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1.
以稻草秸秆作为固相反硝化的碳源和载体,采用自行设计的有机玻璃反应柱研究固相反硝化对地下水中硝酸盐和阿特拉津同时去除的效果。结果表明,当硝酸盐初始浓度分别为50,100 mg/L时,出水硝酸盐浓度在5 d内均达到较高去除率。当硝酸盐的初始浓度提高至150 mg/L时,硝酸盐去除率降低至82.3%。系统反硝化作用稳定,且表现出了一定的耐冲击负荷能力。研究还发现,随着阿特拉津浓度的提升(1,5,10 mg/L),去除率由80%下降至30%。试验结果表明高浓度的阿特拉津更容易达到稻草秸秆的饱和吸附量,产生较多无法被吸附的阿特拉津剩余量。相较于硝酸盐,阿特拉津更容易受到水力停留时间变化的影响,硝酸盐去除率在试验中一直维持在80%以上。阿特拉津去除率随水力停留时间的延长而增加,在HRT为8 h时,稻草秸秆对阿特拉津达到吸附饱和,最大去除率为78.64%。试验表明,适宜的HRT对阿特拉津和硝酸盐的同时去除起着关键作用。  相似文献   

2.
以异狄氏剂、狄氏剂和p,p'-滴滴涕3种持久性有机氯农药为研究对象,通过室内模拟实验,验证了三油酸甘油脂-醋酸纤维素复合膜(TECAM)富集水中自由溶解态疏水性有机物的假设,研究了水中溶解性有机碳对TECAM富集3种有机氯农药的影响,并与相同暴露条件下日本青鳉鱼的富集结果进行了比较.结果表明,TECAM只富集水中自由溶解形态的疏水性有机物;水中存在的溶解性有机碳会降低3种有机氯农药被TECAM和青鳉富集的可利用性;TECAM和青鳉的富集结果有很好的可比性.因此,TECAM能够用来预测疏水性有机污染物在不同溶解性有机碳含量的水中被鱼体富集的生物有效性.  相似文献   

3.
仿生脂肪细胞制备以及对水体中林丹去除的研究   总被引:1,自引:0,他引:1  
利用生物体脂肪组织可以对脂溶性有机物有效富集的原理,通过界面聚合合成了类似脂肪细胞结构的仿生脂肪细胞,并对其结构进行了初步表征.仿生脂肪细胞具有亲水性膜以及亲脂性的内部结构,亲水性的膜允许携带脂溶性有机物的水体穿过膜,亲脂性的内含物将脂溶性有机物富集截留.仿生脂肪细胞对林丹具有较好的去除效果,15%三油酸甘油酯含量的仿生脂肪细胞与粉末活性炭具有相当的林丹去除能力.仿生脂肪细胞对林丹的去除机理包括内含物的生物富集以及膜上空腔的物理吸附两部分,而内含物的生物富集作用则是主要作用方式.  相似文献   

4.
粉末活性炭预处理对超滤膜通量的影响   总被引:10,自引:1,他引:10  
董秉直  张庆元  冯晶 《环境科学学报》2008,28(10):1981-1987
研究了粉末活性炭预处理对改善超滤膜过滤通量的效果.试验采用了4种具有不同亲疏水性的水样,着重探讨粉末活性炭对有机物的疏水性和亲水性组分的去除效果以及所带来的通量改善.试验结果表明,对于4种水样,超滤膜直接过滤原水时,通量下降严重.虽然粉末活性炭预处理能在一定程度上提高通量,但通量下降的趋势仍未改善.对有机物各组分的分析表明,直接过滤原水时,膜主要截留疏水性有机物;粉末炭吸附主要去除亲水性有机物,而超滤膜过滤粉末炭处理水时,主要截留疏水性有机物.由此,超滤膜的通量下降主要是由疏水性有机物引起的,亲水性组分对通量的影响较小.  相似文献   

