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1.
The objective of this study was to examine the effect of biosurfactant on the sorption of phenanthrene (PHE) onto the original or H2O2-treated black loamy soil (typic isohumisols) and red sandy soil (typic ferralisols). The sorption isotherms were performed with the original and “soft” carbon-removed soils in the presence and absence of biosurfactant (200 mg/L). The sorption and degradation of biosurfactant were investigated. The result showed that organic matter played an important role in PHE sorption onto the black loamy and red sandy soils, and the PHE sorption isotherms on the “soft” carbon-removed soils exhibited more nonlinearity than those on the original soils. The values of partition coe cient (Kd) on the original black loamy soil with or without 200 mg/L biosurfactant were 181.6 and 494.5 mL/g, respectively. Correspondingly, in the red sandy soil, Kd was 246.4 and 212.8 mL/g in the presence or absence of biosurfactant, respectively. The changes of Kd suggested that biosurfactant inhibited PHE sorption onto the black loamy soil, but facilitated PHE sorption onto the red sandy soil. The nonlinearity of PHE sorption isotherm was decreased in the presence of biosurfactant. Site specific sorption might occur during PHE sorption onto both the original and the “soft” carbon-removed soils in the presence of biosurfactant. It was noted that biosurfactant could also be sorbed onto soils. The maximal sorption capacity of the red sandy soil for biosurfactant was (76.9 0.007) g/g, which was 1.31 times that of black loamy soil. Biosurfactant was degraded quickly in the two selected soils, and 92% of biosurfactant were mineralized throughout the incubation experiment for 7 d. It implied that biosurfactant should be added frequently when the remediation of polycyclic aromatic hydrocarbon (PAH)-contaminated soils was conducted through PAH desorption approach facilitated by biosurfactant.  相似文献   

2.
Sorption and desorption of phenanthrene (PHE) onto black carbon (BC) extracted from sediments were studied in the presence of three types of dissolved organic matter (DOM), including L-phenylalanine (L-PH), peptone and citric acid. The nonlinearity of the sorption isotherms increased in the presence of DOM. The presence of L-PH reduced the sorption capacity and desorption hysteresis because of the solubilization of PHE in L-PH solution. Peptone at 50-500 mg/L also led to a decrease in sorption attributed to solubilization, although the sorbed peptone on the BC surface could slightly increase PHE sorption. Unlike L-PH and peptone, citric acid enhanced the sorption capacity and irreversibility of PHE on BC mainly due to the strong sorption of citric acid on the BC surface. Our results may help to understand the different impacts of DOM on the distribution and transport of PAH in the environment.  相似文献   

3.
重金属污染的长春水田黑土对菲的吸附作用   总被引:7,自引:0,他引:7  
以菲为多环芳烃(PAHs)代表物,研究了Pb、Zn、Cu污染后黑土对PAHs的吸附作用.结果表明,分配作用是黑土吸附菲的主要机制,无论重金属污染与否,黑土对菲的等温吸附曲线均呈线性.实验条件下,重金属污染后黑土对菲的吸附作用明显增强,且随重金属含量提高,黑土对菲的吸附系数(Kd)和有机碳标化的吸附系数(Koc)增大.由于重金属的“键桥”作用,黑土吸附菲的平衡溶液中水溶性有机质(DOM)浓度降低,土壤固相有机质含量略有增加(不超过原有有机质含量的0.53%).计算了这部分增加的固相有机质对菲的吸附系数KPh/soc,并分析了溶液中DOM对土壤吸附菲的影响.结果显示,溶液中DOM浓度变化及其与菲的结合作用对重金属影响土壤吸附菲的贡献甚微;而KPh/soc值则比土壤原有有机质对菲的吸附系数Kd值大2~3个数量级,这是重金属污染导致土壤吸附作用增强的根本原因.  相似文献   

