共查询到20条相似文献,搜索用时 218 毫秒
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介绍了防紫外整理剂UV-770的制备和应用情况。经测试:1%的UV-770处理后织物的紫外线防护系数(UPF)便能达到相关规定要求,并且UV-770选用了对人体无毒的原料,是目前棉织物上应用较为理想的抗紫外整理剂。 相似文献
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通过制备纳米氧化锌溶胶并应用于锦纶织物的抗紫外整理,实验表明:经过氧化锌溶胶处理,织物的抗紫外性能得到了明显的提高。同时也对棉/锦混纺织物进行了处理,相对于锦纶织物,棉/锦混纺织物处理后抗紫外线性能提高较大。 相似文献
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探讨了纳米抗紫外整理的制备,成功研制出了抗紫外效果好、耐水洗且具有柔软功能的抗紫外整理剂。用紫外线强度计法测试了整理后织物的抗紫外效果,TEM表征了整理剂的分散形态和稳定性,并对整理剂与织物的作用机理作了简单的探讨。 相似文献
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利用苯丙烯醛(CAH)对多氨基化合物RSD进行接枝改性,制备了紫外吸收剂(RSD-CAH)。利用RSD-CAH对真丝织物进行整理,测试与分析了整理织物的抗紫外抗菌性、耐洗性及吸湿吸水性能。结果表明:整理后真丝织物的UPF值由6.01提高到65.68;织物对大肠杆菌的抑菌率为91.49%,对金黄色葡萄球菌的抑菌率为93.43%;在经过30次洗涤后,织物的UPF值仍然达到51.82,且其抑菌率均在88%以上,说明整理后的真丝织物具有良好的抗紫外及抗菌耐洗性能;整理后的织物具有良好的吸湿吸水性。 相似文献
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采用浸渍法将低温制备的TiO2溶胶在普通和碱减量PET纤维上负载成膜,并以聚苯乙烯(PS)微球为模板剂使TiO2膜多孔化,制备了一系列TiO2/PET光催化纤维。采用XRD、SEM对TiO2和纤维进行了表征,并通过对甲基橙的降解来考察其光催化性能。结果表明:溶胶经室温陈化后可得到具有较高光催化活性的纳米锐钛矿型TiO2。PET纤维上TiO2的负载率随着溶胶在浸渍液中的含量增加而增大。PET纤维的碱减量有利于TiO2的负载和光催化活性的提高,且随着TiO2负载率的增加,甲基橙降解率具有先增加后缓慢减小的趋势。当碱减量纤维的TiO2负载率为4.2%时,光催化活性最好。利用PS为模板剂使TiO2薄膜多孔化可以进一步提高光催化纤维的比表面积和吸附能力,从而提高光催化活性。 相似文献
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以钛酸丁酯为原料,采用溶胶-凝胶法制备TiO2光催化材料,研究了水、硝酸用量和反应温度对TiO2性能的影响.以蒙脱土为复合基质制备TiO2/MMT复合材料,采用XRD和FT-IR表征了产物的结构,并考察了该材料对亚甲基蓝的降解行为.结果表明:锐钛矿型TiO2已插层柱化到蒙脱土层间,形成分子级别的TiO2支柱,钛的掺入导致原土层间域内离子性质发生变化,从而使TiO2/MMT复合材料的光降解效率远远高于纯TiO2粉体,并形成吸附-光降解协同作用,在降解40 min后对亚甲基蓝溶液的降解率可达到95%. 相似文献
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为使聚丙烯(PP)熔喷非织造材料功能化,扩大其在水处理方面的应用,以2,4-对苯二甲酸、六水合三氯化铁、纳米氧化钛为原料,PP熔喷非织造材料为基材,首先通过浸渍工艺预处理基底材料,再通过溶剂热法在PP熔喷非织造材料基材上负载金属有机框架材料TiO2/MIL-88B(Fe),制备了TiO2/MIL-88B(Fe)/PP复合熔喷非织造材料。借助红外光谱、X射线衍射及孔径分析对TiO2/MIL-88B(Fe)/PP复合熔喷非织造材料的结构与性能进行了表征。结果表明TiO2/MIL-88B(Fe)成功负载在PP熔喷非织造材料表面。在可见光照射条件下,TiO2/MIL-88B(Fe)/PP复合熔喷非织造材料对甲基蓝、酸性橙7及酸性红73这3种染料的降解率均达到80%以上,其中对甲基蓝的降解率可达86%,对较难降解的罗丹明B的降解率也达到了59%。在重复使用5次后,复合熔喷非织造材料对甲基蓝降解率均在70%以上,性能较稳定。 相似文献
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以钛酸丁酯、正硅酸乙酯、无水乙醇等为原料,采用Sol-Gel法制备TiO2-SiO2光催化剂,通过单因素实验得到最佳制备工艺条件为:n(钛酸丁酯)∶n(正硅酸乙酯)为2.33∶1,煅烧温度为600℃,煅烧时间为3 h,反应溶液pH值为3。当进水CODCr为379.5 mg/L,TiO2-SiO2光催化剂的投加量为0.5 g/L,紫外光照时间为3 h时,出水CODCr为67.8 mg/L。TiO2-SiO2光催化剂颗粒大小为100~500 nm,具有较高的催化活性和稳定性,可以多次重复使用。对比实验表明,TiO2-SiO2处理制浆中段废水的效率比TiO2高。 相似文献
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以钛酸丁酯[Ti(OBu)4]为原料,用溶胶凝胶法制备纳米TiO2溶胶,采用浸渍法将溶胶整理到活性炭纤维(ACF)滤料上,并对ACF滤料原样、整理样光催化氧化甲醛气体的性能进行静态、动态对比实验。静态实验中,弱光源条件下ACF滤料原样、整理样的甲醛净化率分别为33.3%、39.6%,在强光源条件下分别为38.6%,49.2%;动态实验中,弱光源条件下ACF滤料原样、整理样的甲醛净化率分别为69.9%、77.1%,在强光源条件下分别为77.1%,85.5%。证明纳米TiO2在强光源和弱光源条件下均可以光降解甲醛。 相似文献
