首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 31 毫秒
1.
The brominated products, formed in chlorination treatment of benzophenone-4 in the presence of bromide ions, were identified, and the formation pathways were proposed.Under disinfection conditions, benzophenone-4 would undertake electrophilic substitution generating mono- or di-halogenated products, which would be oxidized to esters and further hydrolyzed to phenol derivatives. The generated catechol intermediate would be transformed into furan-like heterocyclic product. The product species were p H-dependent,while benzophenone-4 elimination was chlorine dose-dependent. When the chlorination treatment was performed on ambient water spiked with benzophenone-4 and bromide ions, most of brominated byproducts could be detected, and the acute toxicity significantly increased as well.  相似文献   

2.
Benzophenones (BPs) are a class of widely used UV filters, which have been frequently detected within multiple environmental matrices. Disinfection is a necessary process in water treatment processes. The transformation behaviors and toxicity changes of 14 BP-type UV filters during chlorination disinfection treatment were investigated in this study. A new index, the acute toxicity formation potential, was proposed to evaluate the toxicity changes and potential risks of BP-type UV filters during chlorination treatment. It was found that 13 of 14 BP-type UV filters exhibited toxicity decreases in the chlorination disinfection process, more or less, while one showed a toxicity increase. The toxicity changes were dependent on substitution effects, such that 2,4-di-hydroxylated or 3-hydroxylated BPs exhibited significant toxicity decreases after chlorination treatment due to the ready cleavage of the aromatic ring. Importantly, the acute toxicity changes could be duplicated in an ambient water matrix.  相似文献   

3.
Duloxetine (DUL), an antidepressant drug, has been detected in surface water and wastewater effluents, however, there is little information on the formation of its transformation products (TPs). In this work, hydrolysis, photodegradation (UV irradiation) and chlorination experiments were performed on spiked distillated water, under controlled experimental conditions to simulate abiotic processes that can occur in the environment and wastewater treatment plants (WWTPs). Eleven TPs, nine from reaction with UV light and two from chlorine contact, were formed and detected by ultra-high performance liquid chromatography coupled to quadrupole time-of-flight mass spectrometry, and nine of them had their chemical structures elucidated upon analyses of their fragmentation patterns in MS/MS spectra. The formation and degradation of the TPs were observed. The parent compound was completely degraded after 30?min in photodegradation and after 24?hr in chlorination. Almost all TPs were completely degraded in the experiments. The ecotoxicity and mutagenicity of the TPs were predicted based on several in silico models and it was found that a few of these products presented more ecotoxicity than DUL itself and six TPs showed positive mutagenicity. Finally, wastewater samples were analyzed and DUL and one TP, possibly formed by chlorination process, were detected in the effluent, which showed that WWTP not only did not remove DUL, but also formed a TP.  相似文献   

4.
UV/H2O2降解羟苯甲酮反应动力学及影响因素   总被引:1,自引:1,他引:1  
有机防晒剂随着日常使用不断进入环境中,成为一类新兴污染物.考察了UV/H2O2工艺对典型有机防晒剂羟苯甲酮(BP-3)的水相光化学降解特征,并对BP-3降解反应的影响因素包括初始BP-3浓度、H2O2浓度、UV光强、共存阳离子和阴离子、叔丁醇和腐殖酸投加量等进行了研究.结果表明,BP-3的降解速率常数随初始BP-3浓度升高而降低,随着H2O2浓度增大而增高,随着UV光强增强而增大;阴离子会在一定程度上降低反应速率,阳离子中Fe3+会产生类芬顿反应,促进生成·OH,对降解反应有显著的促进作用,投加叔丁醇和腐殖酸皆会抑制降解反应进行.采用每一对数减小级电能输入(EEo)指标对UV/H2O2工艺的电能利用效率进行了评价,Fe3+的加入显著减小了EEo.研究不同因素对UV/H2O2工艺降解效果的影响,可对实际工程中采用UV/H2O2去除苯甲酮类有机防晒剂提供参考.  相似文献   

