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21.
生物硫铁复合材料处理含铜废水及机理研究   总被引:1,自引:0,他引:1       下载免费PDF全文
利用Hungate分离出一株产生物硫铁复合材料(生物硫铁)的硫酸盐还原菌SRB2,考察了投加量、pH值、温度、搅拌速度对生物硫铁处理含铜废水的影响,并分别从化学置换、胞外聚合物(EPS)吸附等途径研究了生物硫铁去除Cu2+的机理.结果表明,生物硫铁投加量越大、温度越高对铜的去除效果最好,在pH4.0、35℃、0.6661g生物硫铁、搅拌速度100r/min时,2min即可使Cu2+去除率达到99.9%以上.化学置换途径在生物硫铁去除Cu2+时占主导地位,10min去除率达90.9%,EPS吸附途径在生物硫铁去除Cu2+过程中不占优势,24h去除率为38%.  相似文献   
22.
Dental personnel manually handle methacrylate-based restorative materials, which can cause skin irritation and allergies. The protection given by different types of medical gloves is not well known. Breakthrough time (BTT, min) was used as a measure of protection according to a European standard, using 2 test mixtures consisting of respectively 3 and 5 monomers. Fourteen gloves representing natural rubber latex, synthetic rubber, and synthetic polymeric material were tested. The BTT ranged from some minutes to more than 2 hrs for the 4 monomers with a molecular mass less than 300. The longest protection was recorded for Nitra Touch (nitrile rubber), Tactylon (synthetic rubber), and Metin (PVC).  相似文献   
23.
The difficulty in achieving high removal efficiency for contaminants in textile wastewater over a wide range of pH impedes the progress of its treatment technique greatly. Herein, a facile and sustainable strategy was adopted for constructing magnetic ordered mesoporous polymers (M-OMPs) without the assistance of organic solvent and catalyst. The prepared M-OMPs were endowed with high special surface area and good superparamagnetism simultaneously, and exhibited high removal efficiency (>99%) for Methylene Blue (MB) within a short time (10 min) at a concentration of 50 mg/L. What's more, high removal efficiency was achieved over a wide range of pH 2-12 and the adsorption capacity for MB on M-OMPs was substantially retained even after 5 adsorption-desorption cycles, further demonstrating the application potential of M-OMPs in the decontamination of textile wastewater.  相似文献   
24.
The use of biodegradable polymers made from renewable agricultural products such as soy protein isolate has been limited by the tendency of these materials to absorb moisture. A straightforward approach for controlling the inherent water absorbency of the biodegradable polymers involves blending special bioabsorbable polyphosphate fillers, biodegradable soy protein isolate, plasticizer, and adhesion promoter in a high-shear mixer followed by compression molding. The procedure yields a relatively water-resistant, biodegradable soy protein polymer composite, as previously reported. The aim of the present study is to determine the biodegradability of the new polyphosphate filler/soy protein plastic composites by monitoring the carbon dioxide released over a period of 120 days. The results suggest that the composites biodegrade satisfactorily, with the fillers having no significant effect on the depolymerization and mineralization of the soy protein plastic, processes that would otherwise result in nonbiodegradable composites. Further, the results indicate that the biodegradation and useful service life of these biocomposites may be controlled by changing the filler concentration, making the biocomposites useful in applications in which the control of water resistance and biodegradation is critical.  相似文献   
25.
A Literature Review of Poly(Lactic Acid)   总被引:32,自引:0,他引:32  
A literature review is presented regarding the synthesis, and physicochemical, chemical, and mechanical properties of poly(lactic acid)(PLA). Poly(lactic acid) exists as a polymeric helix, with an orthorhombic unit cell. The tensile properties of PLA can vary widely, depending on whether or not it is annealed or oriented or what its degree of crystallinity is. Also discussed are the effects of processing on PLA. Crystallization and crystallization kinetics of PLA are also investigated. Solution and melt rheology of PLA is also discussed. Four different power-law equations and 14 different Mark–Houwink equations are presented for PLA. Nuclear magnetic resonance, UV–VIS, and FTIR spectroscopy of PLA are briefly discussed. Finally, research conducted on starch–PLA composites is introduced.  相似文献   
26.
利用废旧冰箱拆解的聚氨酯泡沫塑料(PU)和聚丙烯(PP)、聚丙烯接枝马来酸酐(PP-g-MAH)为原料,采用物理化学回收技术制备PU/PP复合材料。用正交实验法分析PU填充量、PU粒径和PP-g-MAH 3个因素对PU/PP复合材料力学性能影响的显著性。结果表明,PU填充量对PU/PP复合材料拉伸性能有显著影响,对冲击性能和弯曲性能没有显著影响;在本文的实验范围内,PU粒径对PU/PP复合材料的力学性能影响不大;而PP-g-MAH投加量对PU/PP复合材料具有一定的影响。确定的优化工艺配方为:PU 40%;PU粒径选择2.00 mm;PP-g-MAH投加量10%。采用优化工艺制备的PU/PP复合材料的密度为1 042.88 kg/m3;冲击强度为2.9 kJ/m2;拉伸强度为10.30 MPa;拉伸模量为1 100 MPa;弯曲强度为18.5 MPa;弯曲模量为733 MPa。  相似文献   
27.
