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1.
几种土壤的基本理化性质与Cu2+吸附的关系   总被引:6,自引:0,他引:6  
胡红青  陈松  李妍  丁树文  赵竹青 《生态环境》2004,13(4):544-545,548
研究了大冶市几种类型土壤的基本性质及与Cu2+吸附的关系,结果表明,土壤对Cu2+的吸附量随其CEC值(记为CEC)而变化,供试土壤的Cu2+吸附量由大到小的顺序为石灰土→水稻土→潮土→棕红壤.加入铜浓度为5 mmol·L-1时11个土壤对铜的吸附量x((mol·g-1)与CEC的直线相关方程为x(Cu2+) = 2.018×CEC + 24.4 (r=0.7066).而影响CEC的因素,如Ph、粘粒含量及其组成、有机质、比表面等,也是决定Cu2+吸附量的重要因素.  相似文献   

2.
雪硅钙石对生活污水中磷的去除实验   总被引:2,自引:0,他引:2  
以含低浓度磷(10-15mg·l-1)的生活污水为研究对象,通过引入晶种雪硅钙石,使水体中的磷以不溶磷酸盐的形式结晶到晶种上而去除,在静态条件下合适的投加量为雪硅钙石6g·l-1,氟化钙3.5g·l-1-4.2g·l-1,反应4h,可使人工快渗出水的总磷浓度小于0.5mg·l-1,去除率达到96.6%以上,出水的pH值保持在8-8.6之间.  相似文献   

3.
孟朵  倪才华  朱昌平  黄波 《环境化学》2013,32(2):249-252
将海藻酸钠用氨基硫脲进行改性,合成了新型絮凝剂.用红外光谱、核磁共振、元素分析等对该絮凝剂进行了表征.并研究了絮凝剂对5种重金属离子(Fe3+、Cu2+、Pb2+、Cd2+、Hg2+)的絮凝性能.结果表明,改性海藻酸钠絮凝剂对污水中不同浓度的重金属离子均有明显的絮凝效果.吸附动力学表明,絮凝过程在很短时间内即可完成,该产物具有处理重金属离子污水的应用前景.  相似文献   

4.
道南膜技术测定CaCl2溶液体系中汞的化学形态   总被引:1,自引:0,他引:1  
尝试并探索道南膜技术(DMT)测定溶液体系中Hg化学形态的方法条件.结果表明,0.01mol·1-1CaCl2作为背景溶液时,跨过阳离子交换膜的Hg主要形态并非阳离子而是HgCl2和HgCl3.Hg在阳离子交换膜内扩散为限制Hg跨膜传输的主要因素.Hg在阳离子交换膜内的吸附除静电吸附外还存在结合力更强的化学吸附,成为限制道南膜技术用于Hg形态测定的主要因素.采用动力学DMT方法,缩短试验时间至8h以内,可在一定程度上降低Hg的化学吸附,为DMT方法测定土壤溶液体系中Hg的化学形态提供可能.  相似文献   

5.
对经特殊的稳定化预处理所得的海洋巨藻 (Durvillaeapotatorum)生物吸附剂对Hg2 的吸附动力学进行了研究 ,报导了不同Hg2 初始浓度、温度以及生物吸附剂平均粒径下动态吸附量与时间的关系 .结果显示 ,各吸附动力学曲线呈优惠型 ;当生物吸附剂平均粒径为 0 .45mm时 ,Hg2 的半饱和时间tS均不超过 6 0min ;Hg2 初始浓度和生物吸附剂粒径越小 ,吸附温度越大 ,达到吸附平衡所需的时间越短 .在测试范围内 ,生物吸附剂的平衡吸附容量与粒径和温度无关 .同时考察了吸附过程中的传质效应并对液膜传质系数kL进行了关联 ,结果表明 :当吸附时间t≤tS时 ,Hg2 的吸附速率为液膜传质控制 ;在测试范围内 ,kL为 0 .0 40 7~ 0 .112cm/s.本研究结果为利用海洋巨藻 (Durvillaeapotatorum)生物吸附剂处理含汞废水的规模化应用提供了一定的依据 .图 5表 2参 11  相似文献   

6.
以废柚子皮为原料,经ZnCl2浸泡-加热的化学改性手段制备改性柚子皮生物吸附剂,并通过模拟试验研究该吸附剂对废水中pb2+的去除.考察了模拟废水的pH、吸附时间、吸附剂用量和pb2+初始浓度、温度等因素对柚子皮吸附剂去除pb2+的影响,并研究柚子皮吸附剂对pb2+的吸附动力学及吸附特征.结果表明,模拟废水的pH、吸附时间、吸附剂用量和pb2+初始浓度、温度等因素对柚子皮吸附剂吸附废水中pb2+均有显著影响.适宜的吸附条件为pH5.3~6.5,吸附时间1.5h,吸附剂用量10g· L-1,pb2初始质量浓度100 mg·L-1,温度30℃.在该条件下,废水中pb2+去除率在90%以上.柚子皮吸附剂对废水中pb2+的吸附符合动力学二级反应方程,等温吸附规律可用Langmuir、Freundlich和Temkin模型进行较好的描述.  相似文献   