5.
Algal blooms and wastewater effluents can introduce algal organic matter (AOM) and effluent organic matter (EfOM) into surface waters, respectively. In this study, the impact of bromide and iodide on the formation of halogenated disinfection byproducts (DBPs) during chlorination and chloramination from various types of dissolved organic matter (DOM, e.g., natural organic matter (NOM), AOM, and EfOM) were investigated based on the data collected from literature. In general, higher formation of trihalomethanes (THMs) and haloacetic acids (HAAs) was observed in NOM than AOM and EfOM, indicating high reactivities of phenolic moieties with both chlorine and monochloramine. The formation of haloacetaldehydes (HALs), haloacetonitriles (HANs) and haloacetamides (HAMs) was much lower than THMs and HAAs. Increasing initial bromide concentrations increased the formation of THMs, HAAs, HANs, and HAMs, but not HALs. Bromine substitution factor (BSF) values of DBPs formed in chlorination decreased as specific ultraviolet absorbance (SUVA) increased. AOM favored the formation of iodinated THMs (I-THMs) during chloramination using preformed chloramines and chlorination-chloramination processes. Increasing prechlorination time can reduce the I-THM concentrations because of the conversion of iodide to iodate, but this increased the formation of chlorinated and brominated DBPs. In an analogous way, iodine substitution factor (ISF) values of I-THMs formed in chloramination decreased as SUVA values of DOM increased. Compared to chlorination, the formation of noniodinated DBPs is low in chloramination.  相似文献   

6.
Recently, layered double hydroxide-peroxodisulfate (LDH-PDS) as an advanced oxidation system can effectively remove organics by the pathway of free radical. However, little has been known if there is a potential risk regarding the formation of high toxic iodine byproducts through another pathway when LDH-PDS is used in high iodide waters at coastal areas. Therefore, this study investigated phenol degradation pathways and transformation products to evaluate both removal mechanism and potential risk by LDH-PDS in high iodide waters. The results showed that in LDH-PDS system, with the degradation of PDS, phenol degraded till below detection limit in 1 hr in the presence of iodide, while PDS and phenol were hardly degraded in the absence of iodide, indicating iodide accelerated the transformation of PDS and the degradation of phenol. What is more, it reached the highest phenol removal efficiency under the condition of 100 mg/L LDH, 0.1 mmol/L PDS and 1.0 mmol/L iodide. In LDH-PDS system, iodide was rapidly oxidized by the highly active interlayer PDS, resulting in the formation of reactive iodine including hypoiodic acid, iodine and triiodide instead of free radicals, which contributed rapid degradation of phenol. However, unfortunately toxic iodophenols were detected. Specifically, 2-iodophenol and 4-iodophenol were formed firstly, afterwards 2,4-diiodophenol and 2,6-diiodophenol were produced, and finally iodophenols and diiodophenols gradually decreased and 2,4,6-Triiodophenol were produced. These results indicated that LDH-PDS should avoid to use in high iodide waters to prevent toxic iodine byproduct formation although iodide can accelerate phenol degradation.  相似文献   

7.
Seven popular fluoroquinolone antibiotics (FQs) in synthetic marine aquaculture water were subject to sodium hypochlorite (NaClO) disinfection scenario to investigate their reaction kinetics and transformation during chlorination. Reactivity of each FQ to NaClO was following the order of ofloxacin (OFL) > enrofloxacin (ENR) > lomefloxacin (LOM) > ciprofloxacin (CIP) ~ norfloxacin (NOR) >> pipemedic acid (PIP), while flumequine did not exhibit reactivity. The coexisting chlorine ions and sulfate ions in the water slightly facilitated the oxidation of FQs by NaClO, while humic acid was inhibitable to their degradation. The bromide ions promoted degradation of CIP and LOM, but restrained oxidation of OFL and ENR. By analysis of liquid chromatography with tandem mass spectrometry (LC-MS/MS), eight kinds of emerging brominated disinfection byproducts (Br-DBPs) caused by FQS were primarily identified in the chlorinated synthetic marine culture water. Through density functional theory calculation, the highest-occupied molecular orbital (HOMO) and the lowest-unoccupied molecular orbital (LUMO) characteristic as well as the charge distribution of the FQs were obtained to clarify transformation mechanisms. Their formation involved decarboxylation, ring-opening/closure, dealkylation and halogenation. Chlorine substitution occurred on the ortho-position of FQs's N4 and bromine substitution occurred on C8 position. The piperazine ring containing tertiary amine was comparatively stable, while this moiety with a secondary amine structure would break down during chlorination. Additionally, logKow and logBAF of transformation products were calculated by EPI-SuiteTM to analyze their bioaccumulation. The values indicated that Br-DBPs are easier to accumulate in the aquatic organism relative to their chloro-analogues and parent compounds.  相似文献   

