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1.
敌敌畏在颗粒物上吸附的支配因素   总被引:1,自引:0,他引:1  
研究了敌敌畏在颗粒物(呼和浩特土壤和黄河水体沉积物)上的吸附行为,探讨了颗粒物性质如有机质含量、粘粒含量、阳离子交换量(CEC)、pH值和离子强度等因素对吸附的影响。结果表明:敌敌畏在2种颗粒物上的吸附过程均符合一级动力学规律,可用Freundlich等温式描述,吸附常数K为5.8220和11.7388;颗粒物性质与吸附常数的相关分析发现:支配敌敌畏在颗粒物上吸附的主要因素是有机质含量、pH值和离子强度,随着pH值的增加和离子强度的降低,敌敌畏在2种颗粒物上的吸附量增大。  相似文献   

2.
金沙江颗粒物对重金属的吸附   总被引:13,自引:0,他引:13  
本文研究金沙江颗粒物对Cu、Zn、Cd、Co和Ni离子的吸附作用。实验表明:江水pH值是控制金属离子向固相迁移的主要因素,颗粒物的吸附作用将使水中金属离子在较低pH值下向固相迁移,有利于江水自净。总吸附量随pH增高而增大。各元素均有一临界pH值,超过该值,离子的水解、沉淀则起主要作用。颗粒物粒度和浓度、几种金属离子共存对吸附均有响影。 颗粒物对钴离子吸附符合Freundlich等温式,初步认为以化学吸附为主。  相似文献   

3.
为探讨含水层介质对氯酚类污染物的吸附规律,以吉林市含水层介质--砂土为实验材料,采用批量吸附实验方法分别研究了2,4-二氯酚、2,4,6-三氯酚及五氯酚单独存在和共存条件下在砂土上的吸附-解吸行为,并对pH、离子强度对吸附过程的影响进行了探讨.结果表明,砂土对三种氯酚的吸附-解吸符合Freundlieh等温模型,吸附常数Kd分别为5.659、2.507和2.104,解吸常数分别为22.642、8.222和4.488;吸附反应符合二级吸附速率动力学方程,吸附速率常数K分别为0.4851 kg·mg-1·h-1、0.0299 kg·mg-1·h-1和0.1225 kg·mg-1·h-1.氯酚在砂土上的吸附机理以疏水分配和配位体交换为主.在实验范围值内,吸附量随pH增加而减小,增加离子强度可以明显加强氯酚在砂土上的吸附.  相似文献   

4.
研究蒙脱土、高岭土和针铁矿在不同pH值与离子强度的条件下对Sb(Ⅲ)的吸附及解吸行为.结果表明,随pH值的升高,Sb(Ⅲ)的吸附减弱,离子强度对Sb(Ⅲ)在三种矿物表面的吸附影响较弱,而矿物表面吸附的Sb(Ⅲ)不易解吸.三种矿物对Sb(Ⅲ)的吸附能力差别较大,蒙脱土的吸附量远大于针铁矿和高岭土,针铁矿的吸附量稍高于高岭土.  相似文献   

5.
长三角和珠三角农业土壤对Pb、Cu、Cd的吸附解吸特性   总被引:6,自引:0,他引:6  
研究了长江三角州和珠江三角州10种代表性农业土壤对重金属Pb、Cu和Cd的吸附与解吸特性。结果表明:大多数土壤对重金属有较强吸附能力,土壤性质对重金属吸附与解吸行为有很大影响。其中,pH值是影响土壤对重金属吸附与解吸的最重要因素,土壤重金属吸附量随pH值增加而增加。土壤pH值和有机质或粘粒含量较高的土壤(如乌栅土、青紫泥田、黄斑田),其对重金属吸附能力高于pH值和有机质或粘粒含量较低的土壤(如黄筋泥、粉泥田)。重金属解吸量随重金属吸附量和土壤重金属饱和度增加呈指数增加趋势;土壤对重金属的吸附能力从强至弱依次为Pb、Cu、Cd;当3种重金属共存时,重金属之间竞争能力强弱顺序与吸附能力顺序相同。重金属之间竞争作用随土壤酸度和重金属污染程度的增加而增强。  相似文献   

