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1.
• In situ preparation of FeNi nanoparticles on the sand via green synthesis approach. • Removal of tetracycline using GS-FeNi in batch and column study. • Both reductive degradation and sorption played crucial role the process. • Reusability of GS-FeNi showed about 77.39±4.3% removal on 4th cycle. • TC by-products after interaction showed less toxic as compared with TC. In this study, FeNi nanoparticles were green synthesized using Punica granatum (pomegranate) peel extract, and these nanoparticles were also formed in situ over quartz sand (GS-FeNi) for removal of tetracycline (TC). Under the optimized operating conditions, (GS-FeNi concentration: 1.5% w/v; concentration of TC: 20 mg/L; interaction period: 180 min), 99±0.2% TC removal was achieved in the batch reactor. The removal capacity was 181±1 mg/g. A detailed characterization of the sorbent and the solution before and after the interaction revealed that the removal mechanism(s) involved both the sorption and degradation of TC. The reusability of reactant was assessed for four cycles of operation, and 77±4% of TC removal was obtained in the cycle. To judge the environmental sustainability of the process, residual toxicity assay of the interacted TC solution was performed with indicator bacteria (Bacillus and Pseudomonas) and algae (Chlorella sp.), which confirmed a substantial decrease in the toxicity. The continuous column studies were undertaken in the packed bed reactors using GS-FeNi. Employing the optimized conditions, quite high removal efficiency (978±5 mg/g) was obtained in the columns. The application of GS-FeNi for antibiotic removal was further evaluated in lake water, tap water, and ground water spiked with TC, and the removal capacity achieved was found to be 781±5, 712±5, and 687±3 mg/g, respectively. This work can pave the way for treatment of antibiotics and other pollutants in the reactors using novel green composites prepared from fruit wastes.  相似文献   
2.
• Pd nanoparticles could be reduced and supported by activated sludge microbes. • The effect of biomass on Pd adsorption by microbes is greater than Pd reduction. • More biomass reduces Pd particle size, which is more dispersed on the cell surface. • When the biomass/Pd add to 6, the catalytic reduction rate of Cr(VI) reaches stable. Palladium, a kind of platinum group metal, owns catalytic capacity for a variety of hydrogenations. In this study, Pd nanoparticles (PdNPs) were generated through enzymatic recovery by microbes of activated sludge at various biomass/Pd, and further used for the Cr(VI) reduction. The results show that biomass had a strong adsorption capacity for Pd(II), which was 17.25 mg Pd/g sludge. The XRD and TEM-EDX results confirmed the existence of PdNPs associated with microbes (bio-Pd). The increase of biomass had little effect on the reduction rate of Pd(II), but it could cause decreasing particle size and shifting location of Pd(0) with the better dispersion degree on the cell surface. In the Cr(VI) reduction experiments, Cr(VI) was first adsorbed on bio-Pd with hydrogen and then reduced using active hydrogen as electron donor. Biomass improved the catalytic activity of PdNPs. When the biomass/Pd (w/w) ratio increased to six or higher, Cr(VI) reduction achieved maximum rate that 50 mg/L of Cr(VI) could be rapidly reduced in one minute.  相似文献   
3.
This study describes a new effective adsorbent for cadmium removal from aqueous solution synthesized by coating a shellac layer, a natural biodegradable and renewable resin with abundant hydroxyl and carboxylic groups, on the surface of iron oxide magnetic nanoparticles. Transmission Electron Microscopy (TEM) imaging showed shellac-coated magnetic nanoparticle (SCMN) adsorbents had a core-shell structure with a core of 20 nm and shell of 5 nm. Fourier Transform Infrared Spectroscopic analysis suggested the occurrence of reaction between carboxyl groups on the SCMN adsorbent surface and cadmium ions in aqueous solution. Kinetic data were well described by pseudo second-order model and adsorption isotherms were fitted with both Langmuir and Freundlich models with maximum adsorption capacity of 18.80 mg/g. SCMN adsorbents provided a favorable adsorption capacity under high salinity conditions, and cadmium could easily be desorbed using mild organic acid solutions at low concentration.  相似文献   
4.
新型磁性聚谷氨酸吸附剂对水中Pb2+的吸附去除   总被引:2,自引:1,他引:1  
德岛大学安澤幹人首次利用γ-PGA在Fe3O4磁性纳米颗粒上进行涂层,制得了γ-聚谷氨酸-Fe3O4磁性纳米颗粒(PG-M).本实验利用透射电镜以及扫描电镜对PG-M吸附剂的形貌进行了分析,发现PG-M与未涂层的Fe3 O4具有相似的形状以及大小,均为不规则的层状结构,且晶粒直径在120~320 nm之间;实验中针对性地对水溶液中Pb2+进行了吸附探讨.在振荡实验中,通过主要参数的变化(pH值、吸附时间、竞争离子浓度、腐殖酸浓度),得到如下结果:吸附最佳pH值为7.0;吸附量随着吸附时间的延长而增长,吸附平衡时间为45 min;Na+对PG-M去除Pb2+没有很强的干扰性,而Ca2+则显示出一定的干扰作用;腐殖酸对吸附效果的影响是复杂的,表现为先增强吸附效果,随后降低吸附效果;最佳条件时Pb2+的最大吸附量为93.3 mg/g.PG-M对Pb2+的吸附均能较好地符合Freundlich和Langmuir等温吸附模型,其中Langmuir方程能更好地描述PG-M的吸附特征,说明PG-M在水溶液中对金属离子的吸附为单分子层吸附.PG-M吸附符合准二级动力学模型(r2〉0.99).不同浓度的HCl和HNO3溶液的再生实验发现,0.1 mol/L的HCl溶液作为吸附再生液,可取得较好的再生效果.表明PG-M是可再生的,具有较好的经济性和可持续性.  相似文献   
5.
