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1.
几种多环芳烃的植物吸收作用及其对根系分泌物的影响   总被引:9,自引:3,他引:6  
采用水培试验方法,以多年生黑麦草(Lolium multiflorum Lam.)为供试植物,研究了芘、菲、苊和萘的植物吸收作用及其对根系分泌物的影响.结果表明,黑麦草能明显吸收富集多环芳烃(PAHs);随培养液中PAHs浓度的升高,其在黑麦草根和茎叶中的含量增大,且根的PAHs含量、富集系数要远大于茎叶.芘、菲、苊、萘污染胁迫下,黑麦草根系分泌物中可溶性有机碳、草酸和可溶性总糖的含量均高于无污染对照.供试污染浓度范围内,随着培养液中菲、苊、萘浓度提高,可溶性有机碳、草酸及可溶性总糖的分泌量增大;但在芘胁迫下,与污染对照相比,分泌量的增加幅度随着芘浓度的升高则呈先增大后减小的趋势.在较低污染强度下,供试PAHs对根系分泌物的促分泌效应由强到弱依次为芘、菲、苊和萘.4种PAHs对可溶性糖类的促分泌作用最强,其分泌量的增加幅度明显大于可溶性有机碳和草酸.  相似文献   

2.
Phytoremediation for phenanthrene and pyrene contaminated soils   总被引:9,自引:0,他引:9  
Phytoremediation of soil contaminated with phenanthrene and pyrene was investigated using twelve plant species. Plant uptake nd accumulation of these chemicals were evaluated. At the end of the experiment(45 d), the remaining respective concentrations of soil henanthrene and pyrene in spiked vegetated soils, with initial phenanthrene of 133.3 mg/kg and pyrene of 171.5 mg/kg, were 8.71-16.4 nd 44.9-65.0 mg/kg, generally 4.7%-49.4% and 7.1%-35.9% lower than their concentrations in the non-vegetated soils. The loss f phenanthrene and pyrene in vegetated spiked soils were 88.2%-93.0% and 62.3%-73.8% of the added amounts of these ontaminants, respectively. Although plant uptake and accumulation of these compounds were evident, and root concentrations and RCFs(root concentration factors; defined as the ratio of PAH concentrations in roots and in the soils on a dry weight basis) of these compounds ignificantly positively correlated to root lipid contents, plant uptake and accumulation only accounted for less than 0.01% and 0.23% of the nhanced loss of these chemicals in vegetated versus non-vegetated soils. In contrast, plant-promoted microbial biodegradation was the ominant mechanism of the phytoremediation for soil phenanthrene and pyrene contamination. Results from this study suggested a easibility of the establishment of phytoremediation for soil PAH contamination.  相似文献   

3.
不同碳源刺激对老化污染土壤中PAHs降解研究   总被引:1,自引:0,他引:1  
尹春芹  蒋新  王芳  王聪颖 《环境科学》2012,33(2):633-639
采用室内模拟试验,研究追加葡萄糖、DL-苹果酸、柠檬酸三钠、脲和乙酸铵碳源刺激下对老化污染土壤中PAHs的降解规律.结果表明,培养第1周内,添加碳源处理土壤CO2的释放量显著大于对照,其中外加DL-苹果酸处理土壤所释放的CO2量最大.各处理CO2的平均释放量顺序为脲>葡萄糖≈柠檬酸三钠≈DL-苹果酸≈乙酸铵>对照.添加碳源处理土壤所挥发的PAHs要显著小于对照,且3种PAHs的挥发量大小顺序为菲>荧蒽>苯并(b)荧蒽.添加碳源处理土壤中菲、荧蒽及苯并(b)荧蒽的平均降解速度均大于对照,其中添加DL-苹果酸和脲处理土壤中菲、荧蒽及苯并(b)荧蒽的降解较快.3种PAHs化合物之间相比较,苯并(b)荧蒽的残留比例最大,在72%~81%之间;其次为荧蒽,在53%~70%之间;菲最少,在27%~44%之间.  相似文献   

