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41.
新型碳材料石墨烯,因其比表面积大,物理、化学特性优异,通常作为吸附剂或复合材料载体,用于难降解有机废水处理.载体石墨烯改性后,可优化复合材料性能,包括溶解性和可控性.基于复合材料制备,选取典型污染物废水,如染料废水、苯酚废水、农药废水,从吸附处理和催化降解两方面展开,简要介绍石墨烯复合材料的应用研究及作用效果,显示出复合材料可有效提高污染物降解效率,回用效果好.此外,石墨烯复合材料在回用及实际应用方面仍有待进一步研究.  相似文献   
42.
选用一种成本低、可大规模合成的Cu基MOFs(Cu-MOFs)材料作为CO2吸附剂,在原位合成过程中添加石墨烯量子点以调控其晶体结构.结果表明:适量石墨烯量子点的添加有利于提高Cu-MOFs的比表面积和孔体积,相比未改性MOFs材料,改性后的CO2吸附性能有所提高,25℃,100kPa时提高了4.5%.随着温度升高,吸附容量提升越明显.改性后的MOFs对于N2的吸附量则比未改性时更低,因此计算得到的CO2/N2吸附选择性也更高,增加了近一倍.综合等量吸附热的考察结果发现,尤其添加适量含N石墨烯量子点的Cu-MOFs吸附剂不仅具备了较高的吸附容量、吸附选择性,还展现了较理想的吸附热,因此兼具了较优CO2吸附性能和较低脱附能耗的特点,为MOFs吸附剂的改性提供了一点参考价值.  相似文献   
43.
Because of its significant toxicological effects on the environment and human health,arsenic(As) is a major global issue.In this study,an Fe-based metal-organic framework(MOF)(Materials of Institut Lavoisier:MIL-100(Fe)) which was impregnated with reduced graphene oxide(rGO) by using a simple hydrothermal method and coated with birnessitetype manganese oxide(δ-MnO_2) using the one-pot reaction process(MIL-100(Fe)/rGO/δ-MnO_2 nanocomposites) was synthesized and applied successfully in As removal.The removal efficiency was rapid,the equilibrium was achieved in 40 min and 120 min for As(Ⅲ) and As(Ⅴ),respectively,at a level of 5 mg/L.The maximum adsorption capacities of As(Ⅲ) and As(Ⅴ) at pH 2 were 192.67 mg/g and 162.07 mg/g,respectively.The adsorbent revealed high stability in pH range 2-9 and saturated adsorbent can be fully regenerated at least five runs.The adsorption process can be described by the pseudo-second-order kinetic model and Langmuir monolayer adsorption.The adsorption mechanisms consisted of electrostatic interaction,oxidation and inner sphere surface complexation.  相似文献   
44.
李洁  肖琳 《环境科学》2016,37(10):3850-3857
本研究合成了一种新型高效的去除铜绿微囊藻(Microcystis aeruginosa)的氧化石墨烯/季铵盐聚乙烯亚胺(GO/QPEI)纳米复合材料.GO/QPEI在pH为4~10的条件下都具有高效去除M.aeruginosa的能力,其去除能力在2 min内可达96%以上.GO/QPEI对微囊藻的吸附更符合Freundlich方程,最大吸附量为5.58×1011cells·mg-1.吸附动力学表明GO/QPEI的假二级吸附反应.GO纳米片和QPEI的协同效应是其高效去除微囊藻的主要机制.  相似文献   
45.
ABSTRACT

This article aims to study the influence of the addition of graphene oxide nanoparticles (GO) to diesel/higher alcohols blends on the combustion, emission, and exergy parameters of a CI engine under various engine loads. The higher alcohols mainly n-butanol, n-heptanol, and n-octanol are blended with diesel at a volume fraction of 50%. Then, the 25 and 50 mg/L concentrations of GO are dispersed into diesel/higher alcohols blends using an ultrasonicator. The GO structures are examined using TEM, TGA, XRD and FTIR. The findings show that there is a reduction in pmax. and HRR when adding higher alcohols with diesel fuel. Regarding engine emission, there is a significant improvement in emissions formation with adding higher alcohols. The addition of GO into diesel/higher alcohols blends improves the brake thermal efficiency by 15%. Moreover, the pmax. and HRR are both enhanced by 4%. The CO, UHC and smoke formation are reduced considerably by 40%, 50 and 20%, respectively, while NOx level is increased by 30% with adding GO. Finally, adding high percentages of n-butanol, n-heptanol, and n-octanol with diesel fuel with the presence of GO has the potential to achieve ultra-low CO, UHC, and smoke formation meanwhile keeping high thermal efficiency level.  相似文献   
46.
