首页> 外文期刊>Renewable energy >Performance evaluation of modified nanohybrid membrane polyethersulfone-nano ZnO (PES-nano ZnO) using three combination effect of PVP, irradiation of ultraviolet and thermal for biodiesel purification
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Performance evaluation of modified nanohybrid membrane polyethersulfone-nano ZnO (PES-nano ZnO) using three combination effect of PVP, irradiation of ultraviolet and thermal for biodiesel purification

机译:用PVP三种组合效应改性纳米膜聚醚砜 - 纳米ZnO(PES-Nano ZnO)的性能评价,紫外线照射和生物柴油净化的辐射

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摘要

The main problems in biodiesel purification using membrane are low selectivity and fouling issue. Therefore, this research was developed on the modification polyethersulfone nanohybrid membranes which have excellent selectivity performance and anti-fouling behavior. The PES-nano ZnO nanohybrid membrane was fabricated by preparing dope solution composed of PES, nano ZnO and N-methyl Pyrrolidone as a solvent. UV irradiation, PVP addition, and thermal treatments were conducted to modify fabricated nanohybrid membranes. The modified membrane exhibited significant enhancement of hydrophilicity by lowering the water contact angle value from 66.17 degrees to 52.33 degrees. The initial flux of modified membrane increased up to 200% of the unmodified membrane's initial flux. Both of modified and unmodified membranes have rejection more than 91% that can lowering the glycerol content from 3.98 to 0.34 wt-%. The modified membrane presented less foulant deposition on the membrane surface. This membrane also performed excellent stability in term of permeate flux and rejection efficiency. It is verified that the concept of modified PES-nano ZnO membrane can achieve a higher membrane performance for biodiesel purification such as increased of flux, lowering the glycerol content, better antifouling behavior and excellent stability. (C) 2019 Elsevier Ltd. All rights reserved.
机译:使用膜的生物柴油纯化的主要问题是低选择性和污垢问题。因此,该研究是在改性聚醚砜纳米羊膜上开发的,具有优异的选择性性能和防污行为。通过制备由PE,纳米ZnO和N-甲基吡咯烷酮作为溶剂制备的掺杂溶液制备PES-纳米ZnO纳米膜膜。进行UV辐照,PVP加法和热处理以改变制造的纳米膜膜。通过将66.17度降低到52.33度,改性膜通过将水接触角值降低至52.33度,显着提高了亲水性。改性膜的初始通量增加了未修改膜的初始通量的200%。两种改性和未改性的膜都排斥超过91%,可以将甘油含量从3.98降至0.34重量%。改性膜在膜表面上呈现较少的污垢沉积。该膜在渗透通量和排斥效率的术语中也表现出优异的稳定性。验证改性PES-NANO ZnO膜的概念可以实现更高的生物柴油纯化膜性能,例如助焊剂的增加,降低甘油含量,更好的防污行为和优异的稳定性。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2020年第4期|935-945|共11页
  • 作者单位

    Diponegoro Univ Fac Engn Chem Engn Dept Kampus Undip Tembalang Semarang 50275 Indonesia|Diponegoro Univ Membrane Res Ctr MeR C Membrane Excellent Res Kampus Undip Tembalang Semarang 50275 Indonesia;

    Diponegoro Univ Fac Engn Chem Engn Dept Kampus Undip Tembalang Semarang 50275 Indonesia;

    