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氮流量对孪生靶磁控溅射沉积氮化铬薄膜性能的影响 被引量:2
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作者 袁燕 李花 +3 位作者 张海宝 杨丽珍 刘忠伟 陈强 《真空科学与技术学报》 EI CAS CSCD 北大核心 2016年第12期1381-1386,共6页
采用中频孪生靶反应磁控溅射在金属镍基底上制备氮化铬薄膜。利用X射线衍射仪、显微硬度计、扫描电子显微镜、原子力显微镜、磨擦磨损试验仪和电化学工作站等系统研究了氮气流量(即氮/氩流量比)对薄膜的相结构、显微硬度、表面形貌、附... 采用中频孪生靶反应磁控溅射在金属镍基底上制备氮化铬薄膜。利用X射线衍射仪、显微硬度计、扫描电子显微镜、原子力显微镜、磨擦磨损试验仪和电化学工作站等系统研究了氮气流量(即氮/氩流量比)对薄膜的相结构、显微硬度、表面形貌、附着力、耐磨性和耐腐蚀性的影响。结果得到随氮/氩流量比的增加,CrN_x薄膜成分经历了一个由Cr→Cr+Cr N→Cr+Cr_2N+Cr N的演化过程,薄膜形貌由致密、球状颗粒向类长方体规则形状的面心结构转化;而薄膜的表面粗糙度则呈现出在低氮时稍微下降,高氮含量时又快速增加的趋势,在N_2/Ar流量比为23/53时,粗糙度达到最小;耐磨性、硬度都呈现随着氮流量的增加先上升后下降;薄膜耐腐蚀性能随氮的加入明显得到改善。综合性能分析认为,制备2.5μm厚的氮化铬薄膜时在N_2/Ar(流量比)为23/53较为合适。 展开更多
关键词 磁控溅射 氮化铬薄膜 氮流量比 孪生靶
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New insights into eutrophication management:Importance of temperature and water residence time 被引量:3
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作者 Feng Zhao Xu Zhan +8 位作者 Hai Xu Guangwei Zhu Wei Zou Mengyuan Zhu Lijuan Kang Yulong Guo Xingchen Zhao Zicong Wang Wei Tang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2022年第1期229-239,共11页
Eutrophication and harmful cyanobacterial blooms threaten water resources all over the world.There is a great controversy about controlling only phosphorus or controlling both nitrogen and phosphorus in the management... Eutrophication and harmful cyanobacterial blooms threaten water resources all over the world.There is a great controversy about controlling only phosphorus or controlling both nitrogen and phosphorus in the management of lake eutrophication.The primary argument against the dual nutrients control of eutrophication is that nitrogen fixation can compensate the nitrogen deficits.Thus,it is of great necessary to study the factors that can significantly affect the nitrogen fixation.Due to the difference of climate and human influence,the water quality of different lakes(such as water temperature,N:P ratio and water residence time)is also quite different.Numerous studies have reported that the low N:P ratio can intensify the nitrogen fixation capacities.However,the effects of temperature and water residence time on the nitrogen fixation remain unclear.Thus,30 shallows freshwater lakes in the eastern plain of China were selected to measure dissolved N_(2) and Ar concentrations through N_(2):Ar method using a membrane inlet mass spectrometer to quantify the nitrogen fixation capacities and investigate whether the temperature and water residence time have a great impact on nitrogen fixation.The results have shown that the short lake water residence time can severely inhibit the nitrogen fixation capacities through inhibiting the growth of nitrogenfixing cyanobacteria,changing the N:P ratio and resuspending the solids from sediments.Similarly,lakes with low water temperature also have a low nitrogen fixation capacity,suggesting that controlling nitrogen in such lakes is feasible if the growth of cyanobacteria is limited by nitrogen. 展开更多
关键词 EUTROPHICATIOn n_(2):ar method TEMPERATURE n:P ratio Lake water residence time
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