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1.
非饱和土壤轻油污染多相流研究进展   总被引:3,自引:0,他引:3  
轻油泄漏到地下后 ,在非饱和土壤中水、气、油三相相互作用、相互影响 ,共同构成多相流体系统。在简要分析轻油污染问题的产生、危害以及轻油泄漏在地表以下运移方式的基础上 ,介绍并总结了近些年来国内外土壤轻油污染有关的多相流研究方面的进展 ,包括国外的模型研究成果、国内外试验研究方法和研究成果 ,并指出目前研究中存在的问题和需要进一步探讨的方向  相似文献   
2.
周晨颖  徐小逊  杨燕  赵伟  陶丽 《环境工程学报》2018,12(11):3221-3233
为探讨植物材料淋洗去除工业园区污水污泥中重金属的可行性,选用马桑(Coriaria nepalensis)、枳椇子(Hovenia acerba)和乌药(Lindera aggregata)的水浸提液作为淋洗剂,采用振荡淋洗实验研究了不同淋洗剂浓度和pH、淋洗时间和温度对其去除供试污泥中重金属的影响,并确定淋洗的最佳参数。结果表明,当3种淋洗剂浓度从20 g·L-1上升到80 g·L-1或淋洗温度从15 ℃增至55 ℃时,重金属去除率均呈先升高后稳定的趋势。同时,淋洗效果还受淋洗剂pH和淋洗时间的影响。基于淋洗效果、技术应用和经济成本,枳椇子、乌药和马桑水浸提液淋洗的最佳参数分别为pH 7、80 g·L-1、25 ℃、180 min,pH 4、100 g·L-1、25 ℃、180 min和pH 4、80 g·L-1、25 ℃、180 min,此时各淋洗剂重金属去除率总体表现为Cd>Cu>Pb>Ni。其中枳椇子和乌药对Cd去除率较高,分别为73.12%和82.60%,但Ni去除率仅为23.34%和19.42%;与前2种植物材料相比,马桑对Pb(36.40%)和Ni(27.88%)的去除率高,但对Cd(30.11%)和Cu(30.38%)的去除率相对较低。淋洗后污泥中Cu和Pb含量均可达农用污泥A级标准(CJ/T 309-2009),乌药淋洗后Cd及马桑淋洗后Ni含量可达到A级标准,其他淋洗剂情况下Cd和Ni含量可达到B级标准。此外,植物水浸提液淋洗污泥还能有效保留甚至增加其养分,降低可交换态、碳酸盐结合态和铁锰结合态重金属含量。研究表明,马桑、枳椇子和乌药在淋洗去除污泥中重金属和实现污泥土地应用上有一定潜力。  相似文献   
3.
为研究分子筛对水体中重金属的吸附效果,选取了13X分子筛作为实验材料,研究其对钒离子的吸附效果。分别研究了在不同温度、时间、溶液pH值和初始钒浓度的条件下,13X分子筛对钒离子的吸附量,结果表明:酸性条件更利于13X分子筛对钒的吸附,溶液pH≥5时吸附量趋于0;随着反应温度的升高,13X分子筛对钒离子的吸附量逐渐增加;13X分子筛对钒离子的吸附符合Langmuir模型和拟二级动力学模型。13X分子筛对钒离子具有一定的吸附效果,在一定的处理工艺条件下,可作为水体钒污染的修复材料。但针对不同来源废水的特点,需对分子筛进行改性并进一步优化修复工艺条件以实际应用。  相似文献   
4.
聚合氯化铝铁絮凝剂的性能研究   总被引:32,自引:2,他引:32  
高宝玉  王秀芬 《环境化学》1994,13(5):415-420
煤矸石是采煤过程之废料。本文利用煤矸石制备出了聚合氯化铝铁(PAFC):一种新型无机高分子絮凝剂,探讨了Fe^3+的稳定性与溶液离子强度之间的关系,发现溶液的离子强度越大,则产生Fe(OH)3沉淀时的PH越高。研究了PAFC水解产物的ζ电位及絮凝效果随PH的变化情况,比较了PAFC、PAC和PFS的除浊性能,PAFC在PH为7.0-8.2范围内除浊效果最佳,PAFC的除浊效果优于PAC。  相似文献   
5.
