共查询到20条相似文献,搜索用时 56 毫秒
1.
铁屑过滤-混凝组合工艺处理印染废水 总被引:22,自引:1,他引:22
采用铁屑过滤一混凝组合工艺处理印染废水,是将铁屑过滤作为混凝法的预处理,以强化混凝处理过程,提高废水处理效果,减少混凝剂的投加量。试验结果表明,经处理后出水的COD值可降至100mg/L以下,水质清澈透明,各项水质指标均达国家排放标准。 相似文献
2.
针对目前印染废水中特征污染物锑难以达标的问题,采用纳米零价铁(nZVI)并对其进行硫化改性(S-nZVI),研究了nZVI在硫化改性前后的除锑性能变化及吸附机理.表征分析显示,硫化改性后形成的FeSx会使材料形成不规则的、具有复杂形态的FeSx及FeOx表面,增大了材料的比表面积;其次,FeSx可以提高电子的转移效率,促进氧化还原反应的发生,使得少部分Sb(V)被还原为更容易沉淀的Sb(OH)3或FeSbO3;同时由于硫元素的存在,形成的无定型态铁氧化物更为稳定,不易向结晶态转变,而无定型态铁氧化物对Sb(V)的吸附效果要远高于结晶态铁氧化物;此外,锑也可以与硫元素结合形成稳定的锑硫化合物而从废水中去除.实验结果表明,投加量为60 mg·L-1的S-nZVI能够使初始浓度为200μg·L-1 Sb(V)的模拟印染废水和实际印染废水中总锑浓度处理至排放标准(<50μg·L-1),体现出S... 相似文献
3.
铁屑过滤—SBR工艺处理棉纺印染废水 总被引:5,自引:0,他引:5
采用铁屑过滤-SBR工艺处理棉纺印染废水,结果表明,当进水COD为500-1300mg/L,色度为100-200倍,BOD51120-300mg/L,时,COD去除率可达85%,BOD5去除率和脱色率均在90%以上,出水达到了排放标准,该工艺较适合于中小型印染厂废水处理。 相似文献
4.
介绍了采用混凝沉淀-水解-接触氧化-气浮工艺处理印染废水的工程应用,总结并分析了工程设计及运行的经验。运行结果表明,该工艺对CODCR,BOD5,SS,色度等均有良好的效果,出水水质达到GB4287—92《纺织染整工业水污染物排放标准》中的一级标准。 相似文献
5.
6.
7.
混凝沉淀-延时曝气-炉渣吸附工艺处理印染废水 总被引:1,自引:0,他引:1
针对印染废水特点,采用混凝沉淀-延时曝气活性污泥-炉渣吸附为主体工艺处理印染综合废水,实践证明,印染综合废水经该工艺处理后,对BOD5总去除率达94%,COD总去除率达97%,脱色能力达72%,出水水质达标排放,效果稳定。 相似文献
8.
9.
混凝和强化混凝对印染废水中锑(Ⅴ)的去除特性 总被引:1,自引:0,他引:1
印染废水中锑的排放标准日趋严格,是印染废水处理面临的新挑战.以混凝和强化混凝去除印染废水中锑(Ⅴ)为目标,发现聚硫酸铁(PFS)混凝剂对印染废水中锑(Ⅴ)的去除效率显著优于铁铝复配混凝剂和铝盐混凝剂,去除效率达97.4%,出水锑(Ⅴ)浓度可达4μg·L~(-1).酸性条件(低水解度)有利于PFS生成Fe(a)活性组分和静电吸引、锑(Ⅴ)迁移,且絮体颗粒较小,促进PFS混凝除锑(Ⅴ)效率;酸性条件下PFS除锑(Ⅴ)效率是中性条件的1.27倍,处理出水中锑(Ⅴ)浓度仅为中性条件的33.3%.PFS投加量与除锑(Ⅴ)效率符合反比例模型.在较高锑(Ⅴ)浓度下,提升PFS投加量可提高除锑(Ⅴ)效率,但在较低锑(Ⅴ)浓度下,提升PFS投加量对除锑(Ⅴ)效率的促进较小.PFS絮体回流与混凝沉淀串联或耦合可显著提升印染废水中锑(Ⅴ)的去除效率,其除锑(Ⅴ)效率分别是单一PFS混凝沉淀的1.14倍和1.32倍,可有效降低出水锑(Ⅴ)浓度并节约PFS投加量和减少污泥生成量.其中混凝-絮体回流耦合工艺中,最佳絮体回流比例为100%. 相似文献
10.