8.
为优化全氟辛烷磺酸(PFOS)的紫外光降解条件及探明其降解机理,研究了PFOS在暗反应(Dark)、暗反应/碘化钾体系(Dark/KI)、紫外(UV)、紫外/碘化钾体系(UV/KI)、真空紫外(VUV)及真空紫外/碘化钾体系(VUV/KI)6种反应条件下的降解效果;在VUV/KI体系下,以单因素分析法研究了PFOS初始浓度、pH、KI添加量对PFOS降解效果的影响;通过中间产物分析提出PFOS在紫外光下的降解机理与路径. 结果表明:①在Dark、Dark/KI体系下,PFOS均不会降解;在UV、UV/KI、VUV体系下,PFOS降解率均低于30%;在VUV/KI体系下,初始浓度为200 μg/L、KI添加量为2 mmol/L,PFOS的8 h降解率可达70%. ②降低PFOS的初始浓度、提高pH、增加KI添加量均有助于PFOS的降解. ③轨道阱液质联用仪共鉴定出全氟辛酸(PFOA)、全氟丁酸(PFBA)、五氟乙烷磺酸(PFEtS)、五氟丙酸甲酯(MPFA)、三氟乙酸甲酯(MTFA)和三氟乙酸(TFA)等6种中间产物,PFOS的降解过程包括脱磺酸基团以及脱碳碳键反应. 研究显示,水合电子是PFOS紫外光降解过程中的主要活性因子,VUV/KI反应体系可有效去除PFOS,降解路径及降解机理的分析可为其他全氟化合物的紫外光降解提供参考.   相似文献   

9.
黄鑫  高乃云  赵建夫  朱志良 《环境科学》2007,28(11):2526-2532
研究了UV和氯联合作用下溴酸根离子(BrO-3)在低浓度含溴溶液中的生成,旨在探讨pH、次氯酸钠(NaOCl)浓度、溶解氧(DO)、光强和温度等因素对其生成的影响.研究表明,暗反应条件下H2O-NaOCl-Br-体系较稳定,而UV照射可使游离氯浓度持续降低,同时伴有部分Br-(6 .6%~32%)被氧化成BrO-3离子;pH、温度和光强恒定时余氯的分解可用拟一级反应速率方程拟合;实验条件下(I为610~1 896 μW/cm2,T为12 .2~36 .1℃),拟一级反应速率常数分别与体系温度和光强值有线性关系;BrO-3的生成大致可以分为快速、慢速和平缓3个阶段;在慢速生成阶段,BrO-3的生成量与余氯的分解量有良好的线性关系(绝大部分相关系数在0 .96以上);实验范围内(pH为4 .41~11 .07,DO为1 .5~9  mg/L,Cl2为1 .23~4 .50  mg/L),低pH、低DO和高初始NaOCl(以氯计)浓度有利于溴酸根的生成,提高温度与光强均不同程度提高溴酸根生成速度,但同时因加速余氯的分解而减少了溴酸根的总生成时间.  相似文献   

10.
采用NaClO、UV和UV/NaClO复合消毒等方式研究了三氯卡班(TCC)在消毒过程中的去除特性,考察了3种消毒方式中TCC溶液的遗传毒性变化,鉴定了TCC的降解产物并探讨了其降解机制,以UV/NaClO复合消毒为研究对象,考察了NaClO投加量、TCC初始浓度、溶液pH值和腐殖酸(HA)等因素对TCC去除的影响.结果表明,3种消毒技术对TCC的去除效果依次为UV/NaClO、UV、NaClO.消毒处理不同程度增加了TCC溶液的遗传毒性.LC-MS鉴定出了8种TCC的降解产物,降解途径主要为脱氯、加氯以及·OH/O·氧化.UV/NaClO复合消毒对TCC的去除率在97%以上;TCC的去除与其初始浓度呈负相关;TCC的去除率随pH值的增大先升高后降低;低浓度的腐殖酸(HA)对TCC的去除有促进作用,高浓度则相反.  相似文献   

