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571.
大孔径聚砜超滤膜的研究 总被引:5,自引:0,他引:5
作者用向铸膜液中加水的方法对制备大孔膜进行了研究。选择适宜的聚砜浓度和水含量,可以制得截留分子量为15万的聚砜超滤膜。该膜对丙种球蛋白的截留率>95%,纯水透水速度可达70-80ml/cm^2·h(0.1MPa)。 相似文献
572.
《环境科学学报(英文版)》2023,35(4):275-286
Preparing materials for simultaneous remediation of anionic and cationic heavy metals contamination has always been the focus of research. Herein a biochar supported FeMnMg layered double hydroxide (LDH) composites (LB) for simultaneous remediation of copper and arsenic contamination in water and soil has been assembled by a facile co-precipitation approach. Both adsorption isotherm and kinetics studies of heavy metals removal by LB were applied to look into the adsorption performance of adsorbents in water. Moreover, the adsorption mechanisms of Cu and As by LB were investigated, showing that Cu in aqueous solution was removed by the isomorphic substitution, precipitation and electrostatic adsorption while As was removed by complexation. In addition, the availability of Cu and As in the soil incubation experiments was reduced by 35.54%–63.00% and 8.39%–29.04%, respectively by using LB. Meanwhile, the addition of LB increased the activities of urease and sucrase by 93.78%–374.35% and 84.35%–520.04%, respectively, of which 1% of the dosage was the best. A phenomenon was found that the richness and structure of microbial community became vigorous within 1% dosage of LB, which indirectly enhanced the passivation and stabilization of heavy metals. These results indicated that the soil environment was significantly improved by LB. This research demonstrates that LB would be an imaginably forceful material for the remediation of anionic and cationic heavy metals in contaminated water and soil. 相似文献
573.
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575.
姚江水源水有机物分子量分布 总被引:3,自引:0,他引:3
采用超滤膜法对宁波姚江水源水进行了有机物分子量分布的测定,结果表明其中小分子量有机物占50%以上,同时也用超滤膜法对梅林水厂的常规工艺对溶解性有机物的去除效果进行了测定,发现其对小分子有机物的去除效果不甚理想。 相似文献
576.
一种新材料在城市生活垃圾卫生填埋场中的应用 总被引:2,自引:0,他引:2
针对我国目前垃圾填埋场存在的问题 ,提出推广应用一种新型的复合土工合成材料 (GCL)。简要介绍了GCL的结构及水力特性 ,图解说明了GCL在垃圾填埋场中的各种应用 ,并与CCL、GM相比较 ,说明了GCL在垃圾填埋场中的应用优势 相似文献
577.
This paper presents a dynamic temperature model for a proton exchange membrane fuel cell (PEMFC) system. The proposed model overcomes the complexity of conventional models using first-order expressions consisting of load current and ambient temperature. The proposed model also incorporates a PEMFC cooling system, which depends upon the temperature difference between events. A dynamic algorithm is developed to detect load changing events and calculate instantaneous PEMFC temperature variations. The parameters of the model are extracted by employing the lightning search algorithm (LSA). The temperature characteristics of the NEXA 1.2 kW PEMFC system are experimentally studied to validate model performance. The results show that the proposed model output and the temperature data obtained from experiments for linear and abrupt changes in PEMFC load current are in agreement. The root-mean-square error between the model output and experimental results is less than 0.9. Moreover, the proposed model outperforms the conventional models and provides advantages such as simplicity and adaptability for low and high sampling data rates of input variables, namely, load current and ambient temperature. The model is not only helpful for simulations but also suitable for dynamic real-time controllers and emulators. 相似文献
578.
N. Heydari 《International Journal of Green Energy》2019,16(6):476-482
A carbon/CoFe2O4 composite was synthesized by precipitation method. The morphology of the composite was analyzed using scanning electron microscopy, X-ray diffraction, transmission electron microscopy, Fourier Transform Infrared Spectra, and vibrating sample magnetometry. The electrocapacitive behaviors of the composite has been studies by cycle voltammogram and galvanic charge/discharge. The size of the nanoparticles carbon composite of CoFe2O4 was uniform and 209 nm. Due to a high percent of carbon, electrochemical measurements showed electrical double layer mechanism. Specifically, the carbon/cobalt ferrite electrode exhibited high specific capacitance of 102.5 F g?1 at a current density of 0.16 A g?1, and high rate capability with 30% retention of capacitance even up to 20 A g?1, and excellent cycling stability with 81.5% retention of the initial capacitance after 6000 charge/discharge cycles, supporting that the carbon cobalt ferrite composite electrode could be a potential candidate for supercapacitor application. 相似文献
579.
采用双悬浮探针和电子自旋共振法定量对远程氩等离子体进行诊断,确定了电子、离子浓度和自由基浓度的分布,以预测表面改性的最佳区;利用远程氩等离子体对聚醚砜(PES)超滤膜进行表面改性,通过接触角测量、扫描电子显微镜和X射线光电子能谱分析改性前后膜表面结构和性能的变化,最后利用牛血清蛋白分离实验分析改性前后膜的分离性能和抗污染性能变化.结果表明,氩等离子体中电子、离子浓度沿轴向距离逐渐降低,在30cm后接近于0,而40cm处自由基浓度仍维持在90%以上,为可能的最佳表面改性区;在该区对PES超滤膜改性后,引入含氧基团和含氮基团,膜表面(O+N)/C原子比从0.18增大到0.46,增强膜表面极性;在最佳处理条件下,膜表面接触角从67°减小到18°,使膜表面亲水性能增强,抑制了电子、离子对膜的刻蚀作用;通过牛血清蛋白实验测定改性后膜污染率由70.3%减小到64.7%,抗污染性能提高. 相似文献
580.
采用界面聚合方法将UIO-66纳米颗粒引入复合膜中制备出改性的聚酰胺复合膜,并利用傅里叶红外光谱(FT-IR)、扫描电子显微镜(SEM)、原子力显微镜(AFM)、X射线衍射光谱(XRD)和接触角仪等仪器对材料和复合膜进行测定表征.以去离子水为原料液,1mol/L氯化钠溶液为汲取液进行渗透性能测试.选取BSA及SA作为污染物进行污染实验,并利用自制探针,借助原子力显微镜(AFM)测定了污染物与膜面的微观作用力.研究发现,相较于原始的聚酰胺复合膜,当UIO-66材料的添加量为0.04wt%时,改性复合膜在FO模式下的纯水通量由10.28L/(m2·h)增大到13.67L/(m2·h), PRO模式下纯水通量由17.68L/(m2·h)增大到20.41L/(m2·h),渗透性能改善效果显著,并具有较好的选择性能.此外,污染实验发现相较于原始膜,改性复合膜的通量衰减趋势较缓且与污染物之间粘附力都较小,说明UIO-66改性聚酰胺复合膜的抗污染性能有所提升. 相似文献