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1.
Due to the unique antibacterial activities, silver nanoparticles (AgNPs) have been extensively used in commercial products. Anthropogenic activities have released considerable AgNPs as well as highly toxic silver ion (Ag+) into the aquatic environment. Our recent study revealed that ubiquitous natural organic matter (NOM) could reduce Ag+ to AgNP under natural sunlight. However, the toxic effect of this process is not well understood. In this work, we prepared mixture solution of Ag+ and AgNPs with varied Ag+% through the sunlight-driven reduction of Ag+ by NOM and investigated the acute toxicity of the solutions on Daphnia magna. Formation of AgNPs was demonstrated and characterized by comprehensive techniques and the fraction of unconverted Ag+ was determined by ultrafiltration-inductively coupled plasma mass spectrometry determination. The formation of AgNPs enhanced significantly with the increasing of solution pH and cumulative photosynthetically active radiation of sunlight. The toxicity of the resulting solution was further investigated by using freshwater crustacean D. magna as a model and an 8 hr-median lethal concentration (LC50) demonstrated that the reduction of Ag+ by NOM to AgNPs significantly mitigated the acute toxicity of silver. These results highlight the importance of sunlight and NOM in the fate, transformation and toxicity of Ag+ and AgNPs, and further indicate that the acute toxicity of AgNPs should be mainly ascribed to the dissolved Ag+ from AgNPs.  相似文献   

2.
通过对桡足类动物红纺锤水蚤(Acartia erythraea)分别在Cu2 、Ag 、Cu2 Ag 混合溶液中的暴露实验,测定了其对Cu2 、Ag 的吸收速率常数、排出速率常数,并对Cu2 和Ag 在动物体内的分布状况进行了分析.结果表明,在单金属暴露的条件下,红纺锤水蚤对Cu2 、Ag 的吸收速度分别为1.09×104L·g-1·d-1、3.31×104L·g-1·d-1,排出速率常数分别为0.096 d-1、0.1056 d-1.而在Cu2 Ag 的混合暴露体系中,红纺锤水蚤对Cu2 、Ag 的吸收速率分别下降到9.17×103 L·g-1·d-1、2.87×104L·g-1-d-1,Cu2 和Ag 的排出速度常数则分别降到0.084 d-1和0.1008 d-1.动态模型的模拟结果表明,Cu2 和Ag 存在一定程度的拮抗作用.与暴露在单金属溶液中的红纺锤水蚤相比较,在暴露于Cu2 、Ag 混合体系中动物体内的非极性部分所占的比重明显增加,说明其在食物链中对于上一营养级的生物有效性将明显增加.  相似文献   

3.
The inevitable release of engineered silver nanoparticles (AgNPs) into aquatic environments has drawn great concerns about its environmental toxicity and safety. Although aggregation and transformation play crucial roles in the transport and toxicity of AgNPs, how the water chemistry of environmental waters influences the aggregation and transformation of engineered AgNPs is still not well understood. In this study, the aggregation of polyvinylpyrrolidone (PVP) coated AgNPs was investigated in eight typical environmental water samples (with different ionic strengths, hardness, and dissolved organic matter (DOM) concentrations) by using UV–visible spectroscopy and dynamic light scattering. Raman spectroscopy was applied to probe the interaction of DOM with the surface of AgNPs. Further, the photo-transformation and morphology changes of AgNPs in environmental waters were studied by UV–visible spectroscopy, inductively coupled plasma mass spectrometry, and transmission electron microscopy. The results suggested that both electrolytes (especially Ca2 + and Mg2 +) and DOM in the surface waters are key parameters for AgNP aggregation, and sunlight could accelerate the morphology change, aggregation, and further sedimentation of AgNPs. This water chemistry controlled aggregation and photo-transformation should have significant environmental impacts on the transport and toxicity of AgNPs in the aquatic environments.  相似文献   