6.
农林废弃物基生物炭对重金属铅和镉的吸附特性   总被引:2,自引:0,他引:2  
以沙柳、水稻和玉米秸秆3种农林废弃物为原材料,于500℃条件下热解制备生物炭,并通过元素分析、比表面积分析仪、扫描电镜(SEM)和红外光谱(FTIR)等分析方法对所制备的生物炭进行表征。探究了溶液初始pH、干扰离子强度和初始吸附剂投加量等因素对3种生物炭吸附Pb~(2+)和Cd~(2+)作用的影响,讨论了吸附动力学特性及吸附等温特性。结果表明:不同生物质制备出的3种生物炭的碱性和灰分含量由高到低依次为沙柳秸秆生物炭(SWB)、玉米秸秆生物炭(CB)和水稻秸秆生物炭(SB),FTIR检测结果显示3种生物炭表面均含有大量含氧官能团;当溶液pH为3~6时,3种生物炭对Pb~(2+)和Cd~(2+)吸附量随pH值的增加而升高,对Pb~(2+)的吸附效果随着溶液中离子强度的增强而降低,而SWB对Cd~(2+)的吸附效果随离子强度的增加而增加;3种生物炭对Pb~(2+)和Cd~(2+)的吸附过程符合准二级动力学模型,R~2均大于0.99,表明生物炭吸附速率主要由化学吸附机制决定;SWB、SB和CB对Cd~(2+)的吸附过程既符合Langmuir模型,又符合Freundlich模型,而生物炭对Pb~(2+)的吸附过程更适合Langmuir等温模型,表明生物炭对Pb~(2+)的吸附近似单分子层吸附,而对Cd~(2+)的吸附存在多分子层吸附。  相似文献   

7.
采用静态批试验方法研究了凹凸棒石和海泡石对溶液中Cd~(2+)的吸附特性,并通过考察一定离子强度下,不同初始浓度、固液比、吸附时间和pH值对吸附镉的影响。结果显示:在0.01 mol·L~(-1)NaNO_3离子强度下,高品位海泡石、凹凸棒石和低品位凹凸棒石对溶液中Cd~(2+)的吸附量与初始浓度呈正比,与固液比呈反比;根据Langmuir等温吸附方程拟合结果,在给定离子强度25℃条件下黏土矿物Cd~(2+)的理论饱和吸附量从大到小依次为高品位凹凸棒石(33.67 mg·g~(-1))、高品位海泡石(25.55 mg·g~(-1))、低品位凹凸棒石(11.52 mg·g~(-1))和低品位海泡石(5.24mg·g~(-1));Cd~(2+)在海泡石、凹凸棒石上的吸附受pH值的影响较大,在pH值为2~4时吸附效果最好;凹凸棒石对Cd~(2+)的吸附较为稳定,在3 h时基本达到吸附平衡;在离子强度为0.01 mol·L~(-1)NaNO_3、Cd~(2+)初始浓度为625 mg·L~(-1)、黏土矿物添加量为15 g·L~(-1)和pH值为2~4时,去除效果从大到小依次为高品位海泡石、高品位凹凸棒石、低品位凹凸棒石和低品位海泡石。  相似文献   

8.
复合铁铝氢氧化物对As(Ⅴ)的吸附作用   总被引:2,自引:0,他引:2  
从吸附剂的组成、结构、表面性质、溶液的酸度及砷的存在形式等方面探讨了复合铁铝氢氧化物(Fe5Al2(OH)21.nH2O)对溶液中As(Ⅴ)的吸附.结果表明,该吸附剂具有微晶体的结构特征,孔径小,比表面积大,等电位点pH值为8.3;在pH为4-8的溶液中,对As(Ⅴ)的吸附能力很强,饱和吸附容量Qm分别为:0.7901(pH5),0.5981(pH7)和0.3033 (pH9)mol·kg-1, 常见共存离子不影响砷的吸附.Langmiur方程能很好地描述实验的吸附等温线.吸附态 As(Ⅴ)的解吸量随解吸剂pH值的升高而增大.  相似文献   

9.
磺胺嘧啶和磺胺噻唑在土壤中的吸附行为   总被引:16,自引:0,他引:16  
采用批平衡实验方法研究磺胺嘧啶(SDZ)和磺胺噻唑(STZ)在五种典型土壤及一种泥炭中的吸附行为.结果表明:(1)SDZ和STZ在土壤及泥炭中的吸附量随溶液pH值的升高而减小,与溶液中SDZ和STZ阳离子的含量呈正相关.(2)SDZ和STZ的吸附均可采用Freundlich和Langmuir模型进行拟合,最大吸附量(Qm)的大小依次为:泥炭土>黑土>棕壤≥灰褐土>红壤≥灰漠土.除红壤和灰漠土外,Freundlich吸附系数(K)的大小次序和(Qm)基本相同.SDZ和STZ的(Qm)与土壤有机质的含量和土壤粉粒的含量呈显著正相关.因此,SDZ和STZ更容易吸附在有机质的含量比较高的泥炭土和黑土中.  相似文献   