5.
战晓  高宝玉  刘斌  许春华  岳钦艳 《环境科学》2010,31(5):1198-1205
选用2种无机高分子混凝剂聚合氯化铁(PFC)和聚合氯化铝(PAC)处理黄河水,考察了混凝剂的投加量对浊度、UV254、DOC和高锰酸盐指数的去除效果,并结合混凝出水的Zeta电位分析其混凝机制.选择粉末活性炭与混凝联用,研究了混凝剂和吸附剂投加量以及二者的投加顺序对有机物去除效果的影响,并对混凝吸附后出水进行加氯消毒,考察水中残余氯随时间的变化.结果表明,2种混凝剂均有较高的浊度去除率(﹥90%).PAC对UV254、高锰酸盐指数和DOC的去除率分别为29.2%、26.1%和27.9%;PFC对三者的去除率分别为32.3%、23.3%和32.9%.PAC在混凝过程中,电中和作用占主导地位;PFC在混凝过程中,吸附架桥和电中和同时发挥作用.混凝-吸附联用处理黄河水样时,有机物的去除率随混凝剂和吸附剂投加量的增加而升高.先混凝后吸附工艺对UV254和DOC的去除效果优于先吸附后混凝工艺.先使用PAC混凝后吸附对UV254和DOC的去除率分别为95.2%和99.9%;对于PFC,先混凝后吸附对UV254和DOC的去除率分别为90.1%和99.9%.但是先投加粉末活性炭能提高矾花的沉降性能,且处理出水在保持持续消毒效果方面优于前者.  相似文献   

6.
我国农药阿特拉津的污染十分严重,对生态系统造成了非常不利的影响. 为了实现对水环境中阿特拉津的高效去除和吸附剂的重复利用,该研究通过溶液浸渍和高温煅烧技术将金属锆负载到活性炭上,制备出功能化材料Zr@AC,使用扫描电镜(SEM)、X射线衍射仪(XRD)、傅里叶变换红外吸收光谱仪(FTIR)和比表面及孔径分析仪(BET)对材料的形貌和组成进行了表征,并考察了Zr@AC对水中阿特拉津的去除效果. 结果表明:①当浸渍液锆离子的质量分数为7.0%、浸渍时间为9.0 h、煅烧温度为500 ℃和煅烧时间为5.0 h时,制备的Zr@AC具有较大的比表面积、较多的中孔和微孔以及丰富的活性位点. ②对阿特拉津的去除研究表明,当溶液pH为4.0、温度为25 ℃、Zr@AC投加量为60.0 mg/L时,经过90 min的反应,Zr@AC对阿特拉津的吸附容量最大,达到93.8 mg/g. ③动力学模拟研究表明,该吸附过程遵循拟二级动力学模型,且Freundlich等温吸附模型的拟合结果要优于Langmuir等温吸附模型,说明Zr@AC对阿特拉津的吸附存在化学吸附和多分子层吸附的双重作用. ④经过5次重复试验后,Zr@AC对阿特拉津的去除率仍有83.9%. 研究显示,Zr@AC可作为水中去除阿特拉津的吸附剂,是一种很有前途、可重复多次使用的材料.   相似文献   

7.
醋酸纤维素吸附剂的制备及其性能表征   总被引:9,自引:0,他引:9  
研究开发了1种球形醋酸纤维素吸附剂,对其制备方法、形态结构及其对水中4种有机氯农药的吸附性能进行了研究.扫描电镜结果表明,所制备醋酸纤维素吸附剂的外表面是一层致密的醋酸纤维素膜,内部为网状结构;对水中狄氏剂、艾氏剂、异狄氏剂、七氯4种有机氯农药有较强的吸附能力,12h后去除率均达到85%以上;并且对正辛醇-水分配系数(lgKow)较大的有机物具有更快的吸附速度,对七氯、艾氏剂的去除率在0·5h后可达99%.说明该吸附剂对水中亲脂性的有机物具有较高的吸附效能.  相似文献   

8.
董秉直  高昊旸  胡孟柳 《环境科学》2018,39(6):2732-2739
研究臭氧、粉末炭以及它们的组合作为超滤膜的预处理,控制膜污染以及去除有机物的效果和机制.结果表明,臭氧主要氧化强疏组分的大分子有机物,将其转化为中分子和亲水性的小分子.臭氧可有效控制膜污染,表明大分子的疏水有机物是主要的污染因素.粉末炭可吸附小分子有机物,也可缓解膜污染,说明小分子有机物也对膜污染有所贡献.臭氧与粉末炭的组合不仅有效控制膜污染,还可强化有机物的去除,它们之间存在协同作用.  相似文献   

9.
采用含苯酚的试验水样模拟城市取水水源发生苯酚水污染事故,测定粉末活性炭(PAC)对水样中苯酚的吸附性能,考察PAC炭种、吸附时间、苯酚初始浓度和PAC投加量等因素对苯酚的吸附量和脱除率的影响。试验结果表明:应急处理一般的苯酚水污染事故,PAC吸附苯酚的最佳条件为:吸附时间60 min,PAC投加量为80~100 mg.L-1;PAC对苯酚的吸附过程符合Langmuir等温式。  相似文献   

