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超临界水热合成过渡金属改性铈基催化剂应用于CO-SCR脱硝研究(英文) 被引量:10
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作者 戴晓霞 蒋威宇 +4 位作者 王望龙 翁小乐 尚媛 薛烨辉 吴忠标 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第4期728-735,共8页
氮氧化物(NO_x)作为煤炭燃烧过程主要污染物之一,可直接或间接引起如光化学烟雾、酸沉降、平流层臭氧损耗和全球气候变化等大气环境污染问题.NO_x的选择性催化还原技术(SCR)被认为是目前处理固定源NO_x的最有效方法之一.由于燃煤工业锅... 氮氧化物(NO_x)作为煤炭燃烧过程主要污染物之一,可直接或间接引起如光化学烟雾、酸沉降、平流层臭氧损耗和全球气候变化等大气环境污染问题.NO_x的选择性催化还原技术(SCR)被认为是目前处理固定源NO_x的最有效方法之一.由于燃煤工业锅炉烟气中还有1%~3%的CO,远高于NO_x的0.02%~0.04%,因此,以CO为还原剂进行CO-SCR脱硝具有现实意义,它可在反应过程中同时消除CO和NO两种有害气体,但对催化剂的活性及抗毒性提出更高要求.CeO_2作为一种常用的稀土材料,因具有良好的储放氧能力而广泛应用于SCR反应中.过渡金属改性可进一步改善CeO_2的物化性能,从而可能达到CO-SCR的应用要求.本文利用超临界水热技术合成了MOx-CeO_2(M=Co,Fe,Cu)固溶体催化剂,并利用X射线衍射(XRD),氢气程序升温还原(H2-TPR),傅里叶变换原位红外(DRFTIR)等探究了催化剂在CO-SCR反应中的催化活性与作用机制.CO-SCR反应活性测试表明,CuO-CeO_2催化剂活性明显优于FeOx-CeO_2和CoO_x-CeO_2催化剂,在126°C NO去除率即可达到90%;其N_2选择性也可在179°C时达到90%.为了进一步探究MOx-CeO_2(M=Co,Fe,Cu)催化剂的CO-SCR反应途径,本文随后进行了系列原位DRFTIR实验,发现NO在三种催化剂表面均能被高效吸附,其吸附态中间产物主要为双齿硝酸根,桥式硝酸根,桥式硝基和亚硝酰基等.另外,在CuO-CeO_2催化剂表面还存有螯合硝基和单齿硝酸根.CO在催化剂表面主要以CO_x,碳酸根和羧酸根等形式存在.值得注意的是,在CuO-CeO_2表面,CO因吸附于Cu^+而形成Cu^+-CO,在2100 cm.1左右形成明显的特征峰.当催化剂表面吸附CO至饱和后再通入NO发现,CO的吸附特征峰逐渐被NO的特征吸附峰取代;而当NO被吸附至饱和后再通入CO,NO的特征峰则不出现明显变化.这表明NO和CO在催化剂表面存在竞争吸附,NO可能优先于CO吸附在催化剂表面.当NO和CO同时通入红外反应仓时发现,在CoOx-CeO_2和FeOx-CeO_2催化剂表面只观察到NO的吸附峰,而在CuO-CeO_2催化剂表面观察到Cu^+-CO的特征峰,说明在CO-SCR反应过程中,CO可以在Cu+表面被有效吸附,其与吸附于CeO_2表面的NO物种反应生成N_2和CO_2,遵循Langmuir-Hinshelwood反应机理.而在CoOx-CeO_2和FeOx-CeO_2催化剂表面,因NO的竞争吸附。 展开更多
关键词 超临界水 氮氧化物 CO 选择催化还原 傅里叶变换原位红外光谱 CEO2
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Tissue expression and developmental regulation of chicken cathelicidin antimicrobial peptides 被引量:3
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作者 Mallika Achanta Lakshmi T Sunkara +3 位作者 Gan Dai Yugendar R Bommineni weiyu jiang Guolong Zhang 《Journal of Animal Science and Biotechnology》 SCIE CAS 2012年第2期86-92,共7页
Cathelicidins are a major family of antimicrobial peptides present in vertebrate animals with potent microbicidal and immunomodulatory activities. Four cathelicidins, namely fowlicidins 1 to 3 and cathelicidin B1, hav... Cathelicidins are a major family of antimicrobial peptides present in vertebrate animals with potent microbicidal and immunomodulatory activities. Four cathelicidins, namely fowlicidins 1 to 3 and cathelicidin B1, have been identified in chickens. As a first step to understand their role in early innate host defense of chickens, we examined the tissue and developmental expression patterns of all four cathelicidins. Real-time PCR revealed an abundant expression of four cathelicidins throughout the gastrointestinal, respiratory, and urogenital tracts as well as in all primary and secondary immune organs of chickens. Fowlicidins 1 to 3 exhibited a similar tissue expression pattern with the highest expression in the bone marrow and lung, while cathelicidin B1 was synthesized most abundantly in the bursa of Fabricius. Additionally, a tissue-specific regulatory pattern was evident for all four cathelicidins during the first 28 days after hatching. The expression of fowlicidins 1 to 3 showed an age-dependent increase both in the cecal tonsil and lung, whereas all four cathelicidins were peaked in the bursa on day 4 after hatching, with a gradual decline by day 28. An abrupt augmentation in the expression of fowlicidins 1 to 3 was also observed in the cecum on day 28, while the highest expression of cathelicidin B1 was seen in both the lung and cecal tonsil on day 14. Collectively, the presence of cathelicidins in a broad range of tissues and their largely enhanced expression during development are suggestive of their potential important role in early host defense and disease resistance of chickens. 展开更多
关键词 Antimicrobial peptides CATHELICIDINS CHICKENS DEVELOPMENT Host defense peptides
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