11.
微絮凝强化过滤工艺处理低温低浊水的实验研究 总被引:1,自引:1,他引:1
以北京市某水厂冬季沉后水为研究对象,分别采用常规过滤工艺和强化过滤工艺对其进行处理.通过改变聚合氯化铝(PACl)投加量、滤料粒径d和微絮凝时间,并结合水头损失、颗粒数、总有机碳(TOC)、化学需氧量(COD)等实验数据,对低温低浊水体强化过滤工艺条件进行了研究.结果表明,强化过滤工艺与常规过滤工艺相比具有较强的除浊、去除有机物和颗粒物的能力,当微絮凝时间为2min时可以得到较好的过滤效果;PACl投药量为1.5mg·L-1时,浊度可降到0.04NTU,而常规过滤工艺最多只能将浊度降到0.2NTU.在滤料选用方面,当滤料粒径d=0.6~1.2mm时滤后水中颗粒数(2~5μm)、浊度、COD等指标均达到最优值.同时,电感耦合等离子体光谱(ICP-OES)检测结果表明,滤后水中Al3+含量小于0.2mg·L-1,并未因二次投加PACl而升高,因此,不会对水的饮用产生任何健康和安全风险. 相似文献
12.
Compared with traditional aluminum salts, polyaluminum chloride (PACI) has better coagulation-flocculation performance in turbidity removal. However, it is still inferior to organic polymers in terms of bridging function. In order to improve the aggregating property of PACl, different composite PACl flocculants were prepared with various organic polymers. The effect of organic polymer on the distribution or Al(Ⅲ) species in composite flocculants was studied using ^27TAl NMR and Al-ferron complexation methods. The charge neutralization and surface adsorption characteristics of composite flocculants were also investigated. Jar tests were conducted to evaluate the turbidity removal efficacy of organic polymer modified composite flocculants. The study shows that cationic polymer and anionic polymer have significant influences on the coagulation-flocculation behaviors of PACl. Both cationic and anionic polymers can improve the turbidity removal performancc of PACl but the mechanisms arc much different: cationic organic polymer mainly increases the charge neutralization ability, but anionic polymer mainly enhances the bridging function. 相似文献
13.
Steady performance of a zero valent iron packed anaerobic reactor for azo dye wastewater treatment under variable influent quality 总被引:1,自引:0,他引:1
Zero valent iron (ZVI) is expected to help create an enhanced anaerobic environment that might improve the performance of anaerobic treatment. Based on this idea, a novel ZVI packed upflow anaerobic sludge blanket (ZVI-UASB) reactor was developed to treat azo dye wastewater with variable influent quality. The results showed that the reactor was less influenced by increases of Reactive Brilliant Red X-3B concentration from 50 to 1000 mg/L and chemical oxygen demand (COD) from 1000 to 7000 mg/L in the feed than a reference UASB reactor without the ZVI. The ZVI decreased oxidation-reduction potential in the reactor by about 80 mV. Iron ion dissolution from the ZVI could buffer acidity in the reactor, the amount of which was related to the COD concentration. Fluorescence in situ hybridization test showed the abundance of methanogens in the sludge of the ZVI-UASB reactor was significantly greater than that of the reference one. Denaturing gradient gel electrophoresis showed that the ZVI increased the diversity of microbial strains responsible for high efficiency. 相似文献
14.
利用PMS碱催化法处理亚甲基蓝、酸性橙7(AO7)和罗丹明B(RhB)3种典型染料,优化了脱色条件并分析了机理.在pH=10.8~11.5(亚甲基蓝)或pH=10.0~10.8(酸性橙7或罗丹明B),PMS投加量100mg/L的最优条件下,亚甲基蓝、酸性橙7和罗丹明B的脱色速率常数可分别达到0.097,0.074,0.004min-1,脱色率可分别达到95.1%,93.3%和30.1%.捕获剂实验证实PMS碱催化脱色3种染料时起主要作用的均是单线态氧.基于紫外-可见全波长光谱的结果推测,亚甲基蓝和酸性橙7反应脱色较快可归因于单线态氧对噻嗪生色基团和偶氮键的攻击更有效率. 相似文献
15.