The biosorption potential of processed walnut shell for Pb(II) and Cd(II) ions from aqueous solutions was explored. The effects of pH, contact time, initial ion concentration, and amount of dried adsorbent were studied in batch experiments. The maximum adsorption was achieved within the pH range 4.0–6.0. The equilibrium data were well fitted by the Langmuir isotherm model. The maximum monolayer adsorption capacities were found to be 32?g?kg?1 and 11.6?g?kg?1 for Pb(II) and Cd(II) ions, respectively. Kinetic data were best described by the pseudo-second-order model. The structural features of the adsorbent were characterized by Fourier transform infrared spectroscopy, which confirmed the involvement of hydroxyl (–OH), carboxyl (–COO), and carbonyl (C=O) groups in metal sorption. This readily available adsorbent is efficient in the uptake of Pb(II) and Cd(II) ions from an aqueous solution and could be used for the treatment of wastewater streams bearing these metal ions.  相似文献   
6.
Ethyl alcohol, acetone, and petroleum ether extracts of three plant species belonging to three different botanical families [Strychnos nux-vomica (Loganiaceae), Euphorbia lathyrus (Euphorbiaceae), and Datura stramonlum (Solanaceae)], a chemical insecticide; profenofos and their combinations were tested against second and fourth instars of Spodoptera littoralis under lab conditions. Results revealed that the ethanol extract of S. nux-vomica was the most effective among all plant extracts, where the corrected mortality% were 92, 81, 58, and 27% to 2nd instar and 89, 74, 34, and 11% to 4th instar at concentrations 0.5, 0.25, 0.125, and 0.0625%, respectively. Calculated LC50's were 0.11, 0.22, and 0.34% to 2nd instar and 0.17, 0.37, and 0.52% to 4th instar for ethanol, petroleum ether, and acetone extracts, respectively. Acetone extracts of all plants were of lower effect. The chemical insecticide profenofos displayed higher efficacy than plant extracts (LC50 = 0.002 and 0.003% for S. littoralis 2nd and 4th larval instars, respectively). The co-toxicity factor reached 76 and 60 when mixing S. nux-vomica + profenofos and D. stramonlum + profenofos at ratio 1:1 against S. littoralis 2nd instar larvae, thus indicating a potentiating effect. While treatment of the 4th instar larvae by the same mixtures resulted in a co-toxicity factor below 20 at all mixing ratios indicating, only, an additive effect against this instar.  相似文献   
7.
Fungal pellets of Aspergillus niger 405,Aspergillus ustus 326,and Stachybotrys sp.1103 were used for the removal of humic substances from aqueous solutions.Batchwise biosorption,carried out at pH 6 and 25°C,was monitored spectrophotometrically and the process described with Freundlich’s model.Calculated sorption coeffcients Kf and n showed that A.niger exhibited the highest effciency.A good match between the model and experimental data and a high correlation coeffcient(R2)pointed out to judicious choice of ...  相似文献   
8.
For several decades, perfluorooctane sulfonate (PFOS) has widely been used as a fluorinated surfactant in aqueous film forming foams used as hydrocarbon fuel fire extinguishers. Due to concerns regarding its environmental persistence and toxicological effects, PFOS has recently been replaced by novel fluorinated surfactants such as Forafac®1157, developed by the DuPont company. The major component of Forafac®1157 is a 6:2 fluorotelomer sulfonamide alkylbetaine (6:2 FTAB), and a link between the trade name and the exact chemical structure is presented here to the scientific community for the first time. In the present work, the structure of the 6:2 FTAB was elucidated by 1H, 13C and 19F nuclear magnetic resonance spectroscopy and high-resolution mass spectrometry. Moreover, its major metabolites from blue mussel (Mytilus edulis) and turbot (Scophthalmus maximus) and its photolytic transformation products were identified. Contrary to what has earlier been observed for PFOS, the 6:2 FTAB was extensively metabolized by blue mussel and turbot exposed to Forafac®1157. The major metabolite was a deacetylated betaine species, from which mono- and di-demethylated metabolites also were formed. Another abundant metabolite was the 6:2 fluorotelomer sulfonamide. In another experiment, Forafac®1157 was subjected to UV-light induced photolysis. The experimental conditions aimed to simulate Arctic conditions and the deacetylated species was again the primary transformation product of 6:2 FTAB. A 6:2 fluorotelomer sulfonamide was also formed along with a non-identified transformation product. The environmental presence of most of the metabolites and transformation products was qualitatively demonstrated by analysis of soil samples taken in close proximity to an airport fire training facility.  相似文献   
9.
