处理后水质可满足GB 8978—1996《污水综合排放标准》一级标准的要求。中试试验结果表明,研制的臭氧超声氧化处理装置可形成臭氧氧化、超声空化、水力空化的协同作用,处理后出水COD为90 mg/L,具有一定的推广价值。 相似文献
5.
超声协同Fenton法是利用超声的空化效应及自由基效应强化Fenton法对废水的处理效率,实现两者对废水中有机污染物的协同降解。概述了超声与Fenton法处理废水的协同机制。综述了废水pH、催化剂和H2O2投加量、超声功率、温度等工艺条件的优化研究,催化剂的研发以及共存物质的影响研究等方面的进展。指出开发新型高效、可重复利用、廉价易得的催化剂是提高超声协同Fenton法降解有机污染物效率的关键,还可将超声、Fenton法或超声协同Fenton法与其他的氧化法或生化方法相结合,寻找更加安全、高效、低成本的新途径。 相似文献
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通过超声波-铁粉联合体系协同降解废水中的五氯酚(PCP).实验结果表明:降解120 min后,PCP去除率可达90.4%;在该体系中铁粉被逐渐腐蚀成Fe2+,随降解时间的延长,Fe2+浓度逐渐增加;体系中的Fe2+可以促进·OH的产生,并且可以与超声空化作用下产生的H2O2发生Fenton试剂氧化反应降解PCP;超声波... 相似文献
10.
设计了一种循环式超声强化光催化反应器,以TiO2作为光催化剂,研究了超声功率、TiO2加入量、循环液流速和空气流量对双酚A(BPA)降解效果的影响。实验结果表明:超声与光催化过程在循环式超声强化光催化反应器中实现了较好的协同效应;在初始BPA质量浓度为20.0mg/L、超声功率为600W、TiO2加入量为7g/L、循环液流速为4.05×10-2m/s、空气流量为200mL/min的条件下,反应150min后,BPA降解率可达90.5%,溶液中剩余BPA质量浓度仅为1.8mg/L,反应240min后TOC去除率可达84.5%。 相似文献
11.
《Spill Science & Technology Bulletin》1999,5(2):141-151
The burning rate of a slick of oil on a water bed is calculated by a simple expression derived from a one-dimensional heat conduction equation. Heat feedback from the flame to the surface is assumed to be a constant fraction of the total energy released by the combustion reaction. The constant fraction (χ) is named the burning efficiency and represents an important tool in assessing the potential of in situ burning as a counter-measure to an oil-spill. The total heat release, as a function of the pool diameter, is obtained from an existing correlation. It is assumed that radiative heat is absorbed close to the fuel surface, that conduction is the dominant mode of heat transfer in the liquid phase and that the fuel boiling temperature remains constant. By matching the characteristic thermal penetration length scale for the fuel/water system and an equivalent single layer system, a combined thermal diffusivity can be calculated and used to obtain an analytical solution for the burning rate. Theoretical expressions were correlated with crude oil and heating oil, for a number of pool diameters and initial fuel layer thickness. Experiments were also conducted with emulsified and weathered crude oil. The simple analytical expression describes well the effects of pool diameter and initial fuel layer thickness permitting a better observation of the effects of weathering, emulsification and net heat feedback to the fuel surface. Experiments showed that only a small fraction of the heat released by the flame is retained by the fuel layer and water bed (of the order of 1%). The effect of weathering on the burning rate decreases with the weathering period and that emulsification results in a linear decrease of the burning rate with water content. 相似文献
12.
The degradation of cellulose (a substantial component of low- and intermediate-level radioactive waste) under alkaline conditions
occurs via two main processes: a peeling-off reaction and a basecatalyzed cleavage of glycosidic bonds (hydrolysis). Both
processes show pseudo-first-order kinetics. At ambient temperature, the peeling-off process is the dominant degradation mechanism,
resulting in the formation of mainly isosaccharinic acid. The degradation depends strongly on the degree of polymerization
(DP) and on the number of reducing end groups present in cellulose. Beyond pH 12.5, the OH- concentration has only a minor effect on the degradation rate. It was estimated that under repository conditions (alkaline
environment, pH 13.3-12.5) about 10% of the cellulosic materials (average DP = 1000-2000) will degrade in the first stage
(up to 105 years) by the peeling-off reaction and will cause an ingrowth of isosaccharinic acid in the interstitial cement pore water.
