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7篇 您的检索式:作者名="Xuehong Lin"
    题名 作者 年代 出处 被引量
1A Novel Low Density Parity Check Coded Differential Amplitude and Pulse Position Modulation Free-Space Optical System for Turbulent Channel显示文摘Based on the proposed partly equidifferent mapping and its specific Differential Amplitude and Pulse Position Modulation(DAPPM) demodulation, a modified FSO scheme for turbulent channel is designed and analyzed. The novel Low Density Parity Check(LDPC) coded 4×4 and 4×8 DAPPM Free-Space Optical communication(FSO) system is constructed. The Monte Carlo simulation results show approximately 2d B transmit power reduction against classical LDPC-DAPPM at the identical Bit-Error-Rate in strong turbulent channel. The proposed partly equidifferent mapping is compatible with other modulations, so it enables widespread adoption in other coded FSO systems.Yin Liang Hua Zhang Limin Chen Xiaoping Liu Xuehong Lin 2017China Communications2017,14,3:3
2Kinetic parameters and mechanisms of the batch biosorption of Cr (Ⅵ) and Cr (Ⅲ) onto Leersia hexandra Swartz biomass显示文摘Jianping lJ a Qingyu Lin Xuehong Zhang 2009Journal of Colloid and Interface Science2009,333,:1
3Kinetic parameters and mechanisms of the batch biosorption of Cr(VI) and Cr(III) onto Leersia hexandra Swartz biomass显示文摘Jianping Li Qingyu Lin Xuehong Zhang Yan Yan 2009Journal of Colloid And Interface Science2009,,1:1
4Enhanced photoelectrochemical water-splitting effect with a bent ZnO nanorod photoanode decorated with Ag nanoparticles显示文摘Yuefan Wei Lin Ke Junhua Kong Hong Liu Zhihui Jiao Xuehong Lu Hejun Du Xiao Wei Sun 2012Nanotechnology2012,,23:1
5Desalination of seawater ion complexes by MFI-type zeolite membranes: Temperature and long term stability显示文摘Bo Zhu Zhou Hong Nicholas Milne Cara M. Doherty Linda Zou Y.S. Lin Anita J. Hill Xuehong Gu Mikel Duke 2014Journal of Membrane Science2014,,:1
6Isolation, structural characterization and antioxidant activity of a neutral polysaccharide from Sisal waste显示文摘Xuehong Zhang Lina Liu Cuiwu Lin 2013Food Hydrocolloids2013,,:1
7Chromium phytoextraction and physiological responses of the hyperaccumulator Leersia hexandra Swartz to plant growth-promoting rhizobacterium inoculation显示文摘Phytoextraction is a promising option for purifying hexavalent chromium(Cr(Ⅵ))-laden wastewater,but the long remediation period incurred by poor growth rate of Cr hyperaccumulators remains a primary hindrance to its large-scale application.In this study,we performed a hydroponic experiment to evaluate the feasibility of promoting the growth and phytoextraction efficiency of Cr hyperaccumulator Leersia hexandra Swartz(L.hexandra)by inoculating plant growth-promoting rhizobacteria(PGPR)Bacillus cereus(B.cereus).In batch tests,the Cr(Ⅵ)removal rates of L.hexandra and B.cereus co-culture were greater than the sum of their respective monocultures.This was likely due to the microbial reduction of Cr(Ⅵ)to Cr(Ⅲ),which is amiable to plant uptake.Besides,the PGPR factors of B.cereus,including indoleacetic acid(IAA)production,1-aminocyclopropane-1-carboxylic acid deamination(ACCd)activity,phosphate solubilization capacity,and siderophore production,were quantified.These PGPR factors helped explain the biomass augmentation,root elongation and enhanced Cr enrichment of the inoculated L.hexandra in pot experiments.Despite the increased Cr uptake,no aggravated oxidative damage to the cell membrane was observed in the inoculated L.hexandra.This was attributed to its capacity to confront the increased intracellular Cr stress by upregulating both the activities of antioxidative enzymes and expression of metal-binding proteins/peptides.Moreover,L.hexandra could always conserve the majority of Cr in the residual and oxalic integrated forms with low mobility and phytotoxicity,irrespective of the B.cereus inoculation.These results highlight the constructed Cr hyperaccumulatorrhizobacteria consortia as an effective candidate for decontaminating Cr(Ⅵ)-laden wastewater.Xuehong Zhang Yuanyuan Zhang Dan Zhu Zhiyi Lin Na Sun Chang Su Hua Lin Junjian Zheng 2023Frontiers of Environmental Science & Engineering2023,17,1:0
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