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基于北斗/GPS双模的船舶通信航标遥测遥控系统 被引量:1
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作者 李红磊 赵坤峰 《舰船科学技术》 北大核心 2024年第20期159-162,共4页
为解决船舶在复杂海况下信号不稳定问题,提升信息传输的安全性和抗干扰能力,获取准确、可靠的船舶位置信息,设计基于北斗/GPS双模的船舶通信航标遥测遥控系统。船舶通信航标终端利用北斗/GPS双模定位模块,解决船舶在复杂海况下信号不稳... 为解决船舶在复杂海况下信号不稳定问题,提升信息传输的安全性和抗干扰能力,获取准确、可靠的船舶位置信息,设计基于北斗/GPS双模的船舶通信航标遥测遥控系统。船舶通信航标终端利用北斗/GPS双模定位模块,解决船舶在复杂海况下信号不稳定问题,提升信息传输的安全性和抗干扰能力,获取准确、可靠的航标位置信息;利用温湿度传感器,采集航标附近环境信息,并通过北斗通信卡传输信息到终端管理中心;终端管理中心根据接收的信息,实时更新显示航标相关信息,并向船舶通信航标终端发送控制指令,确保船舶的航行安全和效率。实验证明,该系统可有效采集航标附近的环境信息,精准定位船舶位置;该系统可实现船舶通信航标的遥测遥控,确保船舶安全航行。 展开更多
关键词 北斗/GPS双模 船舶通信航标 遥测遥控系统 航标终端 北斗通信卡 终端管理中心
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Synthesis of A-position Ba-doped Perovskite LaCoO_(3) and Performance of Photocatalytic Phenol Degradation 被引量:1
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作者 YUAN Li-jing ZHAO Kun-feng +7 位作者 SONG Jin GUO Shi-long GUO Jia-le WANG Yan MENG Xian-jie WEI Xian-xian LIU Zhen-min WANG Xiao-xiao 《分子催化(中英文)》 CAS CSCD 北大核心 2024年第6期510-520,I0001,I0002,共13页
The utilization of perovskite oxide materials as catalysts for the photodegradation of organic pollutants in water is a promising and rapidly advancing field.In this study,a series of La_(1−x)Ba_(x)CoO_(3)(x=0.2,0.3,0... The utilization of perovskite oxide materials as catalysts for the photodegradation of organic pollutants in water is a promising and rapidly advancing field.In this study,a series of La_(1−x)Ba_(x)CoO_(3)(x=0.2,0.3,0.4,0.5,0.6)catalysts with varying Ba doping ratios were synthesized using the citric acid complexation-hydrothermal synthesis combined method for the degradation of phenol under visible light irradiation.Among the synthesized catalysts,La_(0.5)Ba_(0.5)CoO_(3) exhibited the highest photocatalytic activity.In addition,the photocatalytic mechanism for La_(0.5)Ba_(0.5)CoO_(3) perovskite degradation of phenol was also discussed.The synthesized catalysts were characterized using XRD,SEM,FT-IR,XPS,MPMS and other characterization techniques.The results revealed that the diffraction peak intensity of La_(1−x)Ba_(x)CoO_(3) increased with higher Ba doping ratios,and the La_(0.4)Ba_(0.6)CoO_(3) exhibited the strongest diffraction peaks.The catalyst particle sizes ranged from 10 to 50 nm,and the specific surface area decreased with increasing Ba content.Additionally,the paramagnetic properties of La_(0.5)Ba_(0.5)CoO_(3) were similar to that of La_(0.4)Ba_(0.6)CoO_(3).The experimental results suggested that the incorporation of Ba could significantly improve the catalytic performance of La_(1−x)Ba_(x)CoO_(3) perovskites,promote electron transfer and favor to the generation of hydroxyl radicals(•OH),leading to the efficiently degradation of phenol. 展开更多
关键词 perovskite catalyst La_(1−x)Ba_(x)CoO_(3) PHOTOCATALYSIS phenol degradation mechanism
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