4.
The widely use of silver nanoparticles (AgNPs) as antimicrobial agents gives rise to potential environmental risks. AgNPs exposure have been reported to cause toxicity in animals. Nevertheless, the known mechanisms of AgNPs toxicity are still limited. In this study, we systematically investigated the toxicity of AgNPs exposure using Drosophila melanogaster. We show here that AgNPs significantly decreased Drosophila fecundity, the third-instar larvae weight and rates of pupation and eclosion in a dose-dependent manner. AgNPs reduced fat body cell viability in MTT (3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide) assays. AgNPs caused DNA damage in hemocytes and S2 cells. Interestingly, the mRNA levels of the entire metallothionein gene family were increased under AgNPs exposure as determined by RNA-seq analysis and validated by qRT-PCR, indicating that Drosophila responded to the metal toxicity of AgNPs by producing metallothioneins for detoxification. These findings provide a better understanding of the mechanisms of AgNPs toxicity and may provide clues to effect on other organisms, including humans.  相似文献   

5.
Degradation of organic contaminants with simultaneous recycling of Ag+ from silver-containing organic wastewater such as photographic effluents is desired. Although photoelectrocatalysis (PEC) technology is a good candidate for this type of wastewater, its reaction kinetics still needs to be improved. Herein, peroxymonosulfate (PMS) was employed to enhance the PEC kinetics for oxidation of phenol (PhOH) at the anode and reduction of Ag+ at the cathode. The degradation efficiency of phenol (PhOH, 0.1 mmol/L) was increased from 42.8% to 96.9% by adding 5 mmol/L PMS at a potential of 0.25 V. Meanwhile, the Ag (by wt%) deposited on the cathode was 28.1% (Ag2O) in PEC process, while that of Ag (by wt%) was 69.7% (Ag0) by adding PMS. According to the electrochemistry analysis, PMS, as photoelectrons acceptor, enhances the separation efficiency of charges and the direct h+ oxidation of PhOH at the photoanode. Meantime, the increasing cathode potential avoided H2 evolution and strongly alkaline at the surface of cathode, thus enabling the deposition of Ag+ in the form of metallic silver with the help of PMS. In addition, PMS combined with PEC process was effective in treating photographic effluents.  相似文献   

6.
Natural organic matter (NOM) is known to play an important role in the transport and binding of trace metal elements in aquatic and soil systems. Thallium is a pollutant for which the extent of the role played by NOM is poorly known. Consequently, this study investigates thallium(I) and its complexation to a purified humic substance as proxy for NOM. Experiments were performed with the Donnan Membrane Technique to separate, for the first time, the free Tl+ ion from its complexed form in the bulk solution. Various pH and concentrations were investigated at constant ionic strength and constant NOM proxy concentrations in solution. Experimental results were described with NICA-Donnan model. Thallium complexation was compared to silver complexation using literature data and using the same NICA-Donnan formalism. Parameters for these two cations (Tl+ and Ag+) are reported in this article, for the first time. Results display low thallium complexation to the NOM proxy while silver competes with divalent cations for the NOM binding sites. Calculated speciation for dissolved thallium highlights the dominance of free thallium (Tl+) in solution whereas Tl-NOM complexes contribute roughly 15% to total Tl(I) species in river and lake type waters. Similar results are obtained for soil solutions, Tl-bound to NOM < 30% of total, from UK soils with different land use and geochemistry.  相似文献   

7.
全氟辛酸(PFOA)广泛应用于工业生产中,具有高度的生物毒性及生物蓄积性,然而PFOA对环境微生物的毒性影响仍有待深入开展.通过流式细胞术测定了酵母菌在不同浓度PFOA胁迫下细胞膜通透性、ROS、线粒体跨膜电位的变化,并且测定了MDA含量和Na+K+-ATPase、Ca2+Mg2+-ATPase活性变化.结果显示PFOA可使PI染色细胞比例增高,酿酒酵母细胞膜通透性增大、ROS和MDA含量升高、线粒体跨膜电位降低,且ROS含量、MDA含量与线粒体跨膜电位降幅均与PFOA胁迫浓度和时间呈正相关.Na+K+-ATPase、Ca2+Mg2+-ATPase活性先上升后降低,表明酿酒酵母在PFOA胁迫下,其生理活性受到抑制甚至发生细胞凋亡.证明PFOA对酿酒酵母具有生物毒性,100 mg·L-1PFOA对酿酒酵母具有即时毒性.该结果可为PFOA的影响评价提供更多依据.  相似文献   

