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1.
建筑涂料生产废水的处理技术   总被引:3,自引:0,他引:3  
采用混凝沉淀-芬顿试剂催化氧化-活性炭吸附工艺对建筑涂料生产废水的处理进行了研究。用硫酸铝作混凝剂,投加量为500mg/L:芬顿试剂法处理的废水pH为6.0,H2O2/COD值为4.0,FeSO4投加量为1540mg/L,氧化反应时间大于4h;活性炭投加量为0.2g/L时,处理后出水COD小于100mg/L。  相似文献   

2.
采用加载絮凝—超滤—反渗透组合工艺处理含大量重金属离子的印制电路板(PCB)电镀废水。考察了絮凝污泥回流比和水力条件对加载絮凝效果的影响,确定了最佳工艺参数:在加碱沉淀pH 10.5、混凝pH 9.0、PAC投加量10 mg/L、PAM投加量1.0 mg/L的条件下,污泥回流比为47%,加碱沉淀、混凝、絮凝的搅拌转速分别为250,150,50 r/min,搅拌时间分别为6,8,4 min。中试结果表明:经加载絮凝预处理后,总铜、总镍和浊度的平均去除率分别为99.4%、99.3%和93.1%;预处理出水经超滤—反渗透系统处理后,出水水质全部达标。  相似文献   

3.
采用加载絮凝—超滤—反渗透组合工艺处理含大量重金属离子的印制电路板(PCB)电镀废水。考察了絮凝污泥回流比和水力条件对加载絮凝效果的影响,确定了最佳工艺参数:在加碱沉淀pH 10.5、混凝pH 9.0、PAC投加量10 mg/L、PAM投加量1.0 mg/L的条件下,污泥回流比为47%,加碱沉淀、混凝、絮凝的搅拌转速分别为250,150,50 r/min,搅拌时间分别为6,8,4 min。中试结果表明:经加载絮凝预处理后,总铜、总镍和浊度的平均去除率分别为99.4%、99.3%和93.1%;预处理出水经超滤—反渗透系统处理后,出水水质全部达标。  相似文献   

4.
环氧氯丙烷生产废水的资源化处理技术   总被引:1,自引:0,他引:1  
帅晓丹  曹国民  洪芳  盛梅 《化工环保》2013,33(6):518-522
采用催化湿式过氧化物氧化法(CWPO)处理环氧氯丙烷生产废水,考察了反应温度、反应时间、反应pH、双氧水和FeSO4#x000b7;7H2O加入量及投加方式等因素对TOC去除率的影响。实验结果表明:CWPO工艺适宜的反应条件为反应温度90℃,反应pH2.0~3.0,FeSO4#x000b7;7H2O2加入量7.50~8.75g/L,双氧水加入量75mL/L,反应时间100min;双氧水和Fe2+分多次投加时的TOC去除效果明显优于一次性投加;优化条件下,环氧氯丙烷废水经CWPO工艺处理后,TOC由1790mg/L降至138mg/L,符合氯碱厂隔膜电解槽进槽盐水的要求,可以资源化利用。  相似文献   

5.
采用水热合成—高温碳化—涂饰的方法制备了介孔碳修饰石墨电极,并将其用于模拟硝基苯废水的电化学处理,考察了废水pH、电流密度、电解质投加量对处理效果的影响。表征结果显示,修饰电极表面具有丰富的介孔结构,因而比石墨电极具有更高的硝基苯去除率和苯胺生成量。实验结果表明,在废水pH为7.0、电流密度为15 mA/cm~2、电解质硫酸钠投加量为1.775 g/L的条件下处理初始硝基苯质量浓度为100 mg/L的模拟废水,电解3.0 h时的硝基苯去除率高达99.6%,苯胺生成量最高达45.54 mg/L。  相似文献   

6.
以水性油墨废水絮凝污泥为原料、采用一步炭化活化法制备了吸附剂,并将其用于阳离子蓝X-GRRL溶液(300 mg/L)的吸附处理。考察了吸附剂投加量、吸附时间、吸附温度和吸附pH对吸附效果的影响,并对吸附动力学进行了探讨。结果表明:所制得吸附剂的总孔体积为0.5 cm~3/g,平均孔径为7.12 nm;在吸附剂投加量0.6g/L、吸附时间420 min、吸附温度25℃、吸附pH 5.4的条件下,吸附量高达486.21 mg/g,脱色率达97.24%;该吸附剂对于阳离子蓝X-GRRL的吸附过程可用准二级动力学模型和颗粒内扩散效应模型很好地描述。  相似文献   

7.
采用向含氟废水中加入适量石灰和聚合氯化铝,然后投加适量钙盐、磷酸和聚丙烯酰胺的二级处理工艺除氟,通过控制合适的pH、钙盐和磷酸的投加量、反应时间、反应温度、搅拌强度和絮凝剂的投加量,可使黄磷废水中氟的质量浓度降至5mg/L,氟的去除率达到99%以上,出水中氟的质量浓度达到GB8978-1996一级排放标准。  相似文献   

8.
冀云  赵远  董向阳  王霞  操林海  刘钰 《化工环保》2019,39(2):153-157
在中试吹脱装置上,通过投加低浓度促脱剂协同传统吹脱法处理高氨氮工业废水(氨氮质量浓度2 369~3 600 mg/L)。结果表明:在相同处理条件下,阴离子促脱剂的氨氮去除效果优于阳离子促脱剂,且促脱剂的碳数越高越有利于氨氮的去除;废水处理的最佳工艺条件为废水pH 12.0、废水温度50℃、吹脱时间5 h、促脱剂投加量25 mg/L、气液比600∶1;该条件下,以木质素磺酸钠为促脱剂协同吹脱法处理高氨氮废水,氨氮去除率可达99%以上,高于传统吹脱法20个百分点以上。  相似文献   

