生物模板辅助纳米二氧化钛及其环境性能研究

N. Saikumari, S. Dev, S. Dev
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摘要

环境的可持续性,除了在不同的层次上讲,需要调查工业活动的管理方面的生态友好。众所周知,各行各业的废水是造成环境恶化的主要原因,特别是水污染。因此,水分析报告对于确定典型生态系统中维持的生活质量和标准变得更加重要。本研究包括利用有机植物提取物调整结构和形态特性的纳米吸附剂,如二氧化钛,对Korattur湖原始水样和处理后水样的理化因素进行分析。对其进行了XRD分析、BET分析、DRS-UV分析、SEM和TEM分析并进行了报道。叶提取物作为模板的显著影响体现在晶体尺寸减小(12.4 nm),最大表面积为105 m2/g以及吸收边的色移。采用生物需氧量(BOD-85%)、化学需氧量(COD-94.5%)、溶解氧(88%)、总悬浮物(TSS-75.6%)、电导率(74.5%)、氯化物(89%)、硝酸盐和磷酸盐含量等污染物水平指标来确定茶叶提取物介导的纳米二氧化钛对污染物的去除效率。结果表明,纳米材料处理过程的可靠性系数小于1,显示了纳米材料的有效性和可靠性。
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Biotemplate Assisted Nano Titania and Its Environmental Performance
Environmental sustainability apart from spoken at different levels needs to investigate the management of industrial activities in terms of eco-friendliness. It is well known that effluents from various industries become a major source of environmental degradation in particular water pollution. Thus water analysis report turns to be more significant, to determine the quality and standard of life maintained in a typical ecosystem. This study includes the analysis of physico-chemical factors of raw as well as treated water samples from Korattur Lake employing nano sized adsorbents like titania with tuned structural and morphological properties through organic plant extract. The XRD analysis, BET analysis, DRS-UV analysis, SEM and TEM analysis have been carried out and reported. The marked influence of leaf extract as a template is reflected in reduced crystallite size (12.4 nm) with maximum surface area 105 m2/g along with bathochromic shift of absorption edge. The usual indicators of contamination level at a given source namely Biological Oxygen Demand (BOD-85%), Chemical Oxygen Demand (COD-94.5%), Dissolved Oxygen (88%), Total Suspended Solids (TSS-75.6%), Electrical Conductivity (74.5%), Chloride (89%), Nitrate and Phosphate contents etc. were used to ascertain the efficiency of contaminants removal using tea leaf extract mediated nano titania. The reliability factor of the treatment process was found to be less than 1, revealed the effectiveness and reliability of nano material.
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