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Removal and recovery of high levels of arsenic (As) in copper smelting wastewater present a great environmental challenge. A novel approach was investigated for the first time using TiO(2) for As adsorptive removal from wastewater and subsequent spent adsorbent regeneration and As recovery using NaOH. EXAFS results demonstrate that As(III), as the only As species present in the raw water, does not form an aqueous complex with other metal ions. An average of 3890 ± 142 mg/L As(III) at pH 1.4 in the wastewater was reduced to 59 ± 79 μg/L in the effluent with final pH at 7 in the 21 successive treatment cycles using regenerated TiO(2). Coexisting heavy metals including Cd, Cu, and Pb with concentrations at 369 mg/L, 24 mg/L, and 5 mg/L, respectively, were reduced to less than 0.02 mg/L. As(III) adsorption followed pseudosecond-order rate kinetics, and the adsorption behavior was described with the charge distribution multisite surface complexation model. Approximately 60% As(III) in the waste solution after the TiO(2) regeneration process was recovered by thermo vaporization and subsequent precipitation of sodium arsenite, as suggested by the EDX and XPS analysis. This "zero" sludge process sheds new light on successful As remediation technology for acidic metallurgical industry wastewater. 相似文献
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Photocatalytic activity for degradation of nitrogen oxides over visible light responsive titania-based photocatalysts 总被引:5,自引:0,他引:5
Lin YM Tseng YH Huang JH Chao CC Chen CC Wang I 《Environmental science & technology》2006,40(5):1616-1621
This study investigates photocatalytic degradation of nitrogen oxides overtitania-based photocatalysts illuminated by ultraviolet and visible light. The TiO2 photocatalyst was synthesized in a sol-gel process using titanium butoxide as the precursor. After calcination between 150 and 300 degrees C, the synthesized TiO2 responded strongly to visible light photocatalytically degrading NO(x), probably because of the existence of carbonaceous species that act as sensitizers. The optimum calcination temperature was found to be around 200 degrees C. Additionally, platinum ion-doped TiO2 was prepared by impregnation using Pt(NH3)4(NO3)2 as a dopant, which improved the photocatalytic activity that degraded NO(x) in the visible light region. The Pt ion was doped in oxide form at the surface of TiO2 and was expected to be responsible for sensitization. At an optimum calcination temperature of around 200 degrees C, the Pt ion-doped TiO2 exhibited higher activity in the further oxidation of NO2 to NO3- clearly reducing NO2 selectivity. The TiO2 catalysts chemically prepared by either the sol-gel process or impregnation exhibited stronger activity than conventional TiO2 when illuminated under a fluorescent lamp. Rinsing with water was responsible for the restored reactivity of prepared TiO2 catalysts for NO(x) degradation. 相似文献
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以原位乳液聚合制得的聚丙烯酸丁酯PBA/TiO2复合胶乳为整理剂,通过浸轧对棉织物进行功能整理,并与经TiO2水分散液、PBA胶乳与TiO2分散液共混物、黏合剂VTECO与TiO2分散液共混物等3种不同整理剂整理的棉织物进行功效和服用性能比较。结果发现,在相同的整理工艺下,经自制PBA/TiO2复合胶乳整理的棉织物表面TiO2粒子尺寸较小,分散较好,织物表面附着层较薄、较均匀,纱线内纤维间黏连较少,因而经相应整理的棉织物具有较好的抗紫外线和抗老化性能,且对棉织物原有的白度、手感等服用性能影响较小,这与PBA/TiO2复合胶乳整理本质上实现的是对纱线内单纤维的均匀薄型包覆有关。 相似文献