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1.
壳聚糖和PDMDAAC改性膨润土用于处理含油废水的研究   总被引:1,自引:0,他引:1  
含油废水污染范围广,对人类和生态环境危害大。采用常规方法(如浮选法、絮凝法、电化学法、膜分离法和生物法)处理的除油率不高于91%,成本较高,因此急需开发一种高效低廉的吸附剂。膨润土是一种优良的吸附剂,但用其直接处理含油废水的效果较低。本文选用壳聚糖和PDMDAAC两种有机物作为改性剂,对钠基膨润土改性,使膨润土能有效地处理含油废水。通过实验比较了两种有机改性膨润土处理含油废水的最佳去除条件,探讨了表征对其吸附性能的影响。去油效果结果表明:壳聚糖改性膨润土的除油率可达87.8%,PDMDAAC改性膨润土的除油率可达89.3%,处理所需时间少于15 min;除油效率和处理时间都优于常规方法。吸附性能表征结果显示,两种改性剂均以负载的方式和钠基膨润土颗粒结合,吸附性能良好;相比而言,PDMDAAC改性膨润土的处理效果比壳聚糖改性膨润土更好。PDMDAAC应用于含油废水的处理,具有成本低、效率高、操作简单的特点,在含油废水处理领域具有较好的应用前景。  相似文献   

2.
氧化石墨烯具有相对较大的表面积,其表面存在的丰富的含氧官能团使其具有良好的亲水性,能稳定地分散在水溶液中,是一种潜在的优质吸附剂。现有研究表明,氧化石墨烯对重金属及阳离子染料废水的处理效果明显优于广泛应用的传统吸附剂,然而由于其自身结构缺陷的原因,其应用还受到很多局限。介绍了氧化石墨烯的制备和结构,并重点针对氧化石墨烯及其复合材料对重金属离子和有机污染物的吸附行为、吸附机理、吸附模型及吸附影响条件等进行了综述,最后对氧化石墨烯及其复合材料在吸附方向的研究和应用前景进行了展望。  相似文献   

3.
应用我国常见的生物桔皮原料中纤维素等有效成分,制备了未经处理的桔皮吸附剂(OP)和经异丙醇、皂化后用1.0 mol·l^-1柠檬酸修饰的桔皮吸附剂(SCO),研究了它们对重金属Pb(Ⅱ)的吸附能力、吸附机理,考察有关了吸附条件对重金属离子吸附平衡的影响,并从中找到了最佳的吸附条件和解吸附条件。  相似文献   

4.
水环境中的重金属污染是个普遍关注的环境问题.研究[1~4]表明,细菌、真菌和藻类都可用作有效的生物吸附剂去除水中的多种金属.生物吸附技术处理含重金属废水的主要优点是成本低、吸附效率高和可再生[5].将生物质置于海藻酸钙、聚乙烯醇等包埋剂中有利于固液分离、生物质的回收再生和应用于各种滤池.本研究主要研究海藻酸钙包埋的混合SRB菌群对Ni的生物吸附行为.  相似文献   

5.
用硫化物矿物处理电镀厂废水技术研究   总被引:6,自引:0,他引:6  
大多数环境工程材料是通过表面作用( 吸附或共沉淀) 来清除水中的有毒有害物质的,这就要求材料本身具有高表面活性。在搞清硫化物固/ 液界面行为机理的基础上,本文采用高表面活性的硫化物作为吸附剂,以重金属污染大户———电镀厂的酸性废水作为处理对象,研制了一种低成本、高效益、以废治废、简便易行的重金属污染物处理技术———硫化物矿物→鼓气搅动→CaO 调pH 值。废水经处理后,完全可以达到国家规定的排放标准。该技术的研制,对保护和净化环境具有重要的现实意义,同时具有广阔的应用前景。  相似文献   

6.
以铁铝双金属离子低聚物为交联剂,制备了Fe/Al交联改性膨润土(MB),用于处理含偶氮染料的废水。通过改变吸附时间、pH和甲基橙废水浓度及掺加共存无机阴离子等因素,研究了MB对甲基橙的脱色效果。结果表明,改性后的膨润土吸附能力显著增强,对甲基橙有较好的吸附脱色性能。当材料用量0.0200 g,处理甲基橙废水20 mL,废水pH值小于4,处理时间2 h,甲基橙的脱色率可达95%。其吸附甲基橙的过程符合Fre-undlich等温吸附模式,对甲基橙的最大饱和吸附容量为384 mg/g。我国膨润土储量大、价格低,以Fe/Al交联剂为改性剂对天然膨润土进行了改性,得到的MB材料是一类很好的环境友好型吸附剂。  相似文献   