7.
沈倩  张建锋  孟晓光  车东昇 《环境化学》2014,(11):1923-1929
采用纳米氧化石墨烯(GO)吸附放射性废水中Sr2+,从吸附原理、吸附动力学、pH对吸附的影响等方面对吸附过程进行研究.采用表面增强拉曼技术和红外光谱对Sr2+在GO表面的吸附进行光谱表征.将GO负载到活性炭表面进行柱实验探索GO在废水处理中的应用.结果表明,在pH值为6.0—6.5时GO对Sr2+的吸附符合Langmuir吸附模型,最大吸附量263.16mg·g-1.GO对Sr2+的吸附符合拟二级动力学方程.在pH3—11范围内吸附量随着pH升高显著增大.GO对Sr2+的吸附具有快速,吸附量大,适用pH范围广的特点,可大量用于放射性废水的处理.GO负载到活性炭上后吸附量有所下降,但克服了GO材料本身在水中粒径小难分离的缺陷,是一种可实际应用、去除环境中Sr2+的新方法.  相似文献   

8.
不同用量钾硅钙微孔矿物肥对水稻生长及产量的影响   总被引:7,自引:0,他引:7  
通过田间试验研究自主研制的钾硅钙微孔矿物肥在水稻上的应用效果,选择黑龙江虎林、内蒙古赤峰、山东济宁、贵州凤岗和广东增城5个试验点,设置不施肥、常规施肥、常规施肥+钾硅钙微孔矿物肥450 kg·hm-2、常规施肥+钾硅钙微孔矿物肥900 kg·hm-2、常规施肥+钾硅钙微孔矿物肥1 350 kg·hm-2 5个处理,结果表明,与当地常规施肥相比,加施钾硅钙微孔矿物肥能够增加水稻产量,平均增产幅度达到7.6%,增收为68~3 120元·hm-2.基于产量和效益的分析,以450 kg·hm-2钾硅钙微孔矿物肥为最佳经济施用量.  相似文献   

9.
溶液中多种金属离子共存对毛木耳生物吸附能力的影响   总被引:2,自引:0,他引:2  
用毛木耳(Auricularia polytricha)菌丝体的死细胞作为生物吸附剂吸附溶液中的Cd 2+、Cu 2+和Pb 2+.用原子吸收分光光度计测定吸附前后溶液金属离子的变化,研究了溶液中两种离子共存对毛木耳吸附能力的影响.结果表明:溶液中Pb2+的存在抑制了毛木耳对Cd2+的吸附,是负向干扰;Cd2+的存在促进了毛木耳对pb2+的吸附,是正向干扰;Cu2+的存在促进了毛木耳对pb2+的吸附,是正向干扰;Pb2+的存在抑制了毛木耳对Cu2+的吸附,是负向干扰;Cd2+对Cu2+的影响作用不如Cu2+对Cd2+的影响明显.实验结果为毛木耳作为重金属污染废水的处理材料提供理论依据.  相似文献   

10.
鲁雪梅  熊鹰  张广之  倪晋仁 《环境化学》2012,31(10):1580-1589
采用原位沉淀-空气氧化法将锰氧化物负载于大孔强酸性阳离子交换树脂D001上,制备出一种新型锰氧化物-阳离子交换树脂复合材料Mn-D001,并对该材料吸附水中Pb2+、Cd2+、Cu2+的性能进行了深入研究.TEM、XRD以及XPS的分析结果表明,负载的锰氧化物以MnO2的形态存在.基于单一金属离子静态吸附的一元体系实验表明,Mn-D001比D001对Pb2+、Cd2+、Cu2+具有更高的吸附选择性,在高浓度竞争离子Ca2+、Mg2+、Na+共存的情况下,仍能保持较高的重金属去除率;Mn-D001对Pb2+、Cd2+、Cu2+的吸附行为符合准一级动力学模型(R2>0.99)和Langmuir吸附等温线模型(R2>0.99).在温度为303 K时,Mn-D001对3种重金属的饱和吸附容量可分别达到476.19 mg.g-1、243.90 mg.g-1及196.08 mg.g-1,优于原有树脂D001.基于复合重金属离子竞争吸附的二元、三元体系的实验表明,Mn-D001对3种重金属的吸附能力顺序为Pb2+>Cu2+>Cd2+,吸附能力由原有树脂D001以及负载的锰氧化物的性质共同决定.  相似文献   