10.
疏水性分子筛对焦化废水生物处理尾水的吸附过程解析   总被引:1,自引:1,他引:1  
采用表面活性剂为模板剂常温一步合成疏水性介孔分子筛(MCM-41-dry)和通过煅烧去除模板剂得到亲水性介孔材料(MCM-41-cal).分别以制备的两种分子筛作为吸附剂吸附焦化废水生物出水中COD和TOC组分,考察吸附剂浓度、pH值等对吸附过程的影响,并对吸附过程进行动力学拟合.结果表明,MCM-41-dry的吸附效果远远强于MCM-41-cal,归因于含有模板剂的材料表面具有较强的疏水性及含有高吸附容量的季铵基团.在25℃、吸附剂浓度为2g·L-1时,MCM-41-dry对焦化废水中COD和TOC的去除率分别达53%和66%,吸附量分别为64mg·g-1和17mg·g-1.拟二级动力学模型能够真实反映整个吸附过程.水样吸附前后的GC/MS数据表明,焦化废水生物出水中残留了长链烷烃、卤代物、多环芳烃等难降解有机物,经MCM-41-dry吸附后,各种物质浓度均得到降低,MCM-41-dry尤其对疏水性烷烃类有较好的吸附效果,表明该吸附剂能够优先吸附疏水性物质.此外,吸附剂对水具有一定的润湿性能,能与废水充分接触,从而利于其吸附水中的污染物,这使其用于实际废水的处理成为可能.  相似文献   

11.
利用超滤实验以及6种粉末活性炭吸附东江水有机物的水质数据,通过三维荧光光谱-平行因子分析(EEMPARAFAC),考察东江水中造成不可逆膜污染的主要组分和活性炭吸附这些组分的效果;随后进行活性炭对不可逆膜污染组分吸附效果与对应活性炭孔结构参数的相关性分析,揭示活性炭的表面物理性质对不可逆膜污染物吸附的影响.EEMPARAFAC模型识别出东江水含有2个类腐殖质荧光组分C1和C3,以及1个类蛋白质(类色氨酸)荧光组分C2,其中C2为主要不可逆膜污染物.同时,所有活性炭对3种荧光组分均有较好的吸附效果,其中对主要膜污染物C2的去除率可达54.0%~74.6%.相关性分析发现,活性炭对主要膜污染荧光组分C2吸附效果受活性炭微孔表面积的影响,而活性炭对两种次要膜污染荧光组分C1和C3吸附效果受活性炭中大孔表面积和BET比表面积影响.实验结果可为活性炭-超滤工艺处理东江水的活性炭选型提供技术指导.  相似文献   

12.
Adsorption of the hydrophobic organic compounds (HOCs) trichloroethylene (TCE), 1,3-dichlorobenzene (DCB), 1,3-dinitrobenzene (DNB) and γ-hexachlorocyclohexane (HCH) on five different carbonaceous materials was compared. The adsorbents included three polymer-based activated carbons, one coal-based activated carbon (F400) and multiwalled carbon nanotubes (MWNT). The polymerbased activated carbons were prepared using KOH activation from waste polymers: polyvinyl chloride (PVC), polyethyleneterephthalate (PET) and tire rubber (TR). Compared with F400 and MWNT, activated carbons derived from PVC and PET exhibited fast adsorption kinetics and high adsorption capacity toward the HOCs, attributed to their extremely large hydrophobic surface area (2700 m2/g) and highly mesoporous structures. Adsorption of small-sized TCE was stronger on the tire-rubber-based carbon and F400 resulting from the pore-filling effect. In contrast, due to the molecular sieving effect, their adsorption on HCH was lower. MWNT exhibited the lowest adsorption capacity toward HOCs because of its low surface area and characteristic of aggregating in aqueous solution.  相似文献   

13.
As an effective conventional absorbent, biochar exhibited limited adsorption ability toward small hydrophobic molecules. To enhance the adsorption capacity, a novel adsorbent was prepared by immobilizing nanoscale zero-valent iron onto modified biochar (MB) and then the elemental silver was attached to the surface of iron (Ag/Fe/MB). It''s noted that spherical Ag/Fe nanoparticles with diameter of 51 nm were highly dispersed on the surface of MB. As the typical hydrophobic contaminant, carbon tetrachloride was selected for examining the removal efficiency of the adsorbent. The removal efficiencies of carbon tetrachloride by original biochar (OB), Ag/Fe, Ag/Fe/OB and Ag/Fe/MB were fully investigated. It''s found that Ag/Fe/MB showed higher carbon tetrachloride removal efficiency, which is about 5.5 times higher than that of the OB sample due to utilizing the merits of high adsorption and reduction. Thermodynamic parameters revealed that the removal of carbon tetrachloride by Ag/Fe/MB was a spontaneous and exothermic process, which was affected by solution pH, initial carbon tetrachloride concentration and temperature. The novel Ag/Fe/MB composites provided a promising material for carbon tetrachloride removal from effluent.  相似文献   