7.
用矿化物矿物处理电镀厂废水技术研究   总被引:4,自引:2,他引:4  
大多数环境工程材料是通过表面作用(吸附或共沉淀)来清除水中的有毒有害物质的,这就要求材料本身具有高表面活性。在搞清硫化物固/液界面行为机理的基础上,本文采用高表面活性的硫化物作为吸附剂,以重金属污染大户-电镀厂的酸性废水作为处理对象,研制了一种低、高效益、以废治废、简便易行的重金属污染物处理技术--硫化物矿物-彭气搅动-CaO调PH值。废水经处理后,完全可以达到国家规定的排放标准。该技术的研制,对  相似文献   

8.
三相生物流化床处理啤酒废水   总被引:11,自引:4,他引:7  
通过三相生物流化床处理啤酒废水的实验研究,探讨曝气量和水力停留时间对处理效果的影响,确定最佳曝气量为0.25 m3/h,最佳水力停留时间为1.5 h。在该实验条件下,CODcr平均去除率在85%以上,生物浓度高达28.31 mg/L,生物膜活性强,同时反应器具有较强的抗冲击负荷能力。  相似文献   

9.
高岭土吸附剂去除含锰废水中锰离子的实验研究   总被引:11,自引:2,他引:11  
高岭土吸附剂处理含锰废水中锰离子的实验表明:高岭土的最佳粒度为0.177 mm,pH值控制在7.5~ 8.5间,常温搅拌30 min,吸附剂与水量比为12 g∶1 L,对锰离子质量浓度为100 mg/L的废水的处理效果最好,使锰离子质量浓度由100 mg/L降至0.1 mg/L,锰离子的去除率超过90%,达到GB8978-1996工业废水排放的一级标准.高岭土对锰离子吸附的等温吸附曲线符合Freundlich模型,其吸附机理主要是吸附作用和沉淀作用.  相似文献   

10.
生物矿化针铁矿对造纸废水的吸附和热解吸研究   总被引:1,自引:0,他引:1  
利用生物矿化针铁矿对造纸废水进行吸附实验,对吸附动力学、影响因素、以及吸附等温线等进行了研究,通过DTA和XRD研究了不同煅烧温度条件下生物矿化针铁矿的物质形态变化,分析了不同再生条件对生物矿化针铁矿的吸附容量的影响。结果表明:生物矿化针铁矿对造纸废水中的污染物吸附速度较快,具有良好的吸附性能;生物矿化针铁矿吸附污染物后经过煅烧可以实现再生,经310℃煅烧后的第一次再生吸附率为原针铁矿的97.3%,多次加热再生后仍然具有很高的吸附能力。  相似文献   

11.
为利用膨润土的层间活性有效提高其吸附性能,用各种方法合成金属钛的聚合体,并引入膨润土层间进行改性,研究了合成方法、条件等对膨润土结构、性能的影响,并以红色染料模拟有机废水探讨其吸附性。结果表明,聚合体的合成方法、浓度及介质的pH等条件对改性膨润土的结构和性能均有影响。用Ti在层间水解生成聚合体的合成方法能够有效地改性膨润土、增大层间距、提高其吸附性。  相似文献   

12.
Analysis was carried out using tangerine peel aiming its use as a potential adsorbent of eight heavy metal ions (Cd, Co, Cr, Cu, Mn, Ni, Pb and Zn) from aqueous solution. This agricultural waste was tested both in its untreated and also chemically modified form. Based on Fourier transformation infrared spectra, a comparison of biosorbent structure before and after chemical treatment was made. Batch adsorption tests were conducted at different pH and mass of sorbent to examine the influence on the effectiveness of simultaneous removal of tested ions. Kinetic studies were conducted at optimum pH 5.0 and sorbent dosage 300 mg. The pseudo-second-order kinetic model best fit the experimental data with high correlation coefficients (r2 > 0.9997). By optimizing listed parameters, high removal efficiencies (> 89%) were achieved. According to the results obtained in this study, the remediation of water polluted with heavy metals could be done using modified tangerine peel as an agricultural waste material.  相似文献   