In the second stage (105-106 years), alkaline hydrolysis will control the further degradation of the cellulose. The potential role of microorganisms in
the degradation of cellulose under alkaline conditions could not be evaluated. Proper assessment of the effect of cellulose
degradation on the mobilization of radionuclides basically requires knowing the concentration of isosaccharinic acid in the
pore water. This concentration, however, depends on several factors such as the stability of ISA under alkaline conditions,
sorption of ISA on cement, formation of sparingly soluble ISA-salts, etc. A discussion of all the relevant processes involved,
however, is far beyond the scope of the presented overview. 相似文献
13.
Deepak Srivastava 《Journal of Polymers and the Environment》2004,12(1):27-33
Six film samples of low-density polypropylene (LDPE)/linear LDPE (LLDPE)/high-density polypropylene (HDPE) with varying ratios of LDPE (20–45 ... wt%) and LLDPE (25–50 wt%) having a fixed amount of HDPE at 30 wt% were prepared by blown film extrusion technique. The samples were aged at four different temperatures, 55°, 70°, 85°, and 100°C, for four different time periods in the interval of between 150 hours and up to 600 hours. The change in the structure of various constituents and the formation of various oxygenated (peroxy and hydroperoxy) and unsaturated groups during thermo-oxidative degradation was discussed by infrared spectroscopy. The visiosity-average molecular weight was found to have decreased slowly in the initial aging hours and temperatures, whereas it decreased by 10% with its previous value tensile strength that is, 100°C when aged for 600 hours. The tensile strength of the sample first increased by 67% at 55°C and 89% at 70°C up to 450 hours, whereas the values increased by 52.5% at 85°C and 33.9% at 100°C when aged for 150 hours and then decreased. The percentage elongation at break increased by 2.7% at 55°C and 10.7% at 70°C for 150 and 300 hours of aging, respectively, whereas the percentage decreased when aged at 85°C and 100°C for up to 600 hours of aging. The values of gel content (percent) increased and initial degradation temperature decreased with aging time and temperature. 相似文献
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S. Urstadt J. Augusta R. -J. Müller W. -D. Deckwer 《Journal of Polymers and the Environment》1995,3(3):121-131
Establishing carbon balances has been proven to be an applicable and powerful tool in testing biodegradability of polymers. In controlled degradation tests at a 4-L scale with the model polymer poly(-hydroxybutyrate) (PHB), it was shown that the degree of degradation could not be determined with satisfactory accuracy from CO2 release alone. Instead, the course of degradation was characterized by means of establishing carbon balances for the degradation of PHB withAcidovorax facilis and a mixed culture derived from compost. Different analytical methods for determining the different carbon fractions were adapted to the particular test conditions and compared. Quantitative determination of biomass and residual polymer were the main problems in establishing carbon balances. Amounts of biomass derived from protein measurements depend strongly on assumptions of the protein content of the biomass. Selective oxidation of biomass with hypochlorite was used as alternative, but here problems arose from insoluble metabolic products. Determination of soluble components with the method of chemical oxygen demand (COD) also includes empirical assumptions but seems acceptable if the dissolved carbon fraction is in the range of some 10% total carbon. Results confirm both analytical assays and theoretical approaches, in ending up at values very close to 100%, within an acceptable standard deviation range under test conditions comparable to standard test practice.Paper presented at the Bio/Environmentally Degradable Polymer Society—Third National Meeting, June 6–8, 1994, Boston, Massachusetts. 相似文献
16.