4.
以菲为多环芳烃(PAHs)代表物,采用温室水培试验方法,研究了黑麦草、苏丹草、墨西哥玉米、高羊茅、三叶草等5种植物根亚细胞中菲的分配作用.结果表明,经144h培养,随着培养液中菲平衡浓度由0.056mg·L-1增至0.39mg·L-1,黑麦草根、细胞壁、细胞器中菲的含量分别从26.85、20.01和36.19mg·kg-1增大到56.91、49.54和59.77mg·kg-1,富集系数则分别由357.14、479.49和649.25L·kg-1降低到145.92、127.04和153.26L·kg-1.黑麦草根及亚细胞组分中菲的含量大小为细胞器根细胞壁,其中细胞器中菲含量要比细胞壁高21%~163%.水中菲的起始浓度均为1mg·L-1时,144h后,供试5种植物根细胞器中菲的含量(48.64~145.2mg·kg-1)均大于细胞壁(15.86~74.49mg·L-1).5种植物根亚细胞中菲分配的比例大小顺序为细胞器细胞壁可溶部分;其中,根内46%~53%和31%~40%的菲分别分布在细胞器和细胞壁中.  相似文献   

5.
水溶性有机物对植物吸收菲的影响及其机制研究   总被引:12,自引:6,他引:6  
水培小麦试验研究了水溶性有机物(DOM)对植物吸收多环芳烃(菲)的影响,并对其机制进行了初步探讨.结果表明:菲抑制了植物的生长,抑制率达到18.01%,DOM可加剧菲对植物生长的抑制作用,使生长抑制率升至24.38%;植物可吸收和富集水培液中的菲,而DOM能明显地促进植物对菲的吸收和富集作用,使得其根部浓缩系数高达37.63 L·kg-1,同时DOM还能促进根部吸收的菲向地上部转运;植物在吸收菲的同时,使得营养介质的pH显著升高,DOM与菲存在显著的协同交互作用,可使介质pH值的升高  相似文献   

6.
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   

7.
Adsorption experiments were carried out to investigate the sorption behaviors of naphthalene and phenanthrene in six different soils and to determine the effects of temperature, linear alkylbenzene sulfonate (LAS) and cetylrimethyl ammonium bromide (CTAB) on sorption. The results show that for a given sorbent phenanthrene exhibited greater nonlinear and stronger sorption than naphthalene. There was a strong negative correlation for the Koc values with organic carbon content (foc). The increase of temperature was not favorable to sorption. Sorption decreased along with the increasing aqueous LAS concentration from 0 to 1000 mg/L. At low CTAB concentration (< 100 mg/L), the adsorption increased as CTAB hemimicelles formed on the soil surface. At high concentration, CTAB decreased the adsorption by occupying active hydrophobic adsorption sites and solubilization of naphthalene and phenanthrene.  相似文献   

8.
Seedling emergence tests were conducted in a meadow brown soil using five plant species ( i. e., Chinese cabbage, green onion, tomato, turnip and wheat) to determine the phytotoxicity of phenanthrene, pyrene and their mixtures. The soil was amended with up to 1000mg/kg soil of phenanthrene or 600 mg/kg soil of pyrene. Seedling emergence and root growth were measured. The results indicated that root elongation was more sensitive than seedling emergence. Root length decreased with increasing phenanthrene or pyrene concentrations(p≤0.05). Phenanthrene was more phytotoxic than pyrene. The lowest observable adverse effect concentration(LOAEC) was 10mg/kg for phenanthrene when tested with green onion, and 50mg/kg for pyrene when tested with wheat. Among the five species, wheat was found to be the most sensitive. When amended jointly at or below their respective LOAEC, phenanthrene and pyrene produced a synergistic toxic effect.  相似文献   