13.
Reprocessing of spent nuclear fuel (SNF) for recovery of fissionable elements is a precondition of long-term development of nuclear energetics. Solution of this problem is hindered by the production of a great amount of liquid waste; 99% of its volume is low- and intermediate-level radioactive waste (LILW). The volume of high-level radioactive waste (HLW), which is characterized by high heat release, does not exceed a fraction of a percent. Solubility of glasses at an elevated temperature makes them unfit for immobilization of HLW, the insulation of which is ensured only by mineral-like matrices. At the same time, glasses are a perfect matrix for LILW, which are distinguished by low heat release. The solubility of borosilicate glass at a low temperature is so low that even a glass with relatively low resistance enables them to retain safety of under-ground LILW depositories without additional engineering barriers. The optimal technology of liquid confinement is their concentration and immobilization in borosilicate glasses, which are disposed in shallow-seated geological repositories. The vitrification of 1 m3 liquid LILW with a salt concentration of ~300 kg/m3 leaves behind only 0.2 m3 waste, that is, 4–6 times less than by bitumen impregnation and 10 times less than by cementation. Environmental and economic advantages of LILW vitrification result from (1) low solubility of the vitrified LILW in natural water; (2) significant reduction of LILW volume; (3) possibility to dispose the vitrified waste without additional engineering barriers under shallow conditions and in diverse geological media; (4) the strength of glass makes its transportation and storage possible; and finally (5) reliable longterm safety of repositories. When the composition of the glass matrix for LILW is being chosen, attention should be paid to the factors that ensure high technological and economic efficiency of vitrification. The study of vitrified LILW from the Kursk nuclear power plant with high-power channel reactors (HPCR; equivalent Russian acronym, RBMK) and the Kalinin nuclear power plant with pressurized water reactors (PWR; equivalent Russian acronym VVER) after their 14-yr storage in the shallow-seated repository at the MosNPO Radon testing ground has confirmed the safety of repositories ensured by confinement properties of borosilicate matrix. The most efficient vitrification technology is based on cold crucible induction melting. If the content of a chemical element in waste exceeds its solubility in glass, a crystalline phase is formed in the course of vitrification, so that the glass ceramics become a matrix for such waste. Vitrified waste with high Fe; Na and Al; Na, Fe, and Al; Na and B is characterized. The composition of frit and its proportion to waste depends on waste composition. This procedure requires careful laboratory testing.  相似文献   

14.
The experiment included ten soil columns and field investigation in 1-2 year duration. Data on the columns continuously flooded with waste water indicated that when total input of NH_4-N reached to above 70% of the NH_4-N adsorption capacity in soil the breakthrough would appear in the output . Adequate removal of nitrogen from the waste water would require at least 170 cm deep groundwater table . Fine textured soil would promote denitrification . The columns simulating discontinuous waste water irrigation indicated that denitrification existed only in the partial microenviroument of reduction . Groundwater table depth had no strong influence on nitrogen removal . The investigation in field revealed that the groundwater recharged with waste water was not polluted by nitrogen when the aeration profile was in finer textures owing to the combined contribution of nitrification and denitrification.  相似文献   

15.
某核废物填埋区土壤对Sr吸附的动态模拟实验研究   总被引:1,自引:0,他引:1  
目前,我国处理极低放废物采用的是就近地质填埋的方法,通过选择合适的吸附材料及添加剂,建立人工屏障,以最大限度地阻滞核素进入与人类生活有关的自然环境中。这里通过研究某地土壤对Sr的吸附,做了动态模拟试验,建立了动态模型,进行不同高度柱体的对比实验。经实验表明:填埋区土壤TY29+1%人造沸石作为填埋场屏障材料,可营造“碱性~还原”氛围,对阻滞Sr迁移非常有效。不同高度柱体对比实验表明:当柱高度之比为1:2:3,C/C0=0.5时,其累计输出的流量之比为1:1.96:2.16,平均渗透系数分别为:0.62、0.52、0.54。由此可见,随高度增加,吸附性能呈增高的趋势,且柱体渗透性降低。在柱体吸附一段时间后,三个柱的吸附能力都出现了减小的突越,这与在吸附过程中前期为物理吸附进行的较快,后期为化学吸附进行的较慢有关。  相似文献   

16.
A novel biosorbent synthesized from Ficus racemosa leaves based on the treatment using NaOH was applied for removal of Acid Blue 25 from aqueous solution. The synthesized biosorbent was characterized using scanning electron microscopy, Fourier transform infrared spectroscopy and Brunauer–Emmett–Teller analysis. NaOH treatment was demonstrated to remove lignin content from the biomass and to induce the development of significant pores. Batch experiments were performed to evaluate the effect of important operating parameters such as pH (range of 2–10), biosorbent dose (range of 1–10 g/L), contact time (range of 0–5 h), initial dye concentration (range of 50–400 mg/L) and temperature (range of 293–323 K) on the extent of removal of Acid Blue 25. The established optimum conditions were pH of 2, biosorbent dose of 4 g/L, contact time of 3 h and temperature of 323 K, yielding maximum removal of dye. Pseudo-second-order model was found to best fit the kinetic data. Langmuir and Temkin isotherm models were found to best fit the equilibrium data. The obtained thermodynamic parameters confirmed endothermic and spontaneous nature of adsorption. The study established the utility of novel biosorbent for removal of Acid Blue 25 with higher adsorption capacities (83.33 mg/g) as compared to the more commonly used adsorbents. Desorption-adsorption  studies conducted for seven cycles indicated potential reusability of synthesized biosorbent for the treatment of dye effluents.  相似文献   

