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水处理技术在热力发电厂中的应用 被引量:1
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作者 于双省 《中国科技期刊数据库 工业A》 2016年第12期254-254,共1页
在热力发电厂中,水的质量直接关系到整个锅炉的稳定运行,因此,为确保发电厂的经济效益,对水处理具有非常重要的意义。由此,本文从热力发电厂中水处理的整个过程出发,通过分析每个步骤的水处理方法,提出了膜技术在热力发电厂中的应用与... 在热力发电厂中,水的质量直接关系到整个锅炉的稳定运行,因此,为确保发电厂的经济效益,对水处理具有非常重要的意义。由此,本文从热力发电厂中水处理的整个过程出发,通过分析每个步骤的水处理方法,提出了膜技术在热力发电厂中的应用与发展方向,希望具有一定的参考价值。 展开更多
关键词 热力发电厂处理过程 处理方法 膜技术
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热电联产中的水处理技术
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作者 赵江 《区域供热》 2013年第6期71-73,共3页
目前热力生产用水水源主要有两种:地表水和地下水。其水质是指水和其中杂质共同表现出来的综合特性,也就是常说的水的质量。表示水中杂质个体成分或整体性质的项目成为水质指标,它是衡量水质好坏的重要参数。膜技术是一项具有巨大潜力... 目前热力生产用水水源主要有两种:地表水和地下水。其水质是指水和其中杂质共同表现出来的综合特性,也就是常说的水的质量。表示水中杂质个体成分或整体性质的项目成为水质指标,它是衡量水质好坏的重要参数。膜技术是一项具有巨大潜力的实用性技术,反渗透技术的核心是反渗透膜,这是一种用高分子材料制成的、具有选择性半透性质的薄膜。 展开更多
关键词 热力水处理 质分析膜分离技术
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Adsorption of catechol from aqueous solution by aminated hypercrosslinked polymers 被引量:1
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作者 SUNYue LIXiao-tao XUChao CHENJin-long LIAi-min ZHANGQuan-xing 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2005年第4期584-588,共5页
Adsorption of catechol from aqueous solution with the hypercrosslinked polymeric adsorbent NDA-100 and its derivatives AH-1, AH-2 and AH-3 aminated by dimethylamine, the commercial resin Amberlite XAD-4 and weakly bas... Adsorption of catechol from aqueous solution with the hypercrosslinked polymeric adsorbent NDA-100 and its derivatives AH-1, AH-2 and AH-3 aminated by dimethylamine, the commercial resin Amberlite XAD-4 and weakly basic anion exchanger resin D301 was compared. It was found that the aminated hypercrosslinked resins had the highest adsorption capacities among the tested polymers. The empirical Freundlich equation was successfully employed to describe the adsorption process. Specific surface area and micropore structure of the adsorbent, in company with tertiary amino groups on matrix affected the adsorption performance towards catechol. In addition, thermodynamic study was carried out to interpret the adsorption mechanism. Kinetic study testified that the tertiary amino groups on the polymer matrix could decrease the adsorption rate and increase the adsorption apparent activation energy. 展开更多
关键词 hypercrosslinked polymer CATECHOL ADSORPTION THERMODYNAMICS KINETICS
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Biocompatibility and bone regeneration of PEO/Mg-Al LDH-coated pure Mg:an in vitro and in vivo study 被引量:3
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作者 Jie Wang Feng Peng +6 位作者 Xiaolin Wu Donghui Wang Ao Zheng Lingyan Cao Chunhua Yu Xuanyong Liu Xinquan Jiang 《Science China Materials》 SCIE EI CSCD 2021年第2期460-473,共14页
Forming a stable anti-corrosion surface layer on magnesium(Mg)and its alloys has become a major challenge in developing a desirable degradable medical implant in bone.In this study,a porous MgO layer was first formed ... Forming a stable anti-corrosion surface layer on magnesium(Mg)and its alloys has become a major challenge in developing a desirable degradable medical implant in bone.In this study,a porous MgO layer was first formed on Mg by plasma electrolytic oxidation(PEO),and then a Mg-Al layered double hydroxide(LDH)layer was prepared to seal the porous structure of the PEO layer(LDH-2h and LDH-12h)via hydrothermal treatment.The bilayer structure composite coating,which can effectively resist the penetration of surrounding media,is similar to plain Chinese tiles.The in vitro results revealed that compared with other coatings,the LDH-12h composite coating can reduce the release of Mg ions and induce a milder change in pH when immersed in phosphate-buffered saline(PBS).In vitro rat bone marrow stem cell(rBMSC)culture suggested that the LDH-12h composite coating is favorable for cell activity,proliferation and could improve the osteogenic activity of rBMSCs.A subcutaneous implantation test revealed that the as-prepared sample showed enhanced corrosion resistance and histocompatibility in vivo,especially in the LDH-12h group.Moreover,LDH-12h had the lowest rate of degradation and the closest combination with the new bone after being inserted into a rat femur for 12 weeks with no major organ dysfunction.In summary,the asprepared PEO/Mg-Al LDH composite coating is able to improve the corrosion resistance and biocompatibility of Mg and to enhance osteogenic activity in vivo,suggesting its promising prospects for orthopedic applications. 展开更多
关键词 plasma electrolytic oxidization layered double hydroxide MAGNESIUM corrosion resistance bone repair
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