The effects of temperature on the release of chemical components of six solid organic materials under conditions of oversaturation were investigated in this paper. The six materials were peat moss (PM), weathered coals (WC), charred rice husks (CRH), sawdust (Sd), turfgrass clippings (TC), and chicken manure (CM). Significant differences were observed in the available nitrogen and phosphorus content of the aqueous extracts of organic materials at different temperatures. The available nitrogen content in aqueous extracts of PM and WC at 25 °C was higher than that registered at 15 °C and 35 °C. Available nitrogen content in the aqueous extracts of CRH, Sd, TC, and WC at 35 °C was higher than at 15 °C and 25 °C. The available phosphorus content in the aqueous extracts of organic materials at 35 °C was higher than that available at 15 °C and 25 °C, with the exception of Sd. In addition, the release of available phosphorus in the aqueous solution of organic materials at different temperatures varied constantly for 108 h. The release of potassium (K+) and sodium (Na+) ions in the aqueous extracts of organic materials was basically steady over time, with the exception of CM. High temperature (35 °C) may significantly hasten the release of K+ from organic substrates (except for WC) with low temperatures significantly inhibiting release of K+ in Sd and CRH. High temperatures (35 °C) might significantly facilitate the release of Na+ in CM and TC. However, no significant differences were manifested in the release of Na+ from organic substrates at different temperatures, with the exception of CM and TC. Moreover, no significant differences were observed in the release of calcium, magnesium and iron ions with time, nor were there any significant differences in the contents of iron ions in the aqueous extracts of organic materials at different temperatures. The results indicate that multiple mediums should be pretreated in water for a week before being used for planting. They should be used when all mineral elements of organic materials are steady and ignoring the effect of organic mediums. 相似文献
17.
Ülis Sõukand Pille Kängsepp Rutt Kakum Toomas Tenno Lennart Mathiasson William Hogland 《Journal of Material Cycles and Waste Management》2010,12(1):57-65
The simultaneous adsorption of copper (Cu), cadmium (Cd), nickel (Ni), and lead (Pb) ions from spiked deionized water and
spiked leachate onto natural materials (peat A and B), by-product or waste materials (carbon-containing ash, paper pellets,
pine bark, and semi-coke), and synthetic materials (based on urea-formaldehyde resins, called blue and red adsorbents) or
mixtures thereof was investigated. The adsorbents that gave the highest metal removal efficiencies were peat A, a mixture
of peat B and carbon-containing ash, and a mixture of peat A and blue. At an initial concentration of 5 mg/l for each metal,
the removal of each species of metal ion from spiked water and spiked leachate solutions was very good (>90%) and good (>75%),
respectively. When the initial concentration of each metal in the solutions was twenty times higher (100 mg/l), there was
a noticeable decrease in the removal efficiency of Cu2+, Cd2+, and Ni2+, but not of Pb2+. Langmuir monolayer adsorption capacities, qm, on peat A were found to be 0.57, 0.37, and 0.36 mmol/g for Pb2+, Cd2+, and Ni2+, respectively. The order of metal adsorption capacity on peat A was the same in the case of competitive multimetal adsorption
conditions as it was for single-element adsorption, namely Pb2+ > Cd2+ ≥ Ni2+. The results show that peat alone (an inexpensive adsorbent) is a good adsorbent for heavy metal ions. 相似文献
18.
采用结构化/非结构化混合网格技术、多孔介质模型及k-ε两方程湍流模型,对某袋式除尘器及进出口管道内的气体流场进行了数值计算.计算结果表明,合理布置导流板后,袋式除尘器两箱体流量偏差为1.8%;除尘器下游滤袋单元处理气量偏大,中游滤袋单元处理气量较小,最大流量与最小流量偏差为22.3%;靠近除尘器进口处灰斗内存在气流回流特性,易造成粉尘的二次附着现象. 相似文献
19.
Arvind Viswanathan 《Journal of Polymers and the Environment》1999,7(4):185-190
Octenyl succinate starch of degree of substitution (ds) 0.03, 0.07, and 0.11 was synthesized in an aqueous medium. These compounds were then tested for the susceptibility to enzymatic degradation. The multiple-enzyme regime of -amylase, amyloglucosidase, and pullulanase was chosen for the evaluation. This combination of enzymes had been proven to degrade 99.5% of unmodified starch to glucose and hence was chosen for this study. It was found that even small amounts of subsituent caused a considerable decrease in the extent of degradation. The net extent of degradation decreased with increasing ds. Surprisingly, the amount of glucose from all three substituted substrates was quite similar, suggesting the effect small amounts of subtituent had on the enzymatic activity. 相似文献
20.
Somani Mohit Datta Manoj Ramana G. V. Hölzle Ingo Sundaram Ravi Sreekrishnan T. R. 《Journal of Material Cycles and Waste Management》2022,24(5):1902-1912
Journal of Material Cycles and Waste Management - This study characterizes the municipal solid waste (MSW) accumulated for more than 25 years at Bhalswa dumpsite, Delhi, India. 50... 相似文献