The photolysis of a rice herbicide Bispyribac sodium (Sodium 2, 6-bis [(4, 6-dimethoxypyrimidin-2-yl) oxy] benzoate) has been studied in different aqueous medium (distilled water, pond water and Irrigation water) under the influence of UV (λ max ≥ 250 nm) and sunlight in presence or absence of sensitizers (TiO2 and KNO3). The study was conducted under laboratory simulated condition which made it possible to evaluate the contribution of different factors viz. source of irradiation, solvent and sensitizers towards the photolysis of bispyribac sodium. The photodegradation proceeds via first order reaction Kinetics in all the cases. Five photo metabolites (M1-M5) were isolated in pure form by column chromatographic method from the irradiation system under UV influenced and TiO2 as sensitizer. From the different spectral data (IR, NMR, UV-VIS, Mass) the structure of these five metabolites were assigned as M1 (Phenol), M2 [2, 6-Dihydroxy benzoic acid], M3 [2, 6-bis [(4, 6 dimethoxypyrimidin-2yl) oxy] benzoic acid], M4 [2-(3-Hydroxy-phenoxy)-pyrimidine-4, 6-diol] and M5 as [2,4-Dihydroxy-3, 5-dimethoxy-6-(4-methoxy pyrimidine-2-yloxy)-benzoic acid]. Moreover, another six photometabolites (M6-M11) were identified from the different irradiation system on the basis of Micromass analysis. On the basis of MS/MS data analysis, the structure of these six photometabolites were assigned as M6 [2-(4, 6-Dimethoxy-pyrimidin-2-yloxy)-6-hydroxy-benzoic acid], M7 [2-Hydroxy-6-(4-hydroxy-6-methoxy-pyrimidin-2-yloxy)-benzoic acid], M8 [4, 6-Dimethoxy-pyrimidin-2-ol], M9 [6-Methoxy-pyrimidine-2, 4-diol], M10 [2-Hydroxy-6-(pyrimidin-2-yloxy)-benzoic acid] and M11 [2, 4, 6-Trimethoxy-pyrimidine]. The plausible Photodegradation pathways of bispyribac sodium in the present investigation were portrayed which proceeds via hydrolysis, hydrolytic cleavage, O-dealkylation, decarboxylation, dehydroxylation, O-alkylation and hydroxylation.  相似文献   
10.
Glandular trichomes on the leaves of wild tomato, L. hirsutum f. hirsutum Mull, also known as Solanum habrochaites (Solanaceae), synthesize and accumulate high levels of methyl ketones (MKs). L. hirsutum accession LA 407, having high concentration of MKs, was grown from seeds under greenhouse conditions. Four MKs (2-undecanone, 2-dodecanone, 2-tridecanone, and 2-pentadecanone) were screened for their toxicity to spider mites, Tetranychus urticae Koch and cowpea aphids, Aphis craccivora Koch. The objectives of this investigation were to: (1) develop a bioassay for testing MKs on spider mite and cowpea aphid mortality and (2) compare the efficacies of wild tomato leaf crude extracts and pure standard materials of MKs against spider mite and cowpea aphid mortality. Our results revealed that spider mites are most sensitive to 2-tridecanone (LC50 = 0.08 μmole cm?2 of treated leaf surface) and least sensitive to 2-undecanone (LC50 = 1.5 μmole cm?2 of treated leaf surface) 4 h after treatment. Similarly, 2-tridecanone caused greatest mortality (LC50 = 0.2 μmole cm?2 of treated leaf surface), whereas 2-undecanone caused the lowest morality (LC50 = 0.48 μmole cm?2 of treated surface) of cowpea aphid. We concluded that all MKs tested in this investigation are toxic to spider mites and aphids. 2-Tridecanone is more effective in killing mites and aphids compared to other MKs. Toxicity of crude extracts, prepared from the leaves of L. hirsutum accession LA 407, to spider mites and cowpea aphids revealed greater mortality compared to a combined mixture of MKs standard material (used at the same concentration as found on LA 407 leaves). This indicates that in addition to MKs, other unidentified compounds in LA 407 leaf extract also have pesticidal properties. Accordingly, leaf extracts of LA 407 could be explored in crop protection, and they might open a new area of MK formulations and discovery of biorational alternatives for pest control in agricultural fields.  相似文献   
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