4.
改性土壤对模拟含油废水中油的吸附   总被引:19,自引:1,他引:18  
高斌  王晓蓉  章敏  黄华  杨柳燕 《环境科学》2000,21(3):89-89-92
研究季铵盐阳离子表面活性剂四甲基铵离子 ( TMA)和十六烷基三甲基铵离子 ( HDTMA)改性的土壤 (黑土、黄棕壤、红壤 )对水中油的吸附作用 .结果表明 :改性土壤和未改性土壤均可吸附水中的油 ,但改性土壤对水中油的吸附能力明显高于未改性土壤 .改性土壤吸附油能力的顺序依次为 :1 CEC- HDTMA黑土 >1 CEC-HDTMA黄棕壤 >1 CEC- HDTMA红壤 >1 CEC-TMA黑土 >1 CEC-TMA黄棕壤 >1 CEC- TMA红壤 .未改性土壤和 HDTMA改性土壤对油的吸附通过分配来进行 ,吸附等温线可由 Henry方程表示 ,得出 logKSOM为 2.69,logKHDTMA为 3.35;TMA改性土壤对油的吸附符合 Langmuir方程 ,其对油的饱和吸附量分别为 1150 mg/kg( TMA黑土 ) ,751 mg/kg( TMA黄棕壤 ) ,172 mg/kg( TMA红壤 )  相似文献   

5.
我国典型土壤对病毒等温静态吸附的数值模拟   总被引:3,自引:3,他引:0  
通过室内等温静态批量平衡吸附实验,采用3种常见的等温线(Freundlich方程、Langmuir方程和Temkin方程)对2种病毒(MS2和X174)在2种处理(非灭菌和灭菌)条件下的6种土壤(红壤土、红粘土、乌栅土、黄泥土、沙质潮土和壤质潮土)中的吸附行为进行了回归拟合.实验结果和模拟结果均表明,土壤性质、病毒性质、土壤中的土著微生物对病毒在土壤中吸附行为均具有重要的影响.红粘土对MS2和X174的平均吸附比例几乎能达到100%,而2种潮土(沙质潮土和壤质潮土)相对较弱;总体来看土壤对X174的吸附能力高于MS2,但灭菌后的土壤对MS2的吸附能力却高于X174.在数值模拟中,Freundlich方程和Langmuir方程均具有理想的相关性.Freundlich方程能够表现出病毒浓度对其在土壤中吸附行为的影响;尽管Langmuir方程能够应用于土壤对病毒吸附能力的比较,但本研究中不能应用Langmuir方程来计算土壤对病毒的最大吸附量.  相似文献   

6.
五种土壤吸附喹乙醇特性的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
用振荡平衡法研究了喹乙醇在东北黑土、常熟水稻土、陕西潮土、南京黄棕壤和江西红壤中吸附行为及其影响因素.结果表明,喹乙醇在5种土壤中的吸附行为均可用Langmuir方程和Freundlich方程进行良好的线性拟合.其吸附系数KF很小,分别为2.813,1.740,0.446,0.309和0.201,显示很难被土壤吸附.其KF与土壤有机质含量及阳离子交换量呈良好的相关性.而与土壤pH值及黏粒含量相关性较差.温度和离子强度均对喹乙醇在土壤中的吸附有一定影响,较低的温度和离子强度均有利于土壤对喹乙醇的吸附.  相似文献   

7.
Triton X-100对土壤中柴油的解吸特征及影响因素   总被引:1,自引:0,他引:1       下载免费PDF全文
为考察非离子表面活性剂Triton X-100对土壤中柴油解吸特性及土壤理化性质对其解吸的影响,通过振荡平衡法研究Triton X-100对浙江水稻土、重庆紫壤、江西红壤、海南沙土、青海灰漠土和黑龙江黑土中柴油解吸行为及其影响因素.结果表明,Triton X-100对浙江水稻土、重庆紫壤、江西红壤、海南沙土、青海灰漠土和黑龙江黑土中柴油的解吸均符合先快后慢、最后达到解吸平衡的规律,平衡时解吸量分别1.61、1.85、1.80、2.29、2.01和1.13 mg/g.其解吸动力学过程均符合准二级动力学模型(R2>0.99);6种典型土壤中柴油的等温解吸特征可较好地用修正的米氏方程模型进行描述(R2>0.92).Qmax(柴油最大解吸量)介于1.81~2.23 mg/g之间,浙江水稻土、重庆紫壤、江西红壤、海南沙土、青海灰漠土和黑龙江黑土中ρmax(柴油最大解吸率)分别为73.20%、78.06%、75.63%、90.36%、79.89%和62.92%;土壤各理化性质对Triton X-100解吸土壤中柴油的影响起综合作用,其中土壤w(砂粒)与ρmax呈显著正相关(R2=0.993 6,P < 0.01),对Triton X-100解吸柴油的影响最大;而CEC(阳离子交换量)、w(OM)、w(黏粒)均与ρmax呈显著负相关(P < 0.05).研究显示,修正的米氏方程可用于描述柴油在土壤-水-表面活性剂Triton X-100系统中的解吸行为,w(砂粒)是影响不同土壤中柴油解吸的关键因子,可为应用Triton X-100修复柴油污染土壤提供理论基础.   相似文献   