10.
小球藻吸附重金属离子的试验研究   总被引:38,自引:0,他引:38  
分析了影响小球藻吸附Cu2 ,Cd2 和Zn2 三种重金属离子的主要因素 ,并对不同金属离子之间的吸附抑制开展了初步试验研究 .结果显示 ,小球藻吸附重金属离子的速度快 ,吸附容量大 ,适宜的pH值在 3 0— 5 0之间 ,其吸附等温线与Freundlich方程拟合良好 .另外 ,小球藻对Cd2 的吸附性能明显高于其它离子 .由于电子云分布和轨道杂化等结构因素 ,三种金属离子在小球藻上的吸附选择顺序为 :Cu2 >Cd2 >Zn2 .  相似文献   

11.
药物和个人护理品简称(PPCPs)是一类具有潜在累积效果的环境污染物,其广泛分布于水体与土壤环境中.在土壤/沉积物中,PPCPs将发生一系列的物理、化学和生物作用,其中吸附是PPCPs在土壤/沉积物中极为关键的环境行为,将影响PPCPs在环境中的迁移转化及其对生物体的危害程度.重金属作为一类常见的无机污染物,它们的存在会影响PPCPs在土壤/沉积物表面的吸附行为,对土壤/沉积物吸附PPCPs的吸附效果造成不同影响.本文归纳总结了重金属存在时,PPCPs在土壤/沉积物中的吸附机理,综合探讨了PPCPs官能团组成、重金属离子类型、pH、离子强度和有机质等因素对PPCPs吸附的影响,并针对以往研究存在的问题进行了展望.  相似文献   

12.
The adsorption behavior of three anionic azo dyes (Acid Orange 6, Acid Orange 10 andAcid Orange 12) on different soil/sediment components (quartz sand, clay and organic matter) was investigated with a flow-through method using a simplified HPLC apparatus. Organic matter had the highest adsorption capacity for all three dyes, followed by clay and sand. The adsorption on different components in mixtures was not additive. The adsorption of similar aniomic azo dyes decreased with increasing negative charge. The affinity of equally charged dye molecules to the adsorbents was also strongly influenced by the remaining chemical structure. While adsorption on organic matter could always be described by Freundlich isotherms, S-shaped isotherms were often measured with quartz sand and clay. For that reason one must assume different adsorption mechanisms for organic matter and mineral adsorbens. Lower pH values always led to stronger adsorption of the anionic azo dyes. On the other hand, ionic strength effects cannot be characterized so clearly. Adsorption was generally lowered by decreasing ionic strengths but sometimes the opposite effect was observed. Moreover, there were some unusual cases of partly irreversible adsorption on quartz sand and organic matter when the dyes were not dissolved in an aqueous solution containing additional inorganic ions but in double distilled water. The adsorption of anionic azo dyes on soil and sediment materials turned out to be a very complex process. Although some interesting coherences could be pointed out, much more research is required to recognize general principles, concerning for example the influence of the chemical structure or the surrounding aqueous solution.  相似文献   

13.
阿特拉津在天然水体沉积物中的吸附行为   总被引:17,自引:3,他引:14  
陶庆会  汤鸿霄 《环境化学》2004,23(2):145-151
本文研究了阿特拉津在几种水体沉积物中的吸附、解吸规律,并进一步探讨了沉积物浓度、pH值和离子强度对其吸附行为的影响.结果表明,不同沉积物对阿特拉津的吸附程度由沉积物本身的总有机碳、粘土矿物、阳离子交换容量、比表面积以及铁锰氧化物等理化特性综合作用的结果,有机碳不是影响阿特拉津吸附的唯一重要因素.连续吸附实验结果指出,化合物的起始浓度愈大,吸附时间愈长,阿特拉津的最大吸附容量也愈大,且在解吸过程中表现出一定的滞后性(即不可逆吸附).沉积物浓度与其吸附量呈负相关;溶液的pH值增大,沉积物对阿特拉津吸附能力减弱;离子强度愈大,沉积物对阿特拉津吸附能力愈强.  相似文献   