9.
蚯蚓细胞色素P450生物标记物方法研究   总被引:9,自引:0,他引:9  
以蚯蚓(Eisenia fetida)为试验动物,通过强化预处理(盐水洗脱)、改变离心力和溶解微粒体膜等实验,建立了蚯蚓细胞色素P450含量的定性、定量测定方法.在此基础上,以多环芳烃(菲)为供试外源污染物,分别以滤纸接触法和土壤投加法,进行了蚯蚓细胞色素P450含量与菲污染诱导的量-效关系试验.结果表明,增加和调整离心力,加入增溶剂等方法,可有效去除干扰,使蚯蚓微粒体样品的450峰值由完全被干扰掩盖(在455~457nm处滞后出现),转变为在450nm±1nm达到最大值.滤纸接触试验(10-6,10-5,10-4,10-3和10-2mg·mL-1)和土壤染毒试验(1,2,4,8 mg·kg-1)均表明,蚯蚓体内P450含量与菲浓度存在量-效关系.对土壤染毒不同诱导时间(1,3,7,14,28d)的测定结果表明,不同浓度的菲对蚯蚓毒性为诱导刺激(7d)效应和诱导抑制(14d和28d)效应,导致蚯蚓体内P450总量分别为对照组的0.99~1.41倍及0.77~0.88倍(p<0.05).蚯蚓细胞色素P450含量测定方法具有简单、快速、低耗、敏感的优点,是适合于土壤低剂量污染暴露毒性诊断的生物标记物指标.  相似文献   

10.
苜蓿对多环芳烃菲污染土壤的修复作用研究   总被引:23,自引:2,他引:21  
采用盆栽试验方法,研究了苜蓿(Medicago sativa L.)对多环芳烃菲污染土壤的修复作用.结果表明,多环芳烃菲对苜蓿的生长具有抑制作用,土壤中菲初始浓度越高抑制作用越明显.445.22 mg/kg条件下苜蓿茎叶和根的生物量最小,仅为无污染对照土壤的57.31%和31.20%.经过60 d的修复试验,苜蓿能够明显促进土壤中菲的降解.根际和非根际土壤中菲的去除率分别为85.68%~91.40%和75.25%~86.61%.同处理中根际土壤中菲残留浓度低于非根际土壤,而脱氢酶活性高于非根际土壤.无论是在非根际还是根际土壤中随着菲初始浓度增大,菲降解率和脱氢酶活性降低.脱氢酶活性与降解率的关系表明,脱氢酶活性与菲降解率显著正相关.所以植物根系的存在能够有效促进土壤中多环芳烃菲的降解.  相似文献   

11.
为了探明14CO2在环境中的行为,采用核素示踪技术研究了蚕豆-土壤系统对14CO2的吸收和积累动态.结果表明,通过蚕豆叶片光合作用从空气中吸收的14CO2会向蚕豆其他部位组织输送并形成积累趋势,被检测到的14C比活度数值比较大,表明空气中的14CO2易于通过叶片吸收而进入蚕豆各组织器官中;蚕豆各部位组织中14C比活度随时间呈线性增长,增长速率介于20.3~45.1Bq/(g×d),大小次序为:叶>茎>根>豆壳>豆粒.蚕豆对14CO2(14C)具有较强的富集作用,各部位的富集系数随时间呈快速增加, 其中叶片中的富集系数最高(56d时高达31.61),豆壳次之(56d时达25.57).利用蚕豆的这一富集特性可监测大气14CO2污染的情况.  相似文献   

12.
用~(14)C标记直链烷基苯磺酸盐,(~(14)C-LAS),研究了在由塘泥、水草、鱼、螺蛳和溞构成的室内模拟水生态系统中,LAS的降解规律、在水生生物体内的积累分布及其与在水中降解之间的相互关系.  相似文献   