8.
Released Ag ions or/and Ag particles are believed to contribute to the cytotoxicity of Ag nanomaterials, and thus, the cytotoxicity and mechanism of Ag nanomaterials should be dynamic in water due to unfixed Ag particle:Ag+ ratios. Our recent research found that the cytotoxicity of PVP-Ag nanoparticles is attributable to Ag particles alone in 3 hr bioassays, and shifts to both Ag particles and released Ag+ in 48 hr bioassays. Herein, as a continued study, the cytotoxicity and accumulation of 50 and 100 nm Ag colloids in Escherichia coli were determined dynamically. The cytotoxicity and mechanisms of nano-Ag colloids are dynamic throughout exposure and are derived from both Ag ions and particles. Ag accumulation by E. coli is derived mainly from extracellular Ag particles during the initial 12 hr of exposure, and thereafter mainly from intracellular Ag ions. Fe3+ accelerates the oxidative dissolution of nano-Ag colloids, which results in decreasing amounts of Ag particles and particle-related toxicity. Na+ stabilizes nano-Ag colloids, thereby decreasing the bioavailability of Ag particles and particle-related toxicity. Humic acid (HA) binds Ag+ to form Ag+-HA, decreasing ion-related toxicity and binding to the E. coli surface, decreasing particle-related toxicity. HA in complex conditions showed a stronger relative contribution to toxicity and accumulation than Na+ or Fe3+. The results highlighted the cytotoxicity and mechanism of nano-Ag colloids are dynamic and affected by environmental factors, and therefore exposure duration and water chemistry should be seriously considered in environmental and health risk assessments.  相似文献   

9.
纳米银与石墨烯对土壤微生物及土壤酶的影响   总被引:2,自引:0,他引:2  
采用室内暗培养试验分别探究了纳米银与石墨烯对土壤微生物及土壤酶的不同影响.将不同剂量的纳米银(0、10、100、150 mg·kg~(-1))与高纯石墨烯(0、10、100、1000 mg·kg~(-1))分别与等量棕壤充分混匀,然后进行暗培养.在第3、7、15、30和60 d时取样,测定土壤脲酶、土壤碱性磷酸酶、土壤脱氢酶和土壤过氧化氢酶的活性及土壤细菌、真菌和放线菌的数量,并在培养期间测定土壤呼吸速率及CO2累积量.结果表明,所有纳米银处理均抑制土壤的呼吸作用,并且剂量越高,抑制作用越明显;而石墨烯处理未对土壤呼吸产生显著影响.10 mg·kg~(-1)纳米银处理下,土壤真菌数量在整个培养期内均显著低于对照,土壤细菌在第60 d时也被显著抑制,但土壤放线菌数量无变化;与对照相比,100和150 mg·kg~(-1)的纳米银处理显著降低了土壤细菌、真菌、放线菌的数量.10和100 mg·kg~(-1)的石墨烯处理下,土壤细菌、真菌、放线菌数量则均无显著变化.1000 mg·kg~(-1)的石墨烯显著增加了土壤中细菌与真菌的数量,却对土壤放线菌数量无影响.纳米银处理显著抑制土壤脲酶、脱氢酶活性,却对土壤过氧化氢酶与磷酸酶活性基本无影响.10和100 mg·kg~(-1)石墨烯处理对土壤脲酶有一定的促进作用,1000 mg·kg~(-1)石墨烯处理对土壤过氧化氢酶和脱氢酶有一定的促进作用,而不同剂量的石墨烯在培养后期均对碱性磷酸酶产生抑制作用.总体来说,纳米银在一定程度上对土壤酶及土壤微生物结构产生了负面影响,而石墨烯对土壤酶及土壤微生物结构的影响不明显.  相似文献   