针对纳米零价铁在多孔介质中的迁移特点,本文通过实验室柱实验和腐蚀实验分析了不同聚丙烯酸(PAA)包覆浓度下的纳米零价铁(nZVI)在石英砂介质中的迁移和其接触不同电解质溶液6h的反应活性.利用迁移距离和穿出率,表征了不同纳米铁材料的迁移性能.应用pH值、氧化还原电位(ORP)、Fe2+浓度、X射线衍射(XRD)和Fe0含量随时间变化图像表征纳米零价铁腐蚀程度.实验结果表明,PAA显著提高了纳米零价铁材料的迁移距离.10%聚丙烯酸包覆浓度下,实验室合成纳米零价铁的迁移效果最佳,穿出率可达58.65%.在6h的腐蚀实验中,10%聚丙烯酸包覆的零价铁含量有一定的降低,但是零价铁损失相对于20% PAA包覆的零价铁少.综合考虑迁移性和反应活性,10% PAA包覆浓度下实验室合成纳米零价铁是适用于地下水污染原位修复的最佳材料. 相似文献
16.
感应热固定床(IHBF)在有机废水非均相反应中,通过能量靶向作用于磁性滤料微界面,形成固液相界面高温微反应区,实现了有机废水低能耗高效降解.本文探讨了海绵铁感应热固定床处理直接紫D-BL废水的运行条件和机理.结果表明,在进水pH值6~7,水温为30 ℃,HRT为2.08min的条件下,运行30min后脱色率高达93.5%.降解溶液的UV-vis结果表明,直接紫D-BL在554nm和220nm的特征峰消失.通过SEM-EDS技术对Ni-SI降解前后的样品进行表征,结果显示,降解后Ni-SI中的Fe形成了Fe的氧化物和氢氧化物.根据降解、表征分析其反应机理,推断是直接紫D-BL首先吸附在海绵铁颗粒表面,接着铁与水反应产生的H2在Ni的催化和局部高温作用下产生大量的氢自由基,并与直接紫D-BL发生催化还原反应,使得分子中最毒性的共轭双键和苯环断开而降解.此外对酸性黑10B废水、直接大红D-GLN废水和实际染料废水分别进行试验,脱色率分别达到82%、78%、81%左右,表明海绵铁感应热固定床在染料工业废水处理中具有良好的应用潜力. 相似文献
17.
采用环境友好型矿物材料硅藻泥(Diatom Mud)包埋纳米零价铁(nZVI)得到复合材料(D-nZVI),分别用XRD、SEM和TEM对样品分析表征.同时,通过考察D-nZVI中硅藻泥的用量、投加量、含Cr(VI)废水浓度、p H值、处理时间等对Cr(VI)去除率的影响,进一步研究了反应动力学等.结果表明,在25℃的条件下,D-nZVI中硅藻泥的用量为20%时,D-nZVI对Cr(VI)的去除效率要高于nZVI.p H值较低时D-nZVI的处理效果更好,并且含Cr(VI)废水的浓度越高,去除率越低,投加量增多和反应时间越长,Cr(VI)的去除率越高.当D-nZVI的用量为16 g·L-1,Cr(VI)废水浓度为10 mg·L-1,p H=3时,Cr(VI)的去除率达99%.从SEM和TEM样品分析结果可以看出,硅藻泥表面有很多小而均匀的小孔,较好地包埋或附着在纳米零价铁的表面上,起到了很好的抗氧化作用,为D-nZVI吸附、还原和共沉淀降解Cr(VI)提供了有力依据. 相似文献
18.