8.
分别在黑土、黄壤、红壤、紫色土和潮土中添加0.5%(质量分数)生物质炭,采用批处理等温吸附实验及室内消解实验测定了CAP的吸附等温线及消解动态,目的是揭示不同类型土壤中施用生物质炭对残留CAP的环境行为影响规律,为评估生物质炭田间施用综合生态效应,评价土壤残留CAP的环境污染风险提供理论依据.结果表明,生物质炭施用可提高土壤对CAP的吸附活性,但提高程度因土壤性质不同而异.有机质含量较高的黑土中添加生物质炭,吸附农药Kd值提高了2.17%,而有机质含量较低的潮土添加等量生物质炭后则提高了139.13%.生物质炭施入土壤后其对农药吸附活性受到不同程度抑制.与施入土壤前比较,生物质炭施入黑土、黄壤、红壤、紫色土和潮土中后吸附常数KF,biochar分别降低了96.94%、90.6%、91.31%、68.26%和34.59%.CAP在黑土、黄壤、红壤、紫色土和潮土中的消解半衰期为115.52、133.30、154.03、144.41和169.06 d,而在添加生物质炭的土壤中消解半衰期分别延长了20.39、35.76、38.51、79.19和119.75 d.与吸附实验结果一致,生物质炭施入黑土对延缓农药土壤消解作用最小,而潮土中施入生物质炭效果最明显.本研究表明生物质炭施入土壤后可增强对农药的吸附作用,延缓农药的土壤消解,但影响程度与土壤性质有关.  相似文献   

9.
表面活性剂对苯并[a]芘在黑炭表面吸附解吸的影响   总被引:1,自引:1,他引:0  
通过静态吸附实验,研究了3种不同类型的表面活性剂(阳离子∶十六烷基三甲基溴化铵,CTAB;阴离子∶十二烷基苯磺酸钠,SDBS∶非离子,曲拉通100,TX100)对苯并[a]芘(BaP)在黑炭表面吸附解吸的影响.结果表明,3种表面活性剂的存在均会增加BaP在黑炭表面吸附的非线性程度.CTAB的存在可以促进BaP在黑炭表面的吸附同时抑制了BaP的解吸,然而SDBS的存在降低了BaP在黑炭表面的吸附并增加了吸附过程的可逆性.与CTAB和SDBS不同,TX100对BaP在黑炭表面吸附解吸的影响取决于其添加浓度.低浓度的TX100(50 mg.L-1)能够促进BaP在黑炭上的吸附并抑制BaP的解吸,吸附能力参数Kd值(在ce=50μg.L-1下)从188 062 mL.g-1增大到264 179 mL.g-1,解吸滞后指数HI从0.44降低到0.39.随着TX100浓度增加到150 mg.L-1和200 mg.L-1,TX100对BaP的吸附表现出抑制作用并能够促进BaP的解吸,Kd值(在ce=50μg.L-1下)从188 062 mL.g-1分别降低到182 751 mL.g-1和178 730 mL.g-1,解吸滞后指数从0.44分别升高到0.65和0.70.本研究为预测多环芳烃在表面活性剂污染的环境中的分布特征和最终归趋提供了理论依据.  相似文献   