10.
湘西花垣矿区主要植物种类及优势植物重金属蓄积特征   总被引:2,自引:2,他引:2  
矿区重金属污染严重,寻找和发现适合当地气候与土壤条件的重金属耐性植物是矿区植被恢复和污染土壤修复的前提.通过对湘西花垣县锰矿、铅锌矿区植被调查,共记录到高等植物76种,隶属69属,39科.对两矿区的主要优势植物及其土壤重金属含量进行了测定、分析,结果表明,两矿区土壤Pb、Zn、Cd含量均超过国家土壤环境质量二级标准阈值,对矿区土壤造成了污染.主要优势植物均能适应矿区土壤重金属元素较高的环境,对重金属具有一定的耐性,但不同植物对重金属的吸收和蓄积特征不同,油茶、芒萁吸收的重金属主要分布在地上部分,属于金属富集型植物,适于修复湘西矿区重金属污染中等且使用价值较高的污染土壤;灰白毛莓、山莓、毛萼莓、魁蒿、蕨吸收的重金属主要累积在根部,属于根部囤积型植物;芒草、白茅、箬竹、飞龙掌血根、茎、叶重金属含量均较低,属于重金属规避型植物.这2种类型的植物适合种植在湘西矿区重金属污染严重、使用价值相对较低、面积较大的矿山废弃地.  相似文献   

11.
High quality zeolite A was synthesized through a hydrothermal process using alkaline-assisted pre-activated halloysite mineral as the alumina and silica source. The synthesis conditions employed in this study were finely tuned by varying the activating temperature, sodium hydroxide content, water content and Si/Al ratio. The obtained zeolite A showed excellent adsorption properties for both single metal cation solutions and mixed cation solutions when the concentrations of the mixed cations were comparable with those in polluted natural river water and industrial wastewater. High adsorptive capacities for Ag+ (123.05 mg/g) and Pb2 + (227.70 mg/g) were achieved using the synthesized zeolite A. This observation indicates that the zeolite A synthesized from alkaline-assisted pre-activated halloysite can be used as a low-cost and relatively effective adsorbent to purify heavy metal cation polluted natural river water and industrial wastewater.  相似文献   

12.
A new technique whereby cellulase immobilized on aminated silica was applied to catalyze the degradation of dicofol, an organochlorine pesticide. In order to evaluate the performance of free and immobilized cellulase, experiments were carried out to measure the degradation efficiency. The Michaelis constant, Km, of the reaction catalyzed by immobilized cellulase was 9.16 mg/L, and the maximum reaction rate, Vmax, was 0.40 mg/L/min, while that of free cellulase was Km = 8.18 mg/L, and Vmax = 0.79 mg/L/min, respectively. The kinetic constants of catalytic degradation were calculated to estimate substrate affinity. Considering that metal ions may affect enzyme activity, the effects of different metal ions on the catalytic degradation efficiency were explored. The results showed that the substrate affinity decreased after immobilization. Monovalent metal ions had no effect on the reaction, while divalent metal ions had either positive or inhibitory effects, including activation by Mn2 +, reversible competition with Cd2 +, and irreversible inhibition by Pb2 +. Ca2 + promoted the catalytic degradation of dicofol at low concentrations, but inhibited it at high concentrations. Compared with free cellulase, immobilized cellulase was affected less by metal ions. This work provided a basis for further studies on the co-occurrence of endocrine-disrupting chemicals and heavy metal ions in the environment.  相似文献   

13.
针对当前含银废液综合回收利用率低,以及不当排放造成严重环境污染等问题.本研究以邻苯二酚为原料,经亲核取代、酰氯酰化、缩合反应制得一种全新结构硫杂冠醚7,10-二硫杂苯并-18-冠-6(硫杂冠醚3,Thia18C6),产物经核磁共振氢谱(~1H NMR)、X-射线衍射单晶进行了结构表征,进而采用溶剂萃取的方法考察了其对不同金属离子的选择性萃取能力.结果表明,在单一体系下,Thia18C6对银离子表现出较为优异的萃取能力,萃取率可达97.68%,而在多种杂质离子(Cu~(2+)、Pb~(2+)、Zn~(2+)和Ni~(2+))共存的复杂体系中,Thia18C6对银离子表现出了较强的选择性.  相似文献   

14.
用TTC与INT-电子传递体系活性表征重金属对污泥活性的影响   总被引:27,自引:7,他引:20  
研究了不同浓度的Cu2+、Zn2+、Cd2+、Hg2+、Ni2+、Pb2+和Ag+对污泥TTC和INT 电子传递体系活性产生的影响 ,比较了这 2个参数在表征污泥活性受重金属抑制时的灵敏性 .结果表明 ,各种重金属抑制污泥TTC 电子传递体系活性的IC50小于抑制INT 电子传递体系活性的IC50,TTC 电子传递体系活性反映重金属毒性作用的灵敏性大于INT 电子传递体系活性 .实验的重金属离子呈现出不同的毒性作用 ,以TTC 电子传递体系活性为评价参数 ,毒性顺序为 :Hg2+>Cd2+>Cu2+>Ag+>Zn2+>Ni2+>Pb2+,以INT 电子传递体系活性为评价参数 ,毒性顺序为 :Hg2+>Ag+>Cu2+>Cd2+>Zn2+>Ni2+>Pb2+.  相似文献   