GUAN Bao-hong 《环境科学学报(英文版)》2005,17(3):419-424
Terylene artificial silk printing and dyeing wastewater(TPD wastewater), containing averaged 710 mg/L terephthalic acid(TA) as the main carbon source and the character pollutant, was subjected to expanded granular sludge bed(EGSB) process. The stability of the EGSB process was firstly conducted by laboratory experiment. TA ionization was the predominated factor influencing the acid-base balance of the system. High concentration of TA in wastewater resulted in sufficient buffering capacity to neutralize the volatile fatty acids(VFA)generated from substrate degradation and provided strong base for anaerobic system to resist the pH decrease below 6.5. VFA and UFA caused almost no inhibition on the anaerobic process and biogas production except that pH was below 6.35 and VFA was at its maximum value. Along with the granulating of the activated sludge, the efficiency of organic removal and production rate of biogas increased gradually and became more stable. After start-up, the efficiency of COD removal increased to 57%—64%, pH stabilized in a range of 7.99—8.04, and production rate of biogas was relatively high and stable. Sludge granulating, suitable influent of pH and loading were responsible for the EGSB stability. The variation of VFA concentration only resulted in neglectable rebound of pH, and the inhibition from VFA could be ignored in EGSB. The EGSB reactor was stable for TPD wastewater treatment. 相似文献
19.
Fe-doped TiO2 coated on activated carbon (Fe-TiO2/AC, FTA) composites were prepared by an improved sol-gel method and
characterized by scanning electron microscopy, X-ray photoelectron spectroscopy, X-ray di ractometry, inductively coupled plasma
mass spectrometry and BET surface area analysis. Obtained FTA composites were applied to the continuous treatment of dye wastewater
in a dynamic reactor. The e ects of Fe ion content, catalyst content, UV-lamp power and flowrate of the continuous treatment of dye
wastewater on degradation e ciency were analyzed to determine the optimum operating conditions of dye wastewater degradation.
Continuous photocatalytic experiments provided interesting results that FTA had a high chemical oxygen demand (COD) removal rate
compared with TiO2, Fe doped TiO2 (FT) and TiO2 coated on activated carbon (TA). In particular, when using the FTA catalyst with
a Fe ion content of 0.33%, the kinetic content (k = 0.0376) of COD removal was more than the sum of both TA (0.0205) and 0.33%
FT (0.0166). FTA showed a high photoactivity because of a synergistic e ect between Fe ions and AC on TiO2, which is higher than
the individual e ects of AC or Fe ions on TiO2. Additionally, for the photocatalytic degradation of dye wastewater, the optimum Fe
ion content, catalyst content, UV-lamp power and flowrate were 0.33%, 6 g/L, 60 W (two lamps) and 300 mL/hr, respectively. An
investigation of catalyst reuse revealed that the 0.33% FTA showed almost no deactivation in photocatalytic degradation of naturally
treated wastewater. 相似文献
20.
Hong-Cheng Wang Hao-Yi Cheng Shu-Sen Wang Dan Cui Jing-Long Han Ya-Ping Hu Shi-Gang Su Ai-Jie Wang 《环境科学学报(英文版)》2016,28(1):198-207
In this study, a novel scaled-up hybrid acidogenic bioreactor(HAB) was designed and adopted to evaluate the performance of azo dye(acid red G, ARG) containing wastewater treatment. Principally, HAB is an acidogenic bioreactor coupled with a biocatalyzed electrolysis module. The effects of hydraulic retention time(HRT) and ARG loading rate on the performance of HAB were investigated. In addition, the influent was switched from synthetic wastewater to domestic wastewater to examine the key parameters for the application of HAB. The results showed that the introduction of the biocatalyzed electrolysis module could enhance anoxic decolorization and COD(chemical oxygen demand) removal. The combined process of HAB-CASS presented superior performance compared to a control system without biocatalyzed electrolysis(AB-CASS). When the influent was switched to domestic wastewater, with an environment having more balanced nutrients and diverse organic matters, the ARG, COD and nitrogen removal efficiencies of HAB-CASS were further improved, reaching 73.3% ± 2.5%, 86.2% ± 3.8% and 93.5% ± 1.6% at HRT of 6 hr, respectively, which were much higher than those of AB-CASS(61.1% ± 4.7%,75.4% ± 5.0% and 82.1% ± 2.1%, respectively). Moreover, larger TCV/TV(total cathode volume/total volume) for HAB led to higher current and ARG removal. The ARG removal efficiency and current at TCV/TV of 0.15 were 39.2% ± 3.7% and 28.30 ± 1.48 m A,respectively. They were significantly increased to 62.1% ± 2.0% and 34.55 ± 0.83 m A at TCV/TV of 0.25. These results show that HAB system could be used to effectively treat real wastewater. 相似文献