14.
A chemically prepared carbon was synthesized from date palm leaflets via sulphuric acid carbonization at 160℃. Adsorption of ciprofloxacin (CIP) from aqueous solution was investigated in terms of time, pH, concentration, temperature and adsorbent status (wet and dry). The equilibrium time was found to be 48 hr. The adsorption rate was enhanced by raising the temperature for both adsorbents, with adsorption data fitting a pseudo second-order model well. The activation energy, Ea, was found to be 17 kJ/mol, indicating a diffusion-controlled, physical adsorption process. The maximum adsorption was found at initial pH 6. The wet adsorbent showed faster removal with higher uptake than the dry adsorbent, with increased performance as temperature increased (25-45℃). The equilibrium data were found to fit the Langmuir model better than the Freundlich model. The thermodynamic parameters showed that the adsorption process is spontaneous and endothermic. The adsorption mechanism is mainly related to cation exchange and hydrogen bonding.  相似文献   

15.
A high-surface-area carbon (KC-1) was prepared from waste polystyrene-based ion exchange resin by KOH activation and used for naphthalene adsorption. The carbon exhibited a good hydrophobic nature with developed porous structure, favoring the adsorption of organic compounds. The Brunauer-Emmett-Teller surface area and total pore volume of KC-1 were 3442.2 and 1.68 cm 3 /g, respectively, which can be compared with those of KOH-activated carbons prepared from other precursors. Batch experiments were carried out to investigate the adsorption of naphthalene onto KC-1. The equilibrium data were analyzed by the Langmuir, Freundlich, and Polanyi- Manes isotherms and agreed with the Polanyi-Manes Model. The adsorption of naphthalene depended greatly on the porosity of the carbon, and the dispersive interactions between naphthalene and carbon could be relatively weak. The pH variation in aqueous solution had little effect on the adsorption process. The equilibrium time for 0.04 g/L of carbon dose was around 5 hr. Different models were used to evaluate the kinetic data and the pseudo second-order model was suitable to describe the kinetic process of naphthalene adsorption onto KC-1. Regeneration of spent carbon could be carried out effectively by alcohol treatment. The results indicated that KC-1 was a promising adsorbent for the removal of polycyclic aromatic hydrocarbons from aqueous solutions.  相似文献   

16.
Bisphenol A (BPA) is of global concern due to its disruption of endocrine systems and ubiquity in the aquatic environment. It is important, therefore, that e orts are made to remove it from the aqueous phase. A novel adsorbent, mesoporous carbon CMK-3, prepared from hexagonal SBA-15 mesoporous silica was studied for BPA removal from aqueous phase, and compared with conventional powdered activated carbon (PAC). Characterization of CMK-3 by transmission electron microscopy (TEM), X-ray di raction, and nitrogen adsorption indicated that prepared CMK-3 had an ordered mesoporous structure with a high specific surface area of 920 m2/g and a pore-size of about 4.9 nm. The adsorption of BPA on CMK-3 followed a pseudo second-order kinetic model. The kinetic constant was 0.00049 g/(mg min), much higher than the adsorption of BPA on PAC. The adsorption isotherm fitted slightly better with the Freundlich model than the Langmuir model, and adsorption capacity decreased as temperature increased from 10 to 40°C. No significant influence of pH on adsorption was observed at pH 3 to 9; however, adsorption capacity decreased dramatically from pH 9 to 13.  相似文献   

17.
苗雨  翟洪艳  于珊珊  张婧  史常香 《环境科学》2017,38(9):3738-3746
本文研究了粉末活性炭(powder activated carbon,PAC)吸附对藻类有机质(algal organic matter,AOM)及其典型含氮和非含氮消毒副产物(disinfection by-products,DBPs)的去除效能.结果表明,AOM主要含有一些小分子量、亲水性、低芳香度的有机质,三维荧光光谱证实,PAC吸附改变了AOM的组成,明显降低了类腐殖质物质含量,但对芳香蛋白类物质去除能力有限.PAC投加量为20 mg·L~(-1),吸附时间10~30 min时,对于3.30 mg·L~(-1)的胞内有机质(intracellular organic matter,IOM)和胞外有机质(extracellular organic matter,EOM)溶液,溶解性有机碳去除率分别为20.7%~31.9%和12.6%~19.0%.PAC对IOM和EOM中卤代甲烷总生成量的最高去除率分别为26.6%和35.8%;卤代乙腈总生成量的最高去除率分别为49.6%和53.6%,其中二溴乙腈前体物的去除效果显著.PAC对EOM氯化生成的DBPs的控制作用较好.  相似文献   

