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Heavy metals in water bodies purified by suspended substrate of rivers 被引量:3
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作者 ZhouDM ChenHM 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2002年第1期44-48,共5页
The equations, which are used to describe the relationships of adsorption quantity (s) , adsorption percent (P \-a), aqueous equilibrium concentration (c) of heavy metal on river suspended substrates and the ra... The equations, which are used to describe the relationships of adsorption quantity (s) , adsorption percent (P \-a), aqueous equilibrium concentration (c) of heavy metal on river suspended substrates and the ratio of adsorbent to water( j ), are developed when heavy metal adsorption on river suspended substrate satisfies with linear adsorption equation. The results, according to the simulation from heavy metal adsorption on suspended substrates of several main Chinese rivers from a previous research report, indicated that these developed equations could describe the linear adsorption processes in practice very well, meanwhile, the adsorption equilibrium constant of adsorbent for heavy metal was an intensity factor regardless of ratio of suspended substrates to water but strongly depended on media's pH. Furthermore, the suspended substrates of Yellow River gave stronger purification ability for Pb than for Cd and Cu. When Cd was purified by different river suspended substrates, it exhibited that the order of their purification ability for Cd was that of Songhuajiang River> Zhujiang Pearl River> Yellow River, which was consistent with their contents of cation exchange capacity(CEC). In addition, we estimated and compared the purification ability of river suspended substrates for cadmium, and the resulting purification percent was 37 64%, 64 58% and 50 98% for Songhuajiang River, Yangtze River and Zhujiang River, respectively. 展开更多
关键词 heavy metal suspended substrate PURIFICATION
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Regulation and Control of Electromagnetic Field in Radio-Frequency Circuits and Systems
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作者 Kaixue Ma 《Electromagnetic Science》 2023年第3期22-49,共28页
Since the first demonstrations of radio-frequency(RF)circuits,the physics of the electromagnetic(EM)field and its regulation and control with codesigned circuits,have become essential competencies of RF circuit design... Since the first demonstrations of radio-frequency(RF)circuits,the physics of the electromagnetic(EM)field and its regulation and control with codesigned circuits,have become essential competencies of RF circuit designers.Leveraging advanced regulation or control methods,numerous high-performance circuits have been developed at RF and millimeter-wave(mm-wave)frequencies.Three main methods of electromagnetic regulation have been widely utilized,namely,the separation of electric and magnetic coupling paths,the manipulation of electromagnetic energy through the coupling of multiple tanks or multiple resonators,and the regulation of electromagnetic fields in air cavities or meta-substrates.The separated coupling paths of electric and magnetic fields provide guidance for designing a high-performance filter topology with a quasielliptical response through additional zeros.The manipulation of the EM field through electrical and magnetic intercouplings of multitanks or multiresonators,such as are used in oscillators,power amplifiers(PAs),etc.,results in remarkable power efficiency,size reduction,and wide bandwidth.The regulation of electromagnetism through an air cavity,patterned substrate,or metasubstrate reduces dielectric losses and size,especially when using a substrate integrated suspended line(SISL)platform.Many excellent circuits have been reported based on SISL with low loss,high integration,and self-packaging.Here,we present state-of-the-art cases that demonstrate the benefits of EM field regulation and control. 展开更多
关键词 ELECTROMAGNETIC Mixed coupling Multiresonators and multitanks Patterned substrate and metasubstrate Radio frequency circuits Regulation and control Separate electronic and magnetic coupling paths substrate integrated suspended line
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