11.
考察了再生水氯消毒过程中的氯消耗特性及水质特性的变化,发现加氯后5 min,氯消耗速率最大,同时254 nm的紫外吸光度和三维荧光强度的变化最为显著.发现再生水消毒后生物可同化有机碳(AOC)浓度显著增加,说明消毒后水质生物稳定性变差.AOC变化趋势呈现为先增长后降低的趋势,对于不同处理工艺再生水,二级出水的AOC水平普遍高于深度处理出水,但深度出水消毒5 min后AOC的增长率却高于二级出水消毒后的增长率.进一步研究发现,再生水水样消毒后的AOC变化量与三维荧光积分值变化量之间有一定的正相关关系.  相似文献   

12.
再生水紫外线-氯联合消毒工艺特性研究   总被引:2,自引:0,他引:2  
以二级出水作为消毒对象,比较了紫外线-氯联合消毒与单一紫外线消毒对水中肠道指示菌的灭活效果,考察了联合消毒工艺副产物(三卤甲烷)生成情况.结果表明,单一紫外线消毒对肠道指示菌的灭活曲线在剂量大于10mJ/cm2时存在拖尾现象,剂量为80mJ/cm2时对总大肠菌群最高对数灭活率约为2.5;而在紫外线剂量20mJ/cm2、氯投加量8mg/L(接触时间30min)条件下,紫外线-氯联合消毒对总大肠菌群的对数灭活率达到7.0.20mJ/cm2紫外线与8mg/L氯消毒组合及80mJ/cm2紫外线与3mg/L氯消毒组合均可有效灭活总大肠菌群浓度至3CFU/L以下.经紫外线照射后再氯消毒,二级出水中三卤甲烷生成量仅为10~55mg/L.80mJ/cm2紫外线照射再氯消毒后三卤甲烷生成量略高于20mJ/cm2紫外线照射再氯消毒的情形.紫外线消毒后投加氯消毒,可有效提高再生水消毒效果,控制消毒副产物生成量.  相似文献   

13.
Iodine containing disinfection by-products (I-DBPs) and haloacetaldehydes (HALs) are emerging disinfection by-product (DBP) classes of concern. The former due to its increased potential toxicity and the latter because it was found to be the third most relevant DBP class in mass in a U.S. nationwide drinking water study. These DBP classes have been scarcely investigated, and this work was performed to further explore their formation in drinking water under chlorination and chloramination scenarios. In order to do this, iodo-trihalomethanes (I-THMs), iodo-haloacetic acids (I-HAAs) and selected HALs (mono-HALs and di-HALs species, including iodoacetaldehyde) were investigated in DBP mixtures generated after chlorination and chloramination of different water matrices containing different levels of bromide and iodide in laboratory controlled reactions. Results confirmed the enhancement of I-DBP formation in the presence of monochloramine. While I-THMs and I-HAAs contributed almost equally to total I-DBP concentrations in chlorinated water, I-THMs contributed the most to total I-DBP levels in the case of chloraminated water. The most abundant and common I-THM species generated were bromochloroiodomethane, dichloroiodomethane, and chlorodiiodomethane. Iodoacetic acid and chloroiodoacetic acid contributed the most to the total I-HAA concentrations measured in the investigated disinfected water. As for the studied HALs, dihalogenated species were the compounds that predominantly formed under both investigated treatments.  相似文献   

14.
合肥市典型入湖河流有机紫外吸收剂污染特征及生态风险   总被引:1,自引:0,他引:1  
为了解合肥市注入巢湖的河流中有机紫外吸收剂污染情况,分析了入湖河流水和沉积物中12种有机紫外吸收剂的污染水平及其生态风险.结果表明,水中有机紫外吸收剂总含量为194~587 ng·L~(-1),均值为374 ng·L~(-1).二苯甲酮(BP)是最主要的有机紫外吸收剂类污染物,平均占紫外吸收剂总含量的50.7%.沉积物中有机紫外吸收剂总含量为9.39~178 ng·g-1,均值为50.5 ng·g-1,奥克立林(OC)、BP和2-(2'-羟基-5'-叔辛基苯基)苯并三唑(UV-329)为主要组成.污染来源分析表明,水和沉积物中有机紫外吸收剂主要来源于化妆品和工业品中使用的紫外线吸收剂的排放.基于评价因子法推导了预测无效应浓度(PNEC)值,利用风险商(RQ)法评价了11种有机紫外吸收剂的生态风险.水样中二苯甲酮-3(BP-3)对藻类存在中等风险,约半数的水样中胡莫柳酯(HMS)和OC对藻类也存在中等风险,50%的水样中4-甲氧基肉桂酸-2-乙基己酯(EHMC)对藻类存在低到中等风险,水样中水杨酸-2-乙基己基酯(EHS)对水生生物存在较低风险,BP对黑头呆鱼也存在较低风险,其它有机紫外吸收剂对水生生物基本不存在风险.沉积物中,BP-3、BP分别对藻类、黑头呆鱼存在较低风险;沉积物中9种log Kow5的有机紫外吸收剂均不存在潜在生态风险.  相似文献   