西南地区近60年商品材消耗和经济增长关系   总被引:1,自引:0,他引:1  
周彬  蒋有绪  臧润国 《自然资源学报》2010,25(11):1907-1917
首次定义和使用了"GDP黄金当量"作为经济全球化背景下经济增长的新指标。"GDP黄金当量"是指把历年GDP总量按年均汇价和国际黄金市场年均价换算成黄金重量,其可在一定程度上绕开纸币的贬值或升值,反映GDP的贵金属本质,把资源消耗和经济增长的关系分析转变成物物关系分析。研究资源消耗和经济增长的关系有助于提高资源使用效率和调整经济发展方式。通过分析西南地区1949年以来历年商品材产量、人口数量、GDP总量、GDP黄金当量及其单位木材能耗之间的关系,检验了近现代资源环境与经济发展关系中的"资源诅咒"和"库兹涅茨曲线"假设,结果表明:①1952—2008年GDP总量增长了422倍,人口增长了1倍,GDP黄金当量增加了4.5倍,商品材产量增加了12倍;②商品材产量1997—2000年因天然林保护工程下降了80%,然而2008年的946×104m3又恢复到了天然林保护工程前的水平,总体上增长趋势未变;③经济发展出现3个GDP黄金当量"平台",目前处在第3个"平台"上,GDP黄金当量和商品材产量仅前20 a成线性相关(P0.01);④商品材产量和人口数量之间线性相关显著(P0.01),GDP黄金当量和人口数量之间非参数相关显著(P=0.005),人均GDP增长了162倍,人均GDP黄金当量只增长了1.5倍,商品材产量和人均GDP(或人均GDP黄金当量)之间不存在环境库兹涅茨曲线关系,也不存在森林资源诅咒经济增长现象;⑤每万元GDP或每kg GDP黄金当量的商品材消耗量先增加后减少,呈现倒"U"曲线走势,经济发展走过了劳动和森林资源密集型时期。  相似文献   
6.
To assess the aquatic ecosystem safety for silica (SiO2) nanoparticles (NPs), the growth inhibition and photosynthetic pigment contents of Scenedesmus obliquus in logarithm growth phase exposed to SiO2 NPs and SiO2 bulk particles (BPs) suspensions were measured. SiO2 NPs with 10-20 nm diameters were found to be toxic. The 20% effective concentration (EC20) values for 72 and 96 hr were 388.1 and 216.5 mg/L, respectively. The contents of chlorophyll decreased significantly under moderate and high concentratio...  相似文献   
7.
通过硼氢化纳还原法制备了铁纳米颗粒,并用十二烷基硫酸钠对其进行保护。所得铁纳米颗粒大小在13nm左右,体心立方相。对比了在机械搅拌和超声辅助条件下纳米铁对酸性红G的降解率,超声条件下纳米铁和微米铁对酸性红G的降解率,以及纳米铁投加量、pH值对酸性红G降解率的影响。结果表明,超声辅助下,pH=6~7时,4min内纳米铁对酸性红G有较高的降解率。机理分析表明超声辅助条件下纳米铁对酸性红G的降解主要是超声分散下纳米铁的还原作用得到提高以及纳米铁氧化产物的絮凝作用。  相似文献   
8.
采用藻类生物毒性测试方法(OECD201)研究了两种粒径氧化镍(NiO)纳米颗粒对小球藻(Chlorella vulgaris)的生物毒性.发现纳米颗粒的毒性与其尺度有关,7 nm NiO的毒性大于20 nm NiO,二者72 h EC50分别为18.01和74.64mgNiO/L.利用扫描电子显微镜(SEM)观察了对...  相似文献   
9.
从Si02纳米颗粒对小球藻(Chlorella pyrenoidosa)生长活性的影响来探讨纳米材料的生物安全性问题.结果表明Si02纳米颗粒降低了小球藻的生物量和蛋白含量,并可以附着在细胞表面和进入细胞内部,造成了细胞的形变和结构损伤,从而抑制了小球藻的正常生长活性.Si02纳米颗粒对小球藻具有一定的毒性效应.  相似文献   
10.
自组装纳米金修饰玻碳电极检测亚硝酸根   总被引:1,自引:1,他引:0  
N-[3-(三甲氧硅基)丙基]-乙二胺与金溶胶通过自组装制备亚硝酸根的电化学传感器.原子力显微镜图(AFM) 显示纳米金自组装在氨基硅烷修饰的玻碳电极表面.由于质子化的氨基硅烷与带负电的亚硝酸根间的相互作用以及纳米金对亚硝酸根具有较好的催化作用,亚硝酸根在该修饰电极上的氧化电位与在玻碳电极上的氧化电位相比负移了140 mV.利用微分脉冲伏安法和微分脉冲安培法研究了亚硝酸根电流响应信号与浓度间的关系.在最优实验条件下,亚硝酸根的氧化峰电流与其浓度在5.0×10-7~1.0×10-3 mol·L-1的浓度范围内呈良好的线性关系, 检测限可达到2.0×10-7 mol·L-1(信噪比为3). 用分光光度法及本研究提出的方法对实际样品中亚硝酸根的测定进行了比较,测定结果的差异很小.本研究所提出的测定亚硝酸根的方法具有较高的灵敏度和较好的重现性.  相似文献   
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