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41.
本项目以哈尔滨啤酒(沈阳)有限公司啤酒厂为设计对象,其啤酒废水处理规模为1500m3/d,进水CODCr2000~2800mg/L。采用预处理-预酸化-IC反应器-活性污泥法-过滤为主体工艺,出水达到《辽宁省污水与废气排放标准》(DB21-60-89中一级标准)。为啤酒行业废水综合治理提供了较好的工艺途径。  相似文献   
42.
薛锐  李健  赵美玲 《环境科技》2008,21(2):12-15
通过活性炭吸附2种不同处理方法处理后的洗毛废水,研究了活性炭的吸附容量和吸附机理。结果表明:活性炭吸附无机酸酸化处理后废水和高分子絮凝剂处理后废水中COD的吸附容量分别为:70mg/g和43mg/g。进一步研究发现,2种废水中废水中小分子组分和疏水性组分的含量差异是造成活性炭吸附效果差异的主要原因。  相似文献   
43.
以自制多维电极体系对模拟染料废水CODcr及色度去除进行研究,同时考察反应器电压、电解时间、主电极极间距、电流密度等因素对去除效果的影响。试验结果表明,在最佳反应条件下,印染废水经电解后,脱色率达90%以上,CODcr去除率达81%以上,为难降解染料废水的处理提供了一种新方法。  相似文献   
44.
This work was undertaken to investigate the behaviors and kinetics of toluene adsorption and desorption on activated carbons with varying pore structure. Five kinds of activated carbon from different raw materials were selected. Adsorption isotherms and breakthrough curves for toluene were measured. Langmuir and Freundlich equations were fitted to the equilibrium data, and the Freundlich equation was more suitable for simulating toluene adsorption. The process consisted of monolayer, multilayer and partial active site adsorption types. The effect of the pore structure of the activated carbons on toluene adsorption capacity was investigated. The quasi-first-order model was more suitable for describing the process than the quasi-second-order model. The adsorption data was also modeled by the internal particle diffusion model and it was found that the adsorption process could be divided into three stages. In the external surface adsorption process, the rate depended on the specific surface area. During the particle diffusion stage, pore structure and volume were the main factors affecting adsorption rate. In the final equilibrium stage, the rate was determined by the ratio of meso-and macro-pores to total pore volume. The rate over the whole adsorption process was dominated by the toluene concentration. The desorption behavior of toluene on activated carbons was investigated,and the process was divided into heat and mass transfer parts corresponding to emission and diffusion mechanisms, respectively. Physical adsorption played the main role during the adsorption process.  相似文献   
45.
城市污水高效低耗生物脱氮工艺研究   总被引:6,自引:0,他引:6  
采用活性污泥与生物膜法相结合工艺处理城市生活污水,可以高效去除污水中的有机物和NH4^ -N。研究结果表明:水力停留时间为7.5h、回流比为1.5、无外加碳源时,COD的去除率大于90%,NH4^ -N的去除率大于99%;平均出水COD小于40mg/L,NH4^ -N小于1mg/L,TN的去除率60%左右;反硝化过程的适宜C/N为4~5。  相似文献   
46.
Perfluorooctane sulfonate(PFOS) has attracted increasing concern in recent years due to its world-wide distribution, persistence, bioaccumulation and potential toxicity. The influence of sorbent properties on the adsorptive elimination of PFOS from wastewater by activated carbons, polymer adsorbents and anion exchange resins was investigated with regard to their isotherms and kinetics. The batch and column tests were combined with physicochemical characterization methods, e.g., N_2 physisorption, mercury porosimetry, infrared spectroscopy, differential scanning calorimetry, titrations, as well as modeling. Sorption kinetics was successfully modelled applying the linear driving force(LDF) approach for surface diffusion after introducing a load dependency of the mass transfer coefficient βs.The big difference in the initial mass transfer coefficient βs,0, when non-functionalized adsorbents and ion-exchange resins are compared, suggests that the presence of functional groups impedes the intraparticle mass transport. The more functional groups a resin possesses and the longer the alkyl moieties are the bigger is the decrease in sorption rate.But the selectivity for PFOS sorption is increasing when the character of the functional groups becomes more hydrophobic. Accordingly, ion exchange and hydrophobic interaction were found to be involved in the sorption processes on resins, while PFOS is only physisorptively bound to activated carbons and polymer adsorbents. In agreement with the different adsorption mechanisms, resins possess higher total sorption capacities than adsorbents. Hence, the latter ones are rendered more effective in PFOS elimination at concentrations in the low μg/L range, due to a less pronounced convex curvature of the sorption isotherm in this concentration range.  相似文献   
47.
Black carbons(e.g.,charcoal) have a great impact on the transport of organic contaminants in soil and water because of its strong affnity and ubiquity in the environment.To further elucidate their interaction mechanism,sorption of polar(p-nitrotoluene,m-dinitrobenzene and nitrobenzene) and nonpolar(naphthalene) aromatic contaminants to burned straw ash charcoal under different de-ashed treatments were investigated.The sorption isotherms fitted well with Freundlich equation,and the Freundlich N values were all around 0.31-0.38,being independent of the sorbate properties and sorbent types.After sequential removal of ashes by acid treatments(HCl and HCl-HF) ,both adsorption and partition were enhanced due to the enrichment of charcoal component.The separated contribution of adsorption and partition to total sorption were quantified.The effective carbon content in ash charcoal functioned as adsorption sites,partition phases,and hybrid regions with adsorption and partition were conceptualized and calculated.The hybrid regions increased obviously after de-ashed treatment.The linear relationships of Freundlich N values with the charring-temperature of charcoal or biochar(the charred byproduct in biomass pyrolysis) were observed based on the current study and the cited publications which included 15 different temperatures(100-850°C) ,10 kinds of precursors of charcoal/biochar,and 10 organic sorbates.  相似文献   
48.
以颗粒状活性炭为吸附载体,对两种单体生物染料进行脱色吸附实验研究。通过实验确定出最佳优化条件:活性炭用量80g/L,溶液pH值约为5、5,溶液最佳温度为35℃,搅拌速度为150rpm/min,此时染料脱色率可达98%以上;在几种条件实验过程中,将两种染料进行对比发现:红色染料脱色率一般都比绿色染料脱色率高,而且前者一般比后者反应较敏感。同时,从活性炭的表面结构方面探讨吸附脱色机理,为活性炭深度处理印染废水的研究可提供一定的科学依据。  相似文献   
49.
田志梅 《环境科技》2005,18(3):15-16
在污水处理过程中,针对不同的运行环境,我们选择适当的运行工艺和参数。通过控制菌胶团细菌和丝状菌平衡生长,或者是使固着型原生动物占优势,来获得良好的活性污泥,保证出水达标排放。  相似文献   
50.
生物活性炭纤维处理微污染源水   总被引:1,自引:0,他引:1  
在生物活性炭的基础上,以活性炭纤维替代颗粒活性炭,研制了生物活性炭纤维(BACF)新型吸附材料,用于处理水中有机污染物。用扫描电镜观察了微生物在ACF上的固定情况,以水处理常用指标CODMn、UV254及,GC-MS图谱分析考察BACF对于微污染源水的处理效果。研究结果显示BACF技术作为一种新颖的水的深度处理工艺,结合了吸附与生物降解的双重效能,可以有效提高对源水的净化效果,提高出水水质,同时也可以扩大水源水的取水范围,是一项先进的水处理技术。  相似文献   
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