13.
采用水培法研究了海洋滩涂耐盐植物海马齿(Sesuvium portu lacastrum Linn.)对海水菲污染的修复作用.结果显示,实验4d后,不种植海马齿的对照组、种植海马齿的抑菌组和不抑菌组海水中菲浓度分别从0.988、0.942和0.957mg·L-1降至0.553、0.185和0.070mg·L-1,降低了44.0%、80.4%和92.7%;与对照组相比,抑菌组(T1)和不抑菌组(T2)海水中菲的去除率分别提高了36.4%和48.7%,不抑菌组又比抑菌组高12.3%.利用差减法计算的结果显示,在与自然水体接近的不抑菌条件下,菲的非生物损失、海马齿的作用和微生物的作用,三者对海水中菲浓度降低(92.7%)的贡献分别为44.0%、36.4%和12.3%,海马齿植株内菲的积累量则仅占海水中菲减少量的2.6%.研究表明,水培海马齿可明显提高菲污染海水中菲的去除率,其中,植物与微生物共同发挥着重要的作用,但植物积累不是海马齿修复海水菲污染的主要机制.  相似文献   

14.
文章以标准纤维素为对照吸附剂,以菲为对照吸附质,采用批量平衡振荡法进行吸附实验,研究不同pH条件下,小麦根吸附极性污染物(2,4-二氯苯酚和硝基苯)的行为差异。结果表明:污染物吸附以疏水性分配为主,吸附系数(K_d)值随化合物疏水性的增强而增强;非解离型极性污染物(硝基苯)的吸附与疏水性污染物(菲)类似,吸附等温线呈线性,相关系数(R2)均大于0.98,同时pH对吸附的影响无显著性差异(P>0.05);解离型极性污染物(2,4-二氯苯酚)的吸附随pH增加而降低,仅在pH 5.0时呈现吸附线性,在pH 7.0和8.0时均呈非线性,等温线逐渐向浓度轴弯曲,这源于疏水作用以及解离的2,4-二氯苯酚与吸附剂之间静电作用的共同影响。根的吸附能力大于纤维素,这与根中含有类脂物质有关。  相似文献   

15.
To demonstrate the existence of light thresholds in plant growth and to examine the effects of elevated CO2 on the shade tolerance of a tree species, an experiment consisting of a completely randomized design for a total of 96 yellow birch (Betula alleghaniensis Britton) seedlings was conducted with 3 light levels (2.9%, 7.7%, 26.1% of full sunlight)×2 CO2 levels (350 and 700±10 ppm) with 4 replications in a phytotron. The study proved that thresholds exist and they vary in different plant organs. In ambient CO2, the thresholds were 13.3%, 18.7%, 15.0%, 15.2%, and 15.6% of full sunlight for stem, leaf, root, total plant biomass, and the averaged value, respectively. In 700 ppm CO2, the corresponding thresholds were 16.7%, 21.3%, 18.1%, 21.7% and 19.5% for stem, leaf, root, total plant biomass, and the averaged value, respectively. The lowest threshold in the stem is an indicator of the minimal light intensity for regular growth for seedlings of this species. Below this threshold, light-stressful growth occurs. The result of a paired t-test indicated that the thresholds in elevated CO2 were significantly higher than in ambient CO2. This suggests that yellow birch will lose its moderate shade tolerance, evolutionally becoming a shade-intolerant species, and that it may become more difficult to naturally regenerate in the future.  相似文献   

16.
珠江广州段沉积物中PAHs生态风险的蒙特卡洛模拟   总被引:2,自引:0,他引:2       下载免费PDF全文
以珠江广州段24个采样站位表层沉积物的实测16种多环芳烃(PAHs)浓度为基础资料,采用基于Logistic混沌迭代序列改进的蒙特卡洛算法对珠江广州段沉积物中PAHs的生态风险发生概率进行了定量分析.研究结果表明:PAHs风险排序从大到小依次是:菲>芘>荧蒽> >苯并[a]蒽>苯并[a]芘>二苯并[a,h]蒽.菲、芘和荧蒽引发水生生态风险概率较大,应重点关注.除菲外,其余6种PAHs暴露浓度对生态风险发生概率的贡献率均超过90%,可见PAHs在本区域环境中的风险大小主要取决于其暴露量.  相似文献   