15.
对不同UV光氧化工艺降解水溶液中阿特拉津(ATZ)的动力学和机理,以及对后续氯化处理过程中溶液需氯量和消毒副产物生成势(DBPFP)的影响规律与机理进行了系统研究.结果表明,ATZ在不同UV光氧化工艺中的降解均符合准一级反应动力学.ATZ在单独UV辐照工艺中的去除效率相对较低;UV/H2O2工艺对ATZ具有相对较高的去除效率,且其去除率随H2O2浓度的增大呈现出先增加后降低的变化趋势;UV/TiO2工艺降解去除ATZ的效率较单独UV辐照和UV/H2O2工艺低,ATZ在UV/TiO2工艺中的降解与溶液透光率和氧化活性物种(ROS)生成量存在直接关系;UV/H2O2/TiO2工艺中,ATZ的降解速率较UV/TiO2工艺有所提高.ATZ水溶液经不同UV光氧化工艺预处理和氯化处理后,均检出了5种消毒副产物(DBPs),其中三氯甲烷(TCM)和三氯丙酮(TCP)为主要氯化DBPs.本研究表明,在不同UV光氧化预处理过程中,ATZ具有不同的降解路径,进而对ATZ水溶液在后续氯化过程中的DBPPF产生显著影响.  相似文献   

16.
纳米二氧化钛光催化转化甲基砷的研究   总被引:1,自引:1,他引:0  
二甲基胂酸(DMA)和一甲基胂酸(MMA)是环境中甲基砷的主要种类.由于农药滥用及含砷废水的释放等,严重危害人类健康.本文应用实验室人工合成纳米TiO2研究了甲基砷(DMA和MMA)光催化转化过程,考察了光照和pH对光催化转化过程的影响,通过测定液相及固相中的不同化学形态,解析光催化转化产物.结果表明:UV光照下,相比自然光时,纳米TiO2对DMA和MMA的去除率在不同pH条件下均有提高.pH值的影响为:在低pH条件(pH为3、5)下去除率高,而在高pH条件(pH为7、9)下去除率低,这主要是取决于纳米TiO2的等电点(pHpzc=5.8).转化产物解析结果表明:无光条件下,DMA和MMA均不发生转化;在自然光条件下,纳米TiO2催化少量DMA和MMA发生一步转化,分别形成MMA和As(V);在紫外光条件下,纳米TiO2能够催化几乎全部的DMA和MMA彻底转化,形成As(V).因此,在UV光下,纳米TiO2能够催化DMA和MMA转化为As(V),同时此纳米TiO2对As(V)有较强的吸附能力,所以,UV光照能够显著提高纳米TiO2对DMA和MMA的去除率.  相似文献   

17.
为了控制UV/Fentan方法中铁元素的用量,合理利用溶解态铁的催化反应过程并提高其降解效率,研究以难生物降解性染料罗丹明B为目标物,通过正交实验和单因素实验确定了UV/Fenton体系的最佳反应条件,并利用一元线性方程模拟了罗丹明B退色反应的的动力学方程.结果显示,当体系的最初pH为3.00,溶液中[Fe2+]=0.180 mmol·L-1、[H2O2]=124.022 mmol·L-1时,UV/Fenton氧化罗丹明B退色符合一级反应动力学方程.研究了总铁含量维持在0.180mmol·L-1、保持紫外光照射、4次向同一UV/Fenton体系中添加1.7mLH2O2,每次反应后Fe2+/Fe3+的循环转化规律和溶液的脱色效果.研究结果表明,每次反应结束阶段(30 min),Fe2+浓度均高于Fe3+浓度,残余液仍具有较强的催化能力,溶液的脱色率达到99.9%;退色反应速率常数始终维持在较高水平,最后一次循环反应结束后,反应速率常数达到0.2547,相对于初始反应速率常数只下降了17%左右.  相似文献   