10.
溴化十四烷基吡啶增强固定土壤中萘及其机理   总被引:7,自引:0,他引:7       下载免费PDF全文
用吸附平衡法,研究了溴化十四烷基吡啶(MPB)存在下,萘在4种土壤上的吸附行为及其机理,为表面活性剂在污染土壤修复中的应用提供理论参考.结果表明,当MPB的平衡浓度(X)小于1倍临界胶束浓度(CMC)时,萘的表观分配系数(Kd*)随MPB加入量的增大而急剧增大;当X>1CMC时,增加的MPB对萘主要起胶束增溶作用,Kd*值则随MPB浓度增加而急剧下降,而后趋于缓和,1/Kd*与X呈线性关系;当X约为1CMC时,Kd*在4种土壤上达到最大值(Kd*max),分别为112.5,170.8,406.8,190.5mL/g,与MPB的饱和吸附量(Qo)成正比;Kd*max/Kd比值则分别为20.49,16.86,20.60,5.30,与土壤的foc成反比.  相似文献   

11.
双酚S在两种典型地带性土壤中的吸附/解吸行为研究   总被引:2,自引:0,他引:2  
采用批平衡实验方法研究了双酚S(BPS)在两种典型地带性土壤中的吸附/解吸行为.结果表明,吸附动力学曲线符合拟二级动力学方程.吸附等温线呈非线性,且同时符合Freundlich和Langmuir方程.相比而言,BPS更易吸附在高有机质含量的黑土中,298 K反应温度下BPS在黑土和红壤上的最大吸附容量分别为497.8和156.6 mg·kg-1.吸附到两种土壤中的BPS存在解吸滞后现象,这可能是由于BPS以化学吸附和微孔扩散的形式存在于土壤中的缘故.溶液pH与BPS在土壤中的吸附容量呈负相关关系,即中性形态的BPS比阴离子形态的BPS具有更高的吸附容量.与结构类似物双酚A(BPA)的吸附相比,BPS在土壤中的吸附量更低,因此具有更高的迁移能力,可能会引起更高的环境健康风险.本研究结果为了解BPS在土壤中的迁移规律提供了数据支持.  相似文献   

12.
柠檬酸对土壤吸附五氯酚的影响   总被引:4,自引:1,他引:3       下载免费PDF全文
采用批量平衡试验方法,研究了柠檬酸对黄棕壤、棕红壤和红壤吸附五氯酚(PCP)的影响.结果表明,供试3种土样对PCP的等温吸附曲线均可用Freundlich吸附等温方程描述,对PCP的吸附容量大小为黄棕壤>棕红壤3红壤,与其有机质含量大小顺序一致.实验条件下,随着柠檬酸加入浓度的提高(0~100mmol/L),棕红壤和红壤对PCP的吸附容量和吸附强度表现为先升高后下降的趋势,较低浓度(£50mmol/L)的柠檬酸处理显著促进了它们对PCP的吸附,而较高浓度柠檬酸处理则抑制其吸附.供试浓度范围内,柠檬酸对PCP在黄棕壤中的吸附容量和吸附强度均表现为促进作用,但较高浓度柠檬酸处理下促进作用减弱.加入柠檬酸后,土壤吸附PCP的平衡溶液的pH值显著降低,这可促进PCP在土壤中的吸附,同时土壤固相有机质的释放和溶液中溶解性有机质(DOM)浓度的增加则可减少土壤对PCP的吸附.  相似文献   

13.
灭草松在土壤中吸附的支配因素   总被引:21,自引:5,他引:16  
通过振荡平衡法测定了灭草松在6种土壤中的吸附等温线,计算了灭草松在吸附过程中平均偏摩尔自由能的变化值.结果表明灭草松在其中5种土壤上的吸附等温线为直线,分配常数Kd 0.14~0.31mL·g-;土壤吸附灭草松的强弱次序为:德清水稻土>安吉水稻土(pH4.79)>余杭水稻土>临安红壤>安吉水稻土(pH7.36)>德清黄壤.土壤性质与分配常数的相关分析,发现支配灭草松在土壤上吸附的主要因素是pH值和土壤有机质含量.灭草松在土壤上的吸附主要是中性灭草松及其阴离子在土壤有机质中的分配,与有机质性质关系不大.  相似文献   