15.
Nitrogen deposition has dramatically altered biodiversity and ecosystem functioning on the earth; however, its effects on soil bacterial community and the underlying mechanisms of these effects have not been thoroughly examined. Changes in ecosystems caused by nitrogen deposition have traditionally been attributed to increased nitrogen content. In fact, nitrogen deposition not only leads to increased soil total N content, but also changes in the NH4+-N content, NO3--N content and pH, as well as changes in the heterogeneity of the four indexes. The soil indexes for these four factors, their heterogeneity and even the plant community might be routes through which nitrogen deposition alters the bacterial community. Here, we describe a 6-year nitrogen addition experiment conducted in a typical steppe ecosystem to investigate the ecological mechanism by which nitrogen deposition alters bacterial abundance, diversity and composition. We found that various characteristics of the bacterial community were explained by different environmental factors. Nitrogen deposition decreased bacterial abundance that is positively related to soil pH value. In addition, nitrogen addition decreased bacterial diversity, which is negatively related to soil total N content and positively related to soil NO3--N heterogeneity. Finally, nitrogen addition altered bacterial composition that is significantly related to soil NH4+-N content. Although nitrogen deposition significantly altered plant biomass, diversity and composition, these characteristics of plant community did not have a significant impact on processes of nitrogen deposition that led to alterations in bacterial abundance, diversity and composition. Therefore, more sensitive molecular technologies should be adopted to detect the subtle shifts of microbial community structure induced by the changes of plant community upon nitrogen deposition.  相似文献   

16.
The creation of an environmentally friendly synthesis method for silver nanomaterials (AgNPs) is an urgent concern for sustainable nanotechnology development. In the present study, a novel straightforward and green method for the preparation of silver nanoparticle/reduced graphene oxide (AgNP/rGO) composites was successfully developed through the combination of phytosynthesis, continuous flow synthesis and microwave-assistance. Oriental persimmon (Diospyros kaki Thunb.) extracts were used as both plant reducing and capping agents for fast online synthesis of AgNP/rGO composites. The experimental parameters were optimized and the morphologies of the prepared materials were investigated. The characterization results reveal that spherical AgNPs were quickly synthesized and uniformly dispersed on rGO sheets using the proposed online system. Fourier transform infrared spectroscopy analysis confirmed that phenols, flavonoids, and other substances in the plant extracts played a decisive role in the synthesis of AgNP/rGO composites. Using sodium borohydride (NaBH4) degradation of p-nitrophenol (4-NP) as a model, the catalytic activity of the prepared AgNP/rGO materials was evaluated. The complete degradation of 4-NP was achieved within 12 min through the use of AgNP/rGO materials, and the composite had a much better catalytic activity than the bare AgNPs and rGO had. Compared with the conventional chemical method, our online method is facile, fast, cost-efficient, and environmentally friendly.  相似文献   

17.
以纳米银(AgNPs)为研究对象,Ag+(AgNO3)为对照,通过添加半胱氨酸(L-cysteine)探讨小麦对AgNPs的吸收累积和毒性响应.小麦幼苗于不同浓度的AgNPs悬浮液中培养4h后,根系出现氧化应激反应和细胞膜损伤,丙二醛(MDA)和过氧化氢酶(CAT)含量分别由对照组的(2.9±0.5)nmol/L/mgprot和(8.6±1.2)U/mgprot增加至(4.9±1.5)nmol/L/mgprot和(12.4±1.2)U/mgprot.半胱氨酸缓解了AgNO3对小麦的毒性并使小麦对AgNO3的吸收速率常数从(275.4±12.3)L/(kg×h)降低到(210.8±11.2)L/(kg×h).然而,半胱氨酸并没有缓解AgNPs对小麦的毒性,且AgNPs的吸收速率常数没有显著性变化[(12.6±0.8)和(11.2±0.6)L/(kg×h)].这说明AgNPs对小麦的有效性和毒性不仅来源于其释放的Ag+,还来源于纳米颗粒本身.通过进一步计算AgNPs暴露液中不同形态Ag的吸收速率常数,发现Ag+吸收速率常数最高[(275.4±12.3)L/(kg×h)],Ag-cysteine络合物吸收速率常数次之[(210.8±11.2)L/(kg×h)],纳米颗粒吸收速率常数最低[1.6L/(kg×h)].实验中建立了吸收速率常数预测方程,该方程预测结果与实验观测结果一致,说明该方程能够较好地描述小麦吸收AgNPs的具体过程.  相似文献   