14.
主要研究了pH、离子强度、腐殖酸和沉积物有机质对普萘洛尔在太湖沉积物上吸附行为的影响.结果表明,沉积物对普萘洛尔具有一定的吸附能力.在强酸环境下,由于H+与带正电荷的普萘洛尔之间的竞争作用使得普萘洛尔的吸附量较小,随着pH的增大,吸附量逐渐增大至基本稳定,但当pH>9时,吸附量明显下降.K+、Na+和Ca2+的存在会减少普萘洛尔在沉积物上的吸附.在pH 5.8—6.0的情况下,随着腐殖酸浓度的增加,普萘洛尔在沉积物上的吸附量逐渐增加,而后逐渐到达平台期.有机质对普萘洛尔在沉积物上的吸附起到一定作用,普萘洛尔在天然水体中更倾向于吸附到沉积物的无机矿物成分上.普萘洛尔在太湖沉积物上的吸附等温线符合Freundlich吸附模型,拟二级动力学方程能较好地描述普萘洛尔在太湖沉积物上的吸附过程.  相似文献   

15.
Antibiotics are used widely in human and veterinary medicine, and are ubiquitous in environment matrices worldwide. Due to their consumption, excretion, and persistence, antibiotics are disseminated mostly via direct and indirect emissions such as excrements, sewage irrigation, and sludge compost and enter the soil and impact negatively the natural ecosystem of soil. Most antibiotics are amphiphilic or amphoteric and ionize. A non-polar core combined with polar functional moieties makes up numerous antibiotic molecules. Because of various molecule structures, physicochemical properties vary widely among antibiotic compounds. Sorption is an important process for the environment behaviors and fate of antibiotics in soil environment. The adsorption process has decisive role for the environmental behaviors and the ultimate fates of antibiotics in soil. Multiply physicochemical properties of antibiotics induce the large variations of their adsorption behaviors. In addition, factors of soil environment such as the pH, ionic strength, metal ions, and organic matter content also strongly impact the adsorption processes of antibiotics. Review about adsorption of antibiotics on soil can provide a fresh insight into understanding the antibiotic-soil interactions. Therefore, literatures about the adsorption mechanisms of antibiotics in soil environment and the effects of environment factors on adsorption behaviors of antibiotics in soil are reviewed and discussed systematically in this review.  相似文献   

16.
内分泌干扰物(EDCs)作为一种新兴污染物,具有憎水性、低剂量效应和半衰期长等特征,在全球的土壤/沉积物中已被广泛检测到,并发现已给环境带来了严重的威胁。本文重点综合评述了近10年来土壤/沉积物中EDCs的来源、浓度水平、空间分布及吸附特性的研究。结果发现,EDCs来源涉及农业、工业和生活等多个方面;空间分布上,一般呈近海地区沉积物中EDCs浓度水平较河流底泥及土壤低,而高度工业化、城市化地区土壤/沉积物中EDCs浓度亦较高;EDCs的吸附受土壤/沉积物理化性质、EDCs自身性质和环境条件的共同影响,一般土壤有机质的含量和成熟度、土壤颗粒的比表面积与其吸附能力呈正相关,黏土矿物类型对EDCs的吸附也有重要的影响;EDCs的吸附能力与其自身的疏水性和结构特征有关;温度升高和溶液p H值增加都不利于EDCs的吸附,而溶液离子强度的增加对其吸附起着促进作用。土壤/沉积物对EDCs的吸附是一个复杂的过程,因此对其吸附特性需要进一步的探讨。  相似文献   

17.
刘伟  王彬  刘畅  黄燕  王启铭  梁馨予  谌书 《环境化学》2021,40(1):272-282
兽用抗菌药物环丙沙星(CIP,ciprofloxacin)的大量使用引发了人们的广泛关注.文章研究了CIP在亚高山草甸土剖面土壤上的吸附动力学、吸附热力学和pH、有机质含量、阳离子交换量等因素对吸附的影响,以揭示CIP在亚高山草甸土上的吸附机制,为CIP的生态风险评价提供一定的依据.结果表明,CIP在亚高山草甸土上的吸附过程符合准二级动力学模型,并分为快吸附和慢吸附阶段,快吸附为0—6 h,慢吸附为6—48 h.CIP在供试土壤中的吸附等温线均能被Freundlich方程及线性方程很好的拟合,且|ΔHθ|小于40 kJ·mol-1,说明其吸附过程以物理吸附为主.其吸附等温线符合L-型,表明在CIP浓度较低时,草甸土与CIP分子间作用力较强,而浓度增大至一定程度时,溶剂分子与CIP分子间作用力占主导地位,吸附减弱.剖面土壤上CIP的吸附量随温度升高和土壤深度增加下降,这与有机质含量、阳离子交换量、黏粒含量以及pH有关.实验表明,在pH=5时,其吸附量最高.pH值在3—5时,吸附量随pH升高而升高,而在pH>5时,吸附量随pH升高而降低.表明阳离子交换为其吸附机制之一.  相似文献   