11.
Wastewaters from feldspar flotation containing hydrofluoric acid and amines were effectively purified by neutralization‐clarification with a 10% solution of lime and polyelectrolytes, followed by a coke filtration and/or a Zeolite or Activated Alumina adsorption. A Polish synthetic Ca‐type Zeolite proved to be efficient in the elimination of fluoride ions at the pH of 7.8. At this pH the Zeolite was more efficient than the Activated Alumina N. Wastewaters from feldspar washing were effectively treated by coagulation with A12(SO4)3, yielding final effluents with the characteristics very close to the clarified postilotation wastewaters. After clarification amines and fluoride ions could be removed from feldspar postflotation and feldspar washing effluents mixed together. A final concentration of fluorides and amines in the purified wastewaters was below 2 mg/1.  相似文献   

12.
This study provides an electrocoagulation process for the removal of metals such as cobalt, copper, and chromium from water using magnesium as anode and galvanized iron as cathode. The various parameters like pH, current density, temperature, and inter electrode distance on the removal efficiency of metals were studied. The results showed that maximum removal efficiency was achieved for cobalt, copper, and chromium with magnesium as anode and galvanized iron as cathode at a current density of 0.025?A?dm?2 at pH 7.0. First- and second-order rate equations were applied to study adsorption kinetics. The adsorption process follows second-order kinetics model with good correlation. The Langmuir and Freundlich adsorption isotherm models were studied using the experimental data. The Langmuir adsorption isotherm favors monolayer coverage of adsorbed molecules for the adsorption of cobalt, copper, and chromium. Temperature studies showed that adsorption was endothermic and spontaneous in nature.  相似文献   

13.
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   

14.
Removal of p-chlorophenol (pCP) from synthetic aqueous solutions was studied through adsorption on a biosorbent developed from chitosan (CS) and sodium alginate (SA), the natural cationic and anionic polysaccharides, respectively. Chitosan-coated sodium alginate beads were prepared and treated with calcium chloride solution in order to improve the stability as well as hydrophobic character. The resulting beads (CS/CA) were characterized using FTIR spectra, scanning electron microscopy (SEM), and BET surface analysis. The efficiency of this biosorbent in removing pCP from aqueous medium was studied under batch equilibrium and dynamic column flow experimental conditions. The binding capacity of the biosorbent was studied as a function of initial pH, contact time, initial concentration of adsorbate and amount of biomass. The data were fitted to pseudo-first-order, pseudo-second-order, and Weber–Morris models and found that the adsorption process followed pseudo-first-order kinetics. Further, the equilibrium data were fitted to Freundlich, Langmiur, and Dubinin–Radushkevich (D–R) adsorption isotherms and the isotherm constants were evaluated for adsorption of pCP. The maximum monolayer adsorption capacity of CS/CA beads was found to be 127 mg g?1. Column flow results were used to generate breakthrough curves. The experimental results suggested that the chitosan–calcium alginate blended biosorbent was effective for the removal of pCP from aqueous medium.  相似文献   

15.
磷酸活化活性炭对Cu~(2+)的吸附特征研究   总被引:1,自引:0,他引:1  
寻求廉价而高效的吸附材料为目的,研究向日葵秸杆基活性炭对铜离子的吸附性能。以向日葵秸秆为原料,经H3PO4活化制备活性炭,通过静态实验研究了其对水溶液中Cu2+的吸附特性,考察了溶液pH值、吸附温度和离子强度对吸附的影响,探讨了吸附热力学、动力学和吸附机理。结果表明:溶液pH值为5~6时活性炭对Cu2+的去除效果最好;向50 mL 170 mg·L-1的溶液中加入0.5 g活性炭,温度为45℃、吸附时间为1 h时,对Cu2+的去除率可达98.3%;Langmuir方程能更好地描述Cu2+在活性炭上的等温吸附特征,静态吸附容量可达41.03 mg·g-1;吸附过程符合拟二级动力学过程,且为吸热的化学吸附过程,膜扩散为速率控制步骤,离子交换可能在吸附过程中起了重要作用。  相似文献   

16.
磷酸活化活性炭对Cu2+的吸附特征研究   总被引:1,自引:0,他引:1  
寻求廉价而高效的吸附材料为目的,研究向日葵秸杆基活性炭对铜离子的吸附性能。以向日葵秸秆为原料,经H3PO4活化制备活性炭,通过静态实验研究了其对水溶液中Cu2+的吸附特性,考察了溶液pH值、吸附温度和离子强度对吸附的影响,探讨了吸附热力学、动力学和吸附机理。结果表明:溶液pH值为5~6时活性炭对Cu2+的去除效果最好;向50 mL 170 mg·L-1的溶液中加入0.5 g活性炭,温度为45℃、吸附时间为1 h时,对Cu2+的去除率可达98.3%;Langmuir方程能更好地描述Cu2+在活性炭上的等温吸附特征,静态吸附容量可达41.03 mg·g-1;吸附过程符合拟二级动力学过程,且为吸热的化学吸附过程,膜扩散为速率控制步骤,离子交换可能在吸附过程中起了重要作用。  相似文献   

