期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Synthesis of graphene oxide nanoribbons/chitosan composite membranes for the removal of uranium from aqueous solutions 被引量:3
1
作者 xuewen hu Yun Wang +7 位作者 Jinbo Ou Yang Yang Li Peng Wu Hengju Zhang Dingzhong Yuan Yan Liu Zhenyu Wu Zhirong Liu 《Frontiers of Chemical Science and Engineering》 SCIE EI CAS CSCD 2020年第6期1029-1038,共10页
In this study,a graphene oxide nanoribbons/chitosan(GONRs/CTS)composite membrane was successfully prepared by encapsulating CTS into GONRs,which were unzipped from multi-walled carbon nanotubes.The GONRs/CTS composite... In this study,a graphene oxide nanoribbons/chitosan(GONRs/CTS)composite membrane was successfully prepared by encapsulating CTS into GONRs,which were unzipped from multi-walled carbon nanotubes.The GONRs/CTS composite membrane so prepared was characterized using scanning electron microscopy,X-Ray diffraction and Fourier transform infrared spectroscopy.The effects of the experimental conditions such as the pH(2-7),adsorbent dosage(10-50mg),experimental time(5min-32h),uranium concentration(25-300mg·L^-1),experimental temperature(298K-328K)on the adsorption properties of the composite membrane for the removaal of U(VI)were investigated.The results showed that the U(VI)adsorption process of the GONRs/CTS composite membrane was pH-dependent,rapid,spontaneous and endothermic.The adsorption process followed the pseudosecondary kinetics and Langmuir models.The maximum U(VI)adsorption capacity of the GONRs/CTS composite membrane was calculated to be 320mg·g^-1.Hence,the GONRs/CTS composite membrane prepared in this study was found to be suitable for separating and recovering uranium from wastewater. 展开更多
关键词 graphene nanoribbons CHITOSAN U(VI) adsorption
原文传递
质谱光电离/解离技术和生物分子结构鉴定
2
作者 杨笑宇 贾珊珊 +4 位作者 张娟 亓英华 胡雪雯 沈宝洁 钟鸿英 《化学进展》 SCIE CAS CSCD 北大核心 2021年第12期2316-2333,共18页
质谱是一种广泛应用于化学、生物医学、药学、环境、农业和能源等各领域的分子结构鉴定技术,这种技术通过准确测定分子离子和碎片离子的质量-电荷比来推导分子结构。如何将试样中待测组分有效气化、离子化,转变为具有不同质-荷比的气态... 质谱是一种广泛应用于化学、生物医学、药学、环境、农业和能源等各领域的分子结构鉴定技术,这种技术通过准确测定分子离子和碎片离子的质量-电荷比来推导分子结构。如何将试样中待测组分有效气化、离子化,转变为具有不同质-荷比的气态离子是质谱仪器和分析方法研究的关键。基于不同物理化学原理的电离、解离方法各有特点,适合不同分析目的。常见的软电离技术一般产生稳定的偶电子离子,往往需要与其他技术联用才能实现分子离子的进一步解离。除了基于碰撞活化和电子得失的两类常见解离方法,光解离技术利用波长/能量可调控的光辐射来使样品分子电离,并引发特定化学键断裂。本文旨在综述不同电离/解离技术,重点探讨近年来发展的红外和紫外光电离/解离技术基本工作原理、仪器特点及其在生物分子(包括有机小分子、蛋白质、核酸和多糖等)结构鉴定中的应用。 展开更多
关键词 红外 紫外 光电离/解离 质谱分析 生物分子
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部