14.
IntroductionClomazone,(2 [(2 chlorophenyl)methyl ] 4 ,4 dimethyl 3 isoxazolidinone) ,isasoil appliedisoxazolidinoneherbicideproducedbyFMCCorp .Itisintroducedforannualgrassandbroad spectrumweedsinsoybeans(Rani,1998;Vyas,2 0 0 0 ) .Itisalsocurrentlyregis…  相似文献   

15.
To evaluate the e ects of long-term applications of phosphorus fertilizers on mobility of dissolved organic matter (DOM) and heavy metals in agricultural soils, a sandy soil and a loamy soil were spiked with ammonium phosphate at application rates of 0, 25, 50, 100, 250, and 500 mg P per kilogram of soil. A series of 15-cm long soil columns were constructed by packing incubated soils of varying concentrations of P. The soil columns were consecutively leached by simulated rainfalls for six cycles. The contents of water extractable organic carbon in both sandy and loamy soils increased significantly with increasing rates of P applications. Relatively high rates of P applications could induce a marked increase in DOM concentrations in the leachates, the e ects were larger with the sandy soil rather than with the loamy soil. Applications of P changed the partitioning of trace metals in the soil solids and the soil solutions. The increased P application rates also seemed to elevate the leaching of Cu, Cd, and Zn from soils. The concentrations of Cu, Cd, and Zn in the leachates were positively correlated with DOM, probably due to the formation of metal-DOM complexes. In contrast, Pb concentrations in the leachates were negatively correlated with DOM, and decreased with increasing rates of P applications. The boosted leaching of DOM induced by high rates of P applications was probably due to the added phosphate ions competing for adsorption sites in the soil solids with the indigenous DOM.  相似文献   

16.
西辽河流域沙土对磷的吸附行为   总被引:4,自引:2,他引:2  
采用小型回填式土柱动态吸附试验研究了西辽河流域沙土对磷的吸附行为. 结果表明:沙土对磷的吸附行为符合Freundlich吸附方程和Langmuir吸附方程,且前者更优. 吸附分配系数(k)平均值为31.55,磷饱和吸附量平均值为312.55 mg/kg. 沙土对磷的吸附方式以物理吸附为主,易淋失,仍存在一定的环境风险. 固定沙土中的微团聚体因存在以孔隙填充方式的磷吸附,所以其对磷的吸附能力最强,磷淋失的环境风险最小;而流动沙土对磷的吸附能力最弱,磷淋失的环境风险最大. 农田和林地沙土对磷的吸附能力最强,磷淋失的环境风险最小,是沙土的最佳利用方式. 沙土对磷的吸附分配系数及饱和吸附量与土壤w(粗黏粒),w(黏粒)和w(有机质)呈极显著正相关.   相似文献   

17.
Norfloxacin (Nor) sorption and the factors (soil organic matter (SOM), pH, and exogenous copper (Cu) influencing the sorption were investigated in a black soil (soil B), a fluvo-aquic soil (soil F), and a red soil (soil R). With increasing of Nor concentrations, sorption amount of norfloxacin increased in both the bulk soils and their SOM-removed soils, but the sorption capacity in SOM-removed soils was higher than that of their corresponding bulk soils, indicating that the process of norfloxacin sorption in soil was influenced by the soil properties including SOM. The sorption data in all bulk soils and SOM-removed soils were fitted to Freundlich and Langmuir models. The correlation coefficients suggested that the experimental data fitted better to Freundlich equation than to Langmuir equation. Furthermore, the data from soil F and SOM-removed F could not be described by Langmuir equation. The norfloxacin sorption amount decreased in soil B and soil F, whereas it increased in soil R as solution pH increased. The maximum KD and KOC were achieved in soil R when the equilibrium solution pH was 6. And the norfloxacin sorption was also influenced by the exogenous Cu2+ ions, which depended on the soil types and Cu2+ concentrations. With increasing of Cu2+ concentrations in solution, generally, sorption amount, KD and KOC for norfloxacin in soils increased and were up to a peak at 100 mg/L Cu2+, and then the sorption amount decreased regardless of norfloxacin levels.  相似文献   

