出版時間:2010-9 出版社:浙江大學出版社 作者:先進紡織材料與制備技術(shù)教育部重點實驗室 等主編 頁數(shù):577 字數(shù):1888000
內(nèi)容概要
先進紡織材料及加工技術(shù)國際會議由浙江理工大學、先進紡織材料與制備技術(shù)教育部重點實驗室主辦。會議于2010年10月20日至24日在中國杭州舉行。 杭州是經(jīng)濟繁榮的中國東南省份浙江的省會,是歷史悠久的絲綢之府和聲名遠播的現(xiàn)代紡織工業(yè)基地。杭州也因擁有夢幻般的西子湖和深厚的文化底蘊,成為中國最知名的旅游勝地之一。豐富的歷史遺跡、優(yōu)秀的人文藝術(shù)景觀、環(huán)境優(yōu)雅的酒店、精致的飲食和引人入勝的風景,使得杭州不愧為一個理想的會議舉辦地。 本書即為該次會議的論文集,收錄了一百余篇論文成果。
書籍目錄
1 Structure and Thermal Stability of Nanoclay/flax Nanocomposite2 Multifunctional Composite Nanofibers3 Liquid Crystalline Electrospinning of Carbon Nanotube Reinforced Cellulose Fibers from Bamboo 4 Structures and Properties'of Kapok Fiber5 Analysis on Structure of Wool Keratin Film by FT-IR and SEM6 Preparation and Characterization of CA/CeO2 Composite Nanofibers Reach on the Structure and Character of a Thermal Regulating Fiber8 Preparation and Characterization of Nanofibrous Bioactive Glass Scaffolds Study on the Preparation and Characterization of SWNTs/Lyocell Composite Fibers10 The Effect of Acids on Mechanical Properties of PPS Fibers11 Removal of Indoor Ammonia with Fe (Ⅲ)-modified PAN Fiber Complexes12 Preparation of Catalytic Activated Carbon Fiber and Its Catalytic Oxidation Performance to 4-nitrophenol 13 Influence of SiC Coating on the Oxidation Behavior of PAN Carbon Fiber at Elevated Temperatures14 Investigation of Osteoblast-like MC3T3-E1 Cells on a Collagen-like Protein and Poly(lactic-co-glycollc acid) Nanofibrous Composite Scaffold15 Electrospun Polyvinyi Alcohel/Halloysite Nanotubes Composite Nanofibers16 Effect of Rheological Properties on Electrospinning of Ultra High Molecular Weight (UHMW) Poly(vinyl alcohol)17 Synthesis and Characterization of PSA-PEG Block Copolymer Based on Polysuffonamide and Amine-Terminated Polyethylene Glycol18 Shape Memory Effect and Actuation Property of Shape Memory Polymer Based Nanocomposites19 The Relationship between the Structures and Mechanical Properties of A. pernyi Silk 20 Flexible Tactile Sensor Based on PVDF Fibrous Membrane21 Modification of Wool Fiber Using Freeze Treatment22 Preparation and Properties Research of Poly(lactide-co-glycolide)/Silk Blend Nanofibrous Membrane 23 Effect of Low Temperature Plasma Treatment on Surface Properties of Polysulfonamide Fiber 24 Rheological Behavior and Spinning Performance of Cellulose/[BMIM]Cl Solutions Prepared by Two,Steps Dissolving Process25 Fabrication and Application of Carbon Nanotube/Magnetite Composites26 Preparation and Regeneration of Bioplasts for Biomodification of Polyester27 Preparation and Properties Characterization of Butyl-methacrylate Copolymer Absorptive Functional Fiber 28 Solubility of Bacterial Cellulose in LiCi/DMAc Solvent System29 Photocatalytic Properties of TiO2 Supported on Pd-modified Carbon Fibers30 Impregnation of Metal Complex into Epoxy Insulation Materials Using Supercritical Carbon Dioxide and Its Application for Copper Plating
章節(jié)摘錄
插圖:1 IntroductionThe gaseous ammonia is generated by a continuous decomposition of antifreeze admixtures based onurea compounds in the concrete wall under alkaline and warm condition, and then release to indoorenvironment through slow diffusion and have led to the increasing indoor air pollutiontll. There fore, how to reduce the risk caused by ammonia in indoor air becomes a big issue in some countries particularly China. In recent years, several studies involved in the decomposition of indoor ammonia with nano-TiO2 loaded woven fabrics as the photocatalysts have been reported. However, it is known that some disadvantages such as higher cost hindered the nano-TiO2 particles from using as the photocatalyst in an industrial scale. Hence, it is necessary to explore new catalysts for the decomposition of indoor ammonia by using lower-cost polymer materials. Fe (III)-modified polyacrylonitrile (PAN) fiber complexes have been used as a low-cost and effective heterogeneous Fenton catalyst in the decomposition of textile dyes in wastewater since they could enhance the decomposition of H202 into hydroxyl radicals with high oxidative power. In this work, the Fe-(III)-amidoximated PAN fiber complexes (Fe-AO-PAN) were firstly prepared and expected to serve as the catalyst for the oxidation of ammonia in indoor air. And some important effecting factors such as catalyst dosage, Fe content of the catalyst, initial ammonia concentration and gas flow rate were investigated and discussed.2 Experimental methods2.1 Materials and reagentsAcrylic knitting yams consisted of twisted acrylic fibers containing 87.07% acrylonitrile monomer are purchased from Kunshan Shilin Woolen Spinning Company (Shanghai, China). Hydroxylamine hvdrochloride, sodium hydroxide, ammonia water and ferric chloride were of agent grade.
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