18.
Nitrogen dioxide (NO2) is one of the most common and harmful air pollutants. To analyze the response of plants to NO2 stress, we investigated the morphological change, reactive oxygen species (ROS) production and antioxidant enzyme activity in Arabidopsis thaliana (Col-0) exposed to 1.7, 4, 8.5, and 18.8 mg/m3 NO2. The results indicate that NO2 exposure affected plant growth and chlorophyll (Chl) content, and increased oxygen free radical (O2) production rate in Arabidopsis shoots. Furthermore, NO2 elevated the levels of lipid peroxidation and protein oxidation, accompanied by the induction of antioxidant enzyme activities and change of ascorbate (AsA) and glutathione (GSH) contents. Following this, we mimicked nitric acid mist under experimental conditions, and confirmed the antioxidant mechanism of the plant to the stress. Our results imply that NO2 and its acid mist caused pollution risk to plant systems. During the process, increased ROS acted as a signal to induce a defense response, and antioxidant status played an important role in plant protection against NO2/nitric acid mist-caused oxidative damage.  相似文献   

19.
重金属Zn和Cd对翅碱蓬生长及抗氧化酶系统的影响   总被引:9,自引:1,他引:8  
通过测定翅碱蓬生长和生理指标,研究了不同含量Zn和Cd对翅碱蓬的发芽率、苗高、苗重、体内超氧阴离子自由基(O-2)、过氧化氢(H2O2)的产生及对抗氧化酶(超氧化物歧化酶SOD、过氧化氢酶CAT、过氧化物酶POD)活性的影响,以探讨盐生植物翅碱蓬对重金属胁迫的反应.结果表明,两种重金属均不同程度地加快了超氧阴离子自由基的产生速率;翅碱蓬对Zn胁迫的耐受阈值为100 mg·kg-1,Zn含量低于100 mg·kg-1时,发芽率和苗高、苗重保持良好;含量高于100 mg·kg-1实验组,翅碱蓬生长及体内酶活性机制受到不同程度抑制,SOD 、POD反应迅速,CAT相对缓慢.翅碱蓬对Cd污染抵御能力差,含量高于0.4 mg·kg-l即可造成严重伤害,阻碍翅碱蓬生长,降低抗氧化酶活性.Zn和Cd共同作用(200 mg·kg-1 +0.2 mg·kg-1)时,表现为协同作用,发芽率仅为对照组的50.5%、苗重仅为49.2%,实验50 d后,SOD、CAT均失活,影响极显著.  相似文献   

20.
玉米对受污染河道复合沉积物的修复   总被引:1,自引:0,他引:1  
为减轻城市河道沉积物的受污染程度,利用温室盆栽玉米对其中的污染物进行了修复研究试验.结果表明,玉米体内累积最多的重金属是zn,占沉积物中Zn总量的56.69%,其中地上部分为1 985.56 mg·kg-1,占沉积物中Zn总量的30.16%,其余重金属(Pb、Cu、Ni、Cd)均为地上部分小于地下部分;Cd在玉米地上部分的累积量为2.33 mg·kg-1,为沉积物中Cd总量的40.10%;地上部累积的Zn、Pb、Cu和Ni等重金属数量与其离子交换态量显著相关,与重金属总量相关性不明显.种植玉米后沉积物中大分子有机物逐渐向小分子过渡,有效降低了有机物的污染.玉米的根际作用增加了沉积物中的微生物和酶活性.种植玉米较好地修复了受污染河道复合沉积物.  相似文献   

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