9.
畜禽养殖废水由于具有高COD、高SS、高氨氮等特点,属于高浓度难降解废水,不宜直接采用生化处理,需对其进行预处理。试验采用预氧化+混凝沉淀+MAP对畜禽养殖废水进行预处理。结果表明:预氧化+混凝沉淀+MAP沉淀预处理畜禽养殖废水具有极强的可行性,同时当次氯酸钠投加量为1260 mg/L,PAC为700 mg/L,PAM投加量为10 mg/L时,处理效果最佳,并且药剂投加不宜采用同步进行,适宜先进行预氧化,然后进行强化混凝,最后采用MAP沉淀法处理畜禽养殖废水,可以达到更好的预处理效果,提高可生化性。  相似文献   

10.
两相复配高效除磷材料特性研究   总被引:1,自引:0,他引:1  
利用工业废渣粉煤灰和钢渣合成了两相复配高效除磷材料(EPRC),对模拟城市生活污水厂二级出水进行了除磷特性单因素试验.结果表明:当初始溶解性磷为5mg/L,两相复配EPRC投加量为32mg/L时,均能在30h后将磷降低至1mg/L以下.初始pH=7比初始pH=4或10时的除磷效果更好.  相似文献   

11.
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   

12.
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   

13.
The burning rate of a slick of oil on a water bed is characterized by three distinct processes, ignition, flame spread and burning rate. Although all three processes are important, ignition and burning rate are critical. The former, because it defines the potential to burn and the latter because of the inherent possibility of boilover. Burning rate 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. 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%). Ignition has been studied to provide a tool that will serve to assess a fuels ease to ignite under conditions that are representative of oil spills. Two different techniques are used, piloted ignition when the fuel is exposed to a radiant heat flux and flash point as measured by the ASTM D56 Tag Closed Cup Test. Two different crude oils were used for these experiments, ANS and Cook Inlet. Crude oils were tested in their natural state and at different levels of weathering, showing that piloted ignition and flash point are strong functions of weathering level.  相似文献   

14.
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   

15.
This article presents a mathematical model which describes the sodium chromate (VI) production process with the use of chromic waste as a substitution of natural raw materials. This model is a function of selected process parameters common for all of the examined alternatives and based on equations of material balance. Optimization of the elaborated technological alternatives of the production process with use of recycling of chromic waste has been evaluated by determining the extreme value of the quality indicator WJ. This indicator defines the quantity of waste created in the process. Optimization results enabled the selection of the optimal technological solution from all of the alternatives possible for use in industrial practice. Negative values of the indicator prove that there is the possibility of introducing to the process a larger quantity of waste than the one obtained in the process and transported to the storage heaps.  相似文献   

16.
以N2和CO2混合气模拟燃烧烟气,研究了鼓泡反应器的高径比以及反应条件对氨法烟气脱碳性能的影响。实验结果表明:在相同高径比的条件下,CO2吸收率随氨水质量分数的增加、反应温度的升高而逐渐增大,随进气CO2体积分数和模拟烟气流量的增加而逐渐减小;CO2吸收率随高径比的增加而增大,在高径比为3.98、氨水质量分数为28%、进气CO2体积分数为10%、模拟烟气流量为1.0L/min、反应温度为40℃的条件下,CO2吸收率最高可达100%。  相似文献   

17.
化学品生物降解性的评价与预测   总被引:4,自引:0,他引:4  
介绍了有机化学物质生物降解性的测定方法及其预测方法研究概况,并讨论了生物降解性评价的发展前景。  相似文献   

18.
The biodegradability of oxidized starch and inulin has been studied in relation to the degree of periodate oxidation to dialdehyde derivatives, by measuring oxygen consumption and mineralization to carbon dioxide. A higher degree of oxidation of dialdehyde starch and dialdchyde inulin results in a lower rate at which the polymers are biodegraded. It is demonstrated that the biodegradation rate of dialdehyde inulin derivatives decreases more than that of equivalent starch derivatives. The differences in biodegradation behavior between dialdehyde starch and dialdehyde inulin, resulting from comparable modifications, are discussed in terms of conformational structure.  相似文献   

19.
Methyleneureas are condensation products of urea and formaldehyde of different molecular mass and solubility; they are used in large amounts both as resins, binders, and insulating materials for industrial applications, as well as a slow-release nitrogen fertilizer for greens, lawns, or in bioremediation processes. In the present study, the microbial breakdown of these products was investigated. The nitrogen was released as ammonia and urea, and the formaldehyde released immediately oxidized via formiate to carbon dioxide. The enzymatic mechanism of metabolization of methyleneureas was studied in microorganisms isolated from soil, which were able to use these compounds as the sole source of nitrogen for growth. A strain of the Gram-negative bacterium Ralstonia paucula (formerly Alcaligenes sp. CDC group IVc-2) completely degraded methylenediurea and dimethylenetriurea to urea, ammonia, formaldehyde, and carbon dioxide. The enzyme initiating this degradation (methylenediurease) was purified and turned out to be different from the previously described enzyme from Ochrobactrum anthropi with regard to its regulation of expression and physicobiochemical properties. Fungal degradation of methyleneureas may occur via the formation of organic acids, thus leading to a nonenzymatic degradation of methyleneureas, which are unstable under acidic conditions.  相似文献   

20.
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   

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