18.
Biodegradation of polycyclic aromatic hydrocarbons (PAHs) is normally limited by their low solubility and poor bioavailability. Prior research suggests that biosurfactants are synthesized as intermediates during the production of mucilage at the root tip. To date the effects of mucilage on PAH degradation and microbial community response have not been directly examined. To address this question, our research compared 3 cowpea breeding lines (Vigna unguiculata) that differed in mucilage production for their effects on phenanthrene (PHE) degradation in soil. The High Performance Liquid Chromatography results indicated that the highest PHE degradation rate was achieved in soils planted with mucilage producing cowpea line C1, inoculated with Bradyrhizobium, leading to 91.6% PHE disappearance in 5 weeks. In root printing tests, strings treated with mucilage and bacteria produced larger clearing zones than those produced on mucilage treated strings with no bacteria or bacteria inoculated strings. Experiments with 14C-PHE and purified mucilage in soil slurry confirmed that the root mucilage significantly enhanced PHE mineralization (82.7%), which is 12% more than the control treatment without mucilage. The profiles of the PHE degraders generated by Denaturing gradient gel electrophoresis suggested that cowpea C1, producing a high amount of root mucilage, selectively enriched the PHE degrading bacteria population in rhizosphere. These findings indicate that root mucilage may play a significant role in enhancing PHE degradation and suggests that differences in mucilage production may be an important criterion for selection of the best plant species for use in phytoremediation of PAH contaminated soils.  相似文献   

19.
芘在土壤中的长期吸附和解吸行为   总被引:19,自引:6,他引:13  
李俊国  孙红文 《环境科学》2006,27(1):165-170
研究了芘在6种不同性质土壤中长期吸附解吸及不可逆吸附行为.实验结果表明:长期实验中芘在土壤中的吸附和解吸都存在快过程和慢过程2个阶段.不同吸附平衡时间下,有机质含量高于1%时,不同土壤的吸附平衡常数随有机质含量的增加而增加;有机质含量低于1%时,黏粒含量对土壤的吸附能力有着重要影响;平衡时间由2d增加到180d后,6种土壤的Kd值增加了35.1%~557.9%,其中土壤有机质对Kd值有不同程度的影响,而黏粒对Ka值影响最大,平衡时间对部分土壤Kd值影响不容忽视.长期解吸过程中,6种土壤慢解吸部分占总解吸量的12.05%~41.00%,有机质含量越高,慢解吸对解吸过程的贡献越大.不考虑老化的影响,有机质含量对不可逆吸附容量的贡献明显高于黏粒的贡献,与有机质对慢解吸过程的影响有一致性.  相似文献   

20.
杨宁伟  毕二平 《环境科学》2017,38(6):2568-2576
溶解性有机质(DOM)影响着有机污染物在土壤中的吸附行为.将从腐殖土中提取的DOM(DOMbulk)用XAD-8树脂和阴/阳离子交换树脂进行分级,用红外光谱、元素分析、紫外分光光度计和电位滴定的方法对DOM不同组分特征进行分析.用吸附批次实验方法研究了DOM不同组分对棕壤和黑土吸附苯并三唑(BTA)的影响.结果表明,DOMbulk中疏水酸性(HOA)、疏水中性(HON)、亲水酸性(HIA)、亲水碱性(HIB)和亲水中性(HIN)组分比例分别为61%、17%、6%、2%和14%.由于黑土有机碳(OC)含量高于棕壤,黑土对BTA和DOM组分的吸附能力均大于棕壤.相对于黑土,棕壤吸附DOM的标化分配系数Koc较高,其原因是棕壤中含有较多的对吸附DOM起重要作用的黏粒和粉砂.由于水分子占据DOM结合点位,DOM组分与BTA在溶液中结合较弱.DOMbulk中HIN在土壤上吸附最强.HIN的吸附增加了土壤吸附BTA的点位,增加点位的促进吸附作用大于HIN与BTA的竞争吸附作用,最终表现为促进吸附.疏水组分在土壤上的吸附较弱,产生的新吸附点位较少,主要通过竞争吸附作用抑制土壤对BTA的吸附.DOMbulk由78%的疏水组分构成,对土壤吸附BTA的影响与疏水组分相似.  相似文献   

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