18.
在饮用水处理过程中,高锰酸钾与铁锰氧化物预氧化作为化学预氧化的典型工艺,能有效去除饮用水中有机物的污染,并控制消毒副产物(DBPs)的产生.但研究发现,这两种预氧化都会生成具有遗传毒性效应的Mn2+.为解决该问题,研究构想在化学预氧化后耦合生物锰氧化技术,通过生物作用将Mn2+转化为具有较强氧化吸附能力的生物锰氧化物,从而对水质进一步净化.在以天然有机物酪氨酸(Tyr)和人工合成有机物2-羟基-4-甲氧基二苯甲酮-5-磺酸(BP-4)为基质的模拟污染源水中,试验结果验证了上述构想.高锰酸钾或铁锰氧化物预氧化能够去除Tyr,但无法去除BP-4,并会产生Mn2+;在以锰氧化细菌Pseudomonas sp.QJX-1构建的生物体系中,Pseudomonas sp.QJX-1能利用Tyr进行生长并产生锰氧化,生成的生物锰氧化物能有效去除BP-4;在最优试验条件下,特定强度的高锰酸钾预氧化耦合生物锰氧化试验中Tyr、BP-4及Mn2+去除率分别为100%、50%和98.9%.  相似文献   

19.
地下水中广泛存在的氯离子(Cl?)会在自由基作用下生成氯活性物质,进而与污染物反应可能引发新的环境风险. 为研究Cl?影响过硫酸盐(PS)高级氧化技术修复苯酚污染地下水的效果及机理,采用热活化PS氧化体系考察温度、PS浓度、初始pH及Cl?浓度对苯酚降解效果的影响,结合三维荧光平行因子分析(EEM-PARAFAC)查明苯酚降解过程中体系的光谱特征,借助气相色谱-质谱联用仪识别氯代有毒副产物的数量及种类,并揭示其降解机理. 结果表明:①反应温度的升高和PS浓度的增加均可促进苯酚的降解,且降解过程符合伪一级动力学模型. ②Cl?的存在会加速热活化PS对苯酚的降解,其降解效率随Cl?浓度的增加而提高,当Cl?浓度为10、25和50 mmol/L时,反应5 h后苯酚降解率为100%. ③苯酚降解过程中反应体系的荧光特征可分为4种荧光组分(C1、C2、C3和C4),Cl?存在时,C1和C2组分的荧光强度降幅更大,C3和C4组分主要为苯酚降解产物的光谱特征,其中C3组分的荧光强度随反应时间延长呈先增强后降低趋势. ④根据质谱测试结果,推断出Cl?存在时苯酚降解的可能机理,主要包括羟基化/氧化和氯化作用,其中生成的氯代有毒副产物包括2-氯苯酚、4-氯苯酚、2,4-二氯苯酚、氯氢醌、3,5-二氯儿茶酚、2,3-二氯-2-甲基丁烷和2-氯-4-甲基-2-戊醇. 研究显示,Cl?会提升热活化PS对苯酚污染地下水的修复效率,但也会因氯化作用生成氯代有毒副产物.   相似文献   

20.
针对环境水体中药物及个人护理用品(PPCPs)的污染问题,选择在环境水体中存在的有机紫外防晒剂二苯甲酮-3(BP-3)作为典型污染物,以颗粒活性炭(GAC)、粉末活性炭(PAC)和碳纳米管(CNT)作为吸附剂,考察吸附剂对BP-3的吸附性能、吸附特性和吸附热力学.结果表明:吸附性碳材料对BP-3具有良好的吸附性能,3种碳材料的最大吸附容量排列为:PACGACCNT,其中,PAC的单层最大吸附容量为450.36mg·g-1.Freundlich、Redlich-Peterson和Temkin吸附等温线方程能够较好地拟合吸附数据,Langmuir吸附等温线方程对PAC的吸附拟合效果较好,而对粒径较大的吸附剂(GAC、CNT)的拟合效果不理想.PAC、GAC的吸附过程可以采用一级动力学或者二级动力学模型拟合,而CNT适合采用一级动力学模型来描述.吸附热力学分析表明,PAC、GAC和CNT对BP-3的吸附过程都是自发进行的,其中,PAC和GAC的吸附过程是吸热的,升高温度有利于吸附反应的进行;而CNT的吸附过程是放热的.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号