17.
The effects of maize root exudates and low-molecular-weight-organic anions (LMWOAs) on the desorption of phenanthrene from eight artificially contaminated soils were evaluated. A significant negative correlation was observed between the amounts of phenanthrene desorbed and the soil organic carbon (SOC) contents (P<0.01), and the influences of soil pH and clay content on phenanthrene desorption were insignificant (P>0.1). Neither maize root exudates nor oxalate and citrate anions influenced desorption of phenanthrene with the addition of NAN3. A faster phenanthrene desorption occurred without the addition of NaN3 in the presence of maize root exudates than oxalate or citrate due to the enhanced degradation by root exudates. Without the addition of NaN3, oxalate or citrate at different concentrations could inhibit phenanthrene desorption to different extents and the inhibiting effect by citrate was more significant than by oxalate. This study leads to the conclusion that maize root exudates can not enhance the desorption under abiotic condition with the addition of NaN3 and can promote the desorption of phenanthrene in soils without the addition of NAN3.  相似文献   

18.
利用天敌控制水葫芦疯长研究   总被引:11,自引:0,他引:11  
水葫芦象甲对23个科、46种植物不产生危害,只取食水葫芦,是单食性昆虫。象甲对水葫芦重量控制平均为54.3%,株高控制为42.4%,根长控制为19.2%,叶片控制为10.6%,植株分蘖控制率达32%。象甲在昆明具有良好的生物学适应性。对控制滇池水葫芦疯长,恢复生物多样性、保持生态平衡具有重要价值。  相似文献   

19.
Phytoremediation has long been recognized as a cost-effective method for the removal of polycyclic aromatic hydrocarbons (PAHs) from soil. A study was conducted to investigate the uptake and accumulation of PAHs in root and shoot of Lolium perenne L. Pot experiments were conducted with series of concentrations of 3.31-378.37 mg/kg for phenanthrene and those of 4.22-365.38 mg/kg for pyrene in a greenhouse. The results showed that both ryegrass roots and shoots did take up PAHs from spiked soils, and generally increased with increasing concentrations of PAH in soil. Bioconcentration factors(BCFs) of phenanthrene by shoots and roots were 0.24- 4.25 and 0.17-2.12 for the same treatment. BCFs of pyrene by shoots were 0.20-1.5, except for 4.06 in 4.32 mg/kg treatment, much lower than BCFs of pyrene by roots (0.58-2.28). BCFs of phenanthrene and pyrene tended to decrease with increasing concentrations of phenanthrene and pyrene in soil. Direct uptake and accumulation of these compounds by Lolium perenne L. was very low compared with the other loss pathways, which meant that plant-promoted microbial biodegradation might be the main contribution to plant-enhanced removal of phenanthrene and pyrene in soil. However, the presence of Lolium perenne L. significantly enhanced the removal of phenanthrene and pyrene in spiked soil. At the end of 60 d experiment, the extractable concentrations of phenanthrene and pyrene were lower in planted soil than in non-planted soil, about 83.24%-91.98% of phenanthrene and 68.53%-84.10% of pyrene were removed from soils, respectively. The results indicated that the removal of PAHs in contaminated soils was a feasible approach by using Lolium perenne L.  相似文献   

20.
Fe(VI)/Fenton联合体系降解多环芳烃的效果良好,但其机理及降解路径仍需进一步被探究.采用荧光及GC-MS技术,考察弱酸条件下Fe(VI)降解菲的效果,并对比中性及碱性条件研究其氧化机理,进而分析Fe(VI)/Fenton联合体系对菲的作用机理及菲的降解路径.结果表明,弱酸条件下Fe(VI)氧化菲时,·OH参与反应较少,起氧化作用的可能为中间高价态铁.在该条件下,Fe(VI)对菲的降解效果稍差于中性及碱性,但此时Fe(VI)的高氧化性能可提高菲的矿化效果.联合氧化体系中,菲逐步被氧化、羟基化、脱碳、加氢而最终转化为CO2和H2O,主要的中间产物为邻苯二甲酸酯衍生物和9-芴甲醛衍生物.联合氧化体系可合理利用Fe(VI)氧化过程中产生的Fe(II),并发挥高价态铁与·OH在氧化性能上的优势,实现对菲及产物的降解与矿化.  相似文献   

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