18.
碱性条件下胡敏酸吸附镉的特征研究   总被引:1,自引:0,他引:1  
为了探讨胡敏酸在碱性条件下的吸附镉机理,了解碱性盐化土壤中镉污染机理和生态环境之间的关系,实验研究了胡敏酸在碱性条件吸附镉的特征。采用批吸附试验方法,研究不同Cd初始浓度、反应时间、不同pH和离子强度对胡敏酸吸附镉的影响,结果表明:胡敏酸具有较强吸附镉的能力,可以用Langmuir吸附模型和Temkin吸附模型很好地拟合其等温吸附过程(r分别为0.9809和0.9816);在60 min内的快速反应阶段和60 min至6 h间的慢速反应阶段,胡敏酸对镉的吸附量分别为2.895 mg·g-1和3.342 mg·g-1,吸附反应平衡前6 h的动力学过程可以用Elovich方程进行很好的拟合(r为0.9285);随着pH增加,吸附率表现出逐步增加趋势,并以pH为4.5和8.5为界,呈现两端增加速度快,中间增加慢的规律性;在较低浓度离子强度下,离子强度的增加促进胡敏酸吸附镉;而在高离子强度下,表现出相反的规律性;在相同的条件下,不同离子强度对胡敏酸吸附镉的影响大小为:氯化钙〉氯化镁〉氯化钾〉氯化钠。土壤在盐化的过程中,由于无机盐浓度的增加,增加了重金属离子的生物可利用性,加大了重金属离子的生态风险。  相似文献   

19.
The adsorption of heavy metals on soil from the Neihu Landfill Site in Taipei City was investigated in order to assess the groundwater pollution problems. The effects of soil organic matter and the behaviors of organic complexing ligands like EDTA and humic acid to the overall adsorption process were studied and discussed. For explaining the results, the pH value of soil system and the properties of the soil/aqueous interface were chosen as two significant and interacted factors for discussion. The concept of the specific adsorption mechanism was also demonstrated and discussed. The results showed that the complexing ligands existing in soil liquid phase have more influences than natural organic matter does. The competitive sequences of different organic matter contents indicated that organic functional sites preferentially bind with Cu and Cd. The presence of EDTA and humic acid which formed ligandlike complexes will reduce Cd adsorption efficiency. These effects will induce mobility and the fate of heavy metals in soils, such as bioavailability.  相似文献   

20.
The objective of this experiment was to study the effects of malic, tartaric, oxalic, and citric acid on the adsorption and desorption characteristics of Cd by two typical anthropic soils (lou soil and irrigation-silted soil) in North-west China. Cadmium adsorption and desorption were studied under a range of temperatures (25°C, 30°C, 35°C, 40°C), organic acid concentrations (0.5–5.0 mmol·L-1), and pH values (2–8). The results showed that the Cd adsorption capacity of the lou soil was significantly greater than that of the irrigation-silted soil. Generally, Cd adsorption increased as the temperature increased. In the presence of NaNO3, the adsorption of Cd was endothermic with ΔH values of 31.365 kJ·mol-1 for lou soil and 28.278?kJ·mol-1 for irrigation-silted soil. The endothermic reaction indicated that H bonds were the main driving force for Cd adsorption in both soils. However, different concentrations of organic acids showed various influences on the two soils. In the presence of citric acid, chemical adsorption and van der Waals interactions were the main driving forces for Cd adsorption rather than H bonds. Although the types of organic acids and soil properties were different, the effects of the organic acids on the adsorption and desorption of Cd were similar in the two soils. The adsorption percentage of Cd generally decreased as organic acid concentrations increased. In contrast, the adsorption percentage increased as the pH of the initial solution increased. The exception was that adsorption percentage of Cd increased slightly as oxalic acid concentrations increased. In contrast, the desorption percentage of Cd increased with increasing concentrations of organic acids but decreased as the initial solution pH increased.  相似文献   

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