以氧化石墨烯(GO)为原料制备MnO2@Fe3O4/石墨烯(RGO),考察吸附过程中MnO2@Fe3O4/RGO投加量、溶液pH值、初始浓度和吸附时间等因素对Pb(Ⅱ)的去除率和吸附量的影响,并运用BET比表面积测试法计算MnO2@Fe3O4/RGO的比表面积和平均孔径,采用扫描电子显微镜(SEM),振动样品磁强计(VSM),X射线衍射(XRD)和X射线光电子能谱(XPS)等对样品进行表征.结果表明:MnO2@Fe3O4/RGO的比表面积为89.164m2/g,孔容为0.284cm3/g;随着pH值在2~10范围内增加,复合材料对Pb(Ⅱ)的去除率先增大后减小,pH=6时达到最大值.通过4种等温吸附模型(Langmuir、Freundlich、Temkin、D-R模型)和4种吸附动力学模型(伪一级动力学、伪二级动力学、Elovich、颗粒内扩散模型)拟合发现,MnO2@Fe3O4/RGO对Pb(Ⅱ)吸附符合伪二级动力学模型.吸附等温线更符合Langmiur模型,属于典型的单分子层吸附,以化学吸附为主,最大吸附量为265.3mg/g.  相似文献   
47.
尽管石墨烯以其独特的光学、电学、力学特性在各大领域都具有广阔的应用前景,但其工业化使用后在环境当中的行为,特别是遗留下的石墨烯对生态系统的毒性研究则鲜见报道.因此,本文以嗜酸性氧化亚铁硫杆菌(Acidithiobacillus ferrooxidans)为目标微生物,探讨不同浓度(1、10、50 mg·L-1)石墨烯对Acidithiobacillus ferrooxidans的毒性效应.结果表明,石墨烯对Acidithiobacillus ferrooxidans的生长有明显抑制作用,且抑制作用随着石墨烯浓度的降低而增强.在石墨烯投加量为1 mg·L-1时,培养48 h后菌株的生长量OD420达到最大值0.045,低于空白组的0.163;并且其可溶性蛋白含量也达到最大值1.546 mg·L-1,低于空白组的3.789 mg·L-1.不同浓度石墨烯对体系p H和ORP均存在不同程度的影响,低浓度下的石墨烯影响最为显著.此外,通过扫描电镜(SEM)和荧光显微镜分析,进一步证实Acidithiobacillus ferrooxidans能在高浓度的石墨烯上生长,而低浓度的石墨烯则会对细胞膜造成损伤,它极其尖锐的边缘是细菌失活的有效机制.因此,石墨烯的毒性具有剂量效应,这一结果可为石墨烯合理利用及评价其生态毒性提供理论依据.  相似文献   
48.
Pt catalysts with nitrogen-doped graphene oxide (GO) as support and CeO2 as promoter were prepared by impregnation method,and their catalytic oxidation of formaldehyde (HCHO) at room temperature was tested.The Pt-CeO2/N-rGO (reduced GO) with a mass fraction of 0.7% Pt and 0.8%CeO2 exhibited an excellent catalytic performance with the 100% conversion of HCHO at room temperature.Physicochemical characterization demonstrated that nitrogendoping greatly increased the...  相似文献   
49.
The main objective of this study is to investigate and evaluate opportunities for implementation of pollution prevention and waste minimization in a chemical industrial company producing poly sulfonated naphthalene formaldehyde which is used as a super plasticizer for concrete. Environmental problems encountered were mainly the highly polluted wastewater and a semi-solid cake containing considerable amount of the final product. Possible modules for remedial measures and their cost estimation were investigated. The proposed remedial modules included recycling of retained water discharge in filter press, recycling of washing water of reaction vessels (reactors), closed circuit cooling system for high-pressure pump, good housekeeping through control of leakage of raw material, products and water and finally utilization of retained residual product from the solid waste. The implemented pollution control measures proved to be cost effective and have short payback periods. Also, minimization of the hydraulic and organic loads in the final effluent was achieved.  相似文献   
50.
A series of organic compounds were successfully immobilized on an N-doped graphene quantum dot (N-GQD) to prepare a multifunctional organocatalyst for coupling reaction between CO2 and propylene oxide (PO). The simultaneous presence of halide ions in conjunction with acidic- and basic-functional groups on the surface of the nanoparticles makes them highly active for the production of propylene carbonate (PC). The effects of variables such as catalyst loading, reaction temperature, and structure of substituents are discussed. The proposed catalysts were characterized by different techniques, including Fourier transform infrared spectroscopy (FTIR), field emission scanning electron microscopy/energy dispersive X-ray microanalysis (FESEM/EDX), thermogravimetric analysis (TGA), elemental analysis, atomic force microscopy (AFM), and ultraviolet–visible (UV-Vis) spectroscopy. Under optimal reaction conditions, 3-bromopropionic acid (BPA) immobilized on N-GQD showed a remarkable activity, affording the highest yield of 98% at 140°C and 106 Pa without any co-catalyst or solvent. These new metal-free catalysts have the advantage of easy separation and reuse several times. Based on the experimental data, a plausible reaction mechanism is suggested, where the hydrogen bonding donors and halogen ion can activate the epoxide, and amine functional groups play a vital role in CO2 adsorption.  相似文献   
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