采用一步溶剂热法制备磁性氧化石墨烯/壳聚糖三元复合材料(GO/CS/Fe_3O_4).复合材料的表征结果显示,GO/CS/Fe_3O_4含有丰富含氧官能团,氧化石墨烯片层上均匀负载四氧化三铁磁性粒子,分散到水中的磁性复合材料在外加磁场的作用下,具有良好的磁分离效果.选择磺胺嘧啶为目标污染物考察复合材料吸附性能.结果表明,吸附动力学符合拟二级动力学模型,吸附等温线符合Langmuir模型,在295、303、313 K温度下最大吸附量分别为53.30、60.56、79.23 mg·g~(-1),吸附热力学参数表明GO/CS/Fe_3O_4对磺胺嘧啶的吸附是以物理吸附为主的自发吸热反应.通过不同pH条件下吸附量和Zeta电位分析吸附机理,证明π-π电子共轭效应及静电吸附是复合材料吸附磺胺嘧啶过程中的主导作用力.  相似文献   
28.
等离子喷涂制备 ZrB2-SiC 复合涂层及其静态烧蚀性能   总被引:3,自引:1,他引:2  
目的提高C/C复合材料的抗静态烧蚀性能。方法利用大气等离子喷涂技术在C/C复合材料表面制备ZrB_2-SiC复合涂层,对其进行1500℃的静态烧蚀实验。利用X射线衍射仪(XRD)、扫描电子显微镜(SEM)及能谱分析仪(EDS)对涂层的物相成分、微观形貌等进行检测分析。结果采用大气等离子喷涂制备的ZrB_2-SiC涂层是由熔融的粉末粒子紧密堆积而成,呈现典型的层状结构,涂层均匀完整地覆盖于C/C基体表面,厚度约为200μm。涂覆有ZrB_2-SiC复合涂层的C/C复合材料试样在1500℃分别氧化2,3,4 h后,试样依旧保持完整,C/C基体未遭受损伤,试样的质量增加率依次为3.39%,2.95%,4.25%。结论采用大气等离子喷涂技术能够在C/C复合材料表面制备出厚度均匀、结构致密的ZrB_2-SiC复合涂层,ZrB_2-SiC复合涂层使C/C复合材料的抗静态烧蚀性能显著提高。  相似文献   
29.
HfB2-HfC-SiC 改性 C/C 复合材料的超高温烧蚀性能研究   总被引:4,自引:3,他引:1  
目的制备HfB_2-HfC-SiC复相陶瓷改性C/C复合材料,并探究该材料的超高温烧蚀性能。方法采用化学气相渗透结合前驱体浸渍热解工艺制备HfC-SiC复相陶瓷改性C/C复合材料(C/C-HfC-SiC)和HfB_2-HfC-SiC复相陶瓷改性C/C复合材料(C/C-HfB_2-HfC-SiC),采用大气等离子烧蚀实验研究材料的超高温烧蚀性能。结果C/C-HfC-SiC和C/C-HfB_2-HfC-SiC复合材料2200℃线烧蚀率分别为1.54×10~(-3),1.38×10~(-3)mm/s。结论复合材料具有独特的微结构特征,亚微米级的HfB_2和HfC基体均匀弥散分布在SiC基体中。复合材料表面原位生成的液相SiO_2和固相HfO_2复合氧化物膜,既可以抵抗高速气流的冲蚀,又可以抵抗氧化性气氛的向内扩散,是复合材料具有优异超高温抗烧蚀性能的主要原因。  相似文献   
30.
In this paper, laser additive manufacturing (LAM) of Fe–TiC composite coating on AISI 1030 carbon steel is investigated using a numerical and experimental method. In order to have a desired result using LAM, it is crucial to understand the effects of the process parameters’ values on the TiC morphology and microstructure. For this purpose, the LAM process is numerically simulated in order to calculate cooling rate and peak temperature. Experimental data and numerical results are in good agreement in terms of the phase development. Results show that cooling rate plays a crucial role in phase transformation in the clad, however, final microstructure strongly depends on the cooling rate and powder's chemical composition. Two main carbide morphologies (i.e. dendritic and particulate) are studied and relevant cooling rates are detected. Based on this paper and developed map, it is possible to control the cooling rate in order to achieve specific carbide morphologies in the clad. In this study, scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS) are used to characterize clads’ microstructure.  相似文献   
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