18.
以粉末活性炭和硅藻土为涂膜材料,在聚醚砜超滤膜表面形成预涂动态膜,考察了预涂动态膜对海水中有机物的去除效果和作用机制,通过比较分析直接超滤和预涂动态膜过滤海水前后膜表面亲疏水性、形貌结构、粗糙度及膜阻力分布的变化,探讨了活性炭和硅藻土预涂覆对超滤膜污染的影响.结果表明,预涂动态膜可提高超滤膜对海水中溶解有机碳(DOC)和UV_(254)的去除率,活性炭预涂动态膜对海水中DOC和UV_(254)的去除率较直接超滤分别提高11.2%和11.3%.硅藻土预涂膜主要利用超滤膜表面形成的硅藻土滤饼层强化海水中蛋白质类有机物的截留,活性炭对海水中小分子有机物的额外吸附导致海水过滤过程中活性炭预涂膜对有机物的去除效果优于硅藻土预涂膜.与直接超滤相比,预涂动态膜过滤海水后膜表面亲水性更好,膜表面粗糙度更低,膜过滤阻力也更小,活性炭预涂动态膜净化海水时膜过滤总阻力较直接超滤降低50.3%.利用涂膜材料在超滤膜表面形成的滤饼层将超滤膜与有机物进行了"隔离",避免了超滤膜与有机污染物直接接触,降低了小分子有机物在膜孔内的吸附堵塞,能够有效减缓超滤膜的不可逆污染.  相似文献   

19.
以东海原甲藻分泌的藻类有机物(AOM)为研究对象,研究粉末活性炭预沉积和预吸附两种膜前预处理手段对海水中AOM的去除作用,对比分析AOM直接超滤、预沉积和预吸附后再超滤时膜通量、膜阻力分布、膜表面亲疏水性和粗糙度的变化,探讨粉末活性炭孔隙结构、沉积量对AOM去除效果及超滤膜污染的影响.结果表明,活性炭预沉积和预吸附能够提高超滤膜对含AOM海水中DOC和UV254的去除率,预沉积对AOM的去除作用优于预吸附,介孔活性炭较微孔活性炭的预沉积效果更好,当介孔活性炭PAC2的沉积量为0.4g/L时,DOC和UV254的去除率较直接超滤分别提高了25.1%和33.6%.紫外吸收比指数(URI)分析表明,活性炭预沉积和预吸附对有机物的去除作用具有选择性,AOM中芳香族物质较脂肪族羧基类物质更易被除去.粉末活性炭预沉积下AOM超滤时的滤饼层污染阻力(Rc)和膜孔堵塞阻力(Rp)较直接超滤分别降低了39.6%和81.2%,活性炭在超滤膜表面形成的滤饼层结构将AOM与超滤膜进行了隔离,能够减缓膜污染速率,对于控制膜的不可逆污染亦具有重要作用.  相似文献   

20.
A Zr-β-FeOOH adsorbent for both As(V) and As(III) removal was prepared by a chemical co-precipitation method.Compared with β-FeOOH,the addition of Zr enhanced the adsorption capacities for As(V) and As(III),especially As(III).The maximum adsorption capacities for As(III) and As(V) were 120 and 60mg/g respectively at pH 7.0,much higher than for many reported adsorbents.The adsorption data accorded with Freundlich isotherms.At neutral pH,for As(V),adsorption equilibrium was approached after 3 hr,while for As(III),adsorption equilibrium was approached after 5 hr.Kinetic data fitted well to the pseudo second-order reaction model.As(V) elimination was favored at acidic pH,whereas the adsorption of As(III) by Zr-β-FeOOH was found to be effective over a wide pH range of 4-10.Competitive anions hindered the adsorption according to the sequence:phosphate > silicate > bicarbonate > sulfate > nitrate,while Ca2+ and Mg2+ increased the removal of As(III) and As(V) slightly.The high adsorption capability and good performance in other aspects make Zr-β-FeOOH a potentially attractive adsorbent for the removal of both As(III) and As(V) from water.  相似文献   

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