17.
海泡石黏土矿物对Cu2+的吸附动力学研究   总被引:2,自引:0,他引:2  
研究分析了海泡石黏土矿物对铜离子的吸附性能和动力学特征,结果表明,海泡石黏土矿物对Cu~(2 )吸附的最佳pH值为6.0左右,随着pH值的增大,吸附作用减弱;在[Cu~(2 )]=100mg·l~(-1),溶液pH值为6,吸附时间为2h时,添加0.1 g海泡石,海泡石对Cu~(2 )的吸附去除率仅为39.5%,当海泡石用量提高至0.4 g时,其对Cu~(2 )的吸附去除率提高到94.8%;实验结果同样显示,18min内有90%的Cu~(2 )被海泡石吸附,随着吸附时间的增加,吸附作用趋于稳定,2h可达到吸附平衡。该吸附过程符合Langmuir和Freundlich等温吸附方程.同时,分别采用拟一级模型和拟二级模型考察了吸附动力学,并计算了这些动力学模型的速率常数.实验数据和拟二级模型计算结果之间有较好的相关性.  相似文献   

18.
Strong adsorption of DNA molecules on humic acids   总被引:1,自引:0,他引:1  
Analysing soil microbial communities is often hampered by DNA adsorption on soil organic compounds such as humic acids. However the role of humic acids in DNA adsorption and stability in soils remains controversial. To characterize DNA–humic acid interactions, we studied DNA adsorption on two commercially available humic acids and a soil humic acid extracted from an Andosol. Desorption of the adsorbed DNA using 4 different solutions—distilled water, 0.1 M NaCl, 0.1 M sodium phosphate buffer (pH 6.0), and 1% sodium dodecyl sulfate solution—was also studied to understand the mechanism of DNA adsorption on humic acids. Here, we show that humic acids play an important role in DNA adsorption to soils. DNA molecules were adsorbed on the humic acids, with adsorption increasing proportionally with the DNA concentrations in the solution. The adsorption on all humic acid samples was fitted with Freundlich equation, and the parameters obtained from the equation indicated a high affinity between the humic acids and DNA molecules. The total amount of DNA desorbed by the 4 solutions was less than 2% of the total DNA adsorbed on all the humic acids. The results demonstrate that DNA molecules are able to bind strongly to humic acids by ligand binding, hydrophobic interaction, aggregation, or precipitation.  相似文献   

19.
地下水重金属污染的原位修复技术研究日益受到关注.利用课题组研发的聚乙二醇(PEG400)作为交联剂合成的新型交联壳聚糖材料,用该新型材料吸附地下水中重金属Zn~(2+),探讨CTS:PEG比例和Zn~(2+)印迹量对吸附效果的影响,通过该材料对Zn~(2+)的吸附动力学、吸附等温线以及吸附热力学关系,讨论其吸附的内在机理.研究发现CTS:PEG=1:2和印迹的Zn~(2+)量是0.5%的交联壳聚糖,去除重金属Zn~(2+)的效率最高;其非平衡吸附遵循准二级动力学模型,吸附速率为0.1260mg·g~(-1)·h~(-1);在20℃,溶液pH值为7条件下,PEG-CTS对Zn~(2+)的最大吸附容量是18.20 mg·g~(-1),平均吸附能量是9.66kJ·mol~(-1);化学吸附为主,也包含物理吸附.  相似文献   

20.
The adsorption of copper(II) ions from aqueous solutions by the green horse-chestnut shell was studied in a batch adsorption system. It was determined how the parameters of the adsorption process, such as time, pH, copper(II) ions concentration and sorbent dose, influence the effectiveness of copper(II) ions’ removal. The adsorption process was fast and equilibrium was established about 10?min, and near 95–97% of Cu(II) ions were removed from aqueous solution. Maximum copper(II) ions’ adsorption occurred at around pH 5. The adsorption kinetics are also described, using pseudo-first-order model and pseudo-second-order model of type 1 and 2. A comparison of the kinetics models on the overall adsorption rate showed that the adsorption system was best described by the pseudo-second-order model of type 1 (r2?=?0.999) for all initial concentrations. Another key part of this study was the use of the Freundlich model to determine the adsorption isotherm and the experimental data were in strong correspondence with this model.  相似文献   

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