17.
Hexavalent chromium has been proved to be the reason of several health hazards. This study aimed at evaluating the application of pomegranate seeds powder for chromium adsorption (VI) from aqueous solution. Chromium adsorption percentage (VI) increased with increasing the adsorbent dosage. Chromium adsorption capacity (VI), at pH = 2 and 10 mg/L initial metal concentration, decreased from 3.313 to 1.6 mg/g through increasing dosage of adsorbent from 0.2 to 0.6 g/100 ml. The adsorption rate increased through increase in chromium initial concentration (VI). However, there was a removal percentage reduction of chromium (VI). Chromium adsorption kinetics by different models (pseudo-first-order, modified pseudo-first-order, pseudo-second-order, Elovich, intraparticle diffusion, Boyd kinetic) was investigated as well. Studies on adsorption kinetic indicated that the experimental data were matched by pseudo-second-order model (R 2 = 0.999) better. Obtained results demonstrated the pomegranate seeds can be used as an effective biomaterial and biosorbent for hexavalent chromium adsorption from aqueous solutions.  相似文献   

18.
Arsenic is a ubiquitous element in the environment and occurs naturally in both organic and inorganic forms. Under aerobic condition, the dominant form of arsenic in waters is arsenate, which is highly mobile and toxic. Arsenic poisoning from drinking water remains a serious world health issue. There are various standard methods for arsenic removal from drinking waters (coagulation, sorption, ion-exchange reactions or methods of reverse osmosis) and alternative methods, such as biosorption. Biosorption of arsenic from natural and model waters by native or chemically modified (with urea or ferric oxyhydroxides) plant biomass prepared from sawdust of Picea abies was studied. The kinetic of the adsorption process fitted well the pseudo second order adsorption model and equilibrium was achieved after 2 h. The results showed that biosorption was well described by both Langmuir and Freundlich isotherms. The maximum biosorption capacity of the sawdust modified with ferric oxyhydroxides, evaluated by Langmuir adsorption model, was 9.259 mg/g, while the biosorption capacity of unmodified biosorbent or biosorbent modified with urea was negligible. The adsorption capacity is comparable to results published by other authors, suggesting that the prepared chemically modified biosorbent has potential in remediation of contaminated waters.  相似文献   

19.
包气带黏性土层对氮素污染地下水的防污性能试验研究   总被引:1,自引:0,他引:1  
董佩  李阳  孙颖  谢振华  刘颖超 《现代地质》2016,30(3):688-694
包气带土层是保护地下水的天然屏障,在阻控、拦截氮素污染源的过程中起到了重要作用。通过对北京市典型地区包气带土体进行定水位入渗的土柱淋溶试验,研究土体对于氮素的去除能力和包气带的截污容量。试验中采用了蒸馏水、再生水和河水3种不同的水源。试验结果显示,张家湾包气带土层对氮素污染地下水具有较强的截留和防护能力。对氮素的去除过程具有分段性特征,经历了较稳定和波动下降两个不同的阶段,其中稳定阶段是计算柱体去除能力的关键,提出了考虑滞后区间的时段去除率计算公式。水源对柱体的渗流速度及初期的吸附解析效应有明显影响。土体对氮素的去除作用受环境温度变化的影响,温度15 ℃左右时所达到的稳定阶段对氮素有极强的去除能力。  相似文献   

20.
为了研究高煤级煤储层含水性对吸附能力的影响,对阳泉-寿阳区块8件代表性煤样开展了镜质体反射率、显微组分、孔隙度、压汞、核磁共振和甲烷等温吸附等实验,分析了煤储层孔径分布、核磁共振T2谱响应特征、核磁孔隙度以及煤岩吸附能力,同时对煤储层含水性和煤储层吸附能力的相互关系进行了分析。研究结果表明:高煤级煤储层孔隙以微孔发育为主,孔隙含水性以微小孔中的束缚水赋存状态为主,且其含水量随最大镜质体反射率(Ro,m)的增大而增加。在影响高煤级煤储层吸附能力的多种因素中,煤储层含水性对煤岩吸附能力起着决定性的作用,尤其体现在微小孔中的束缚水对吸附能力的影响,束缚水含量越高,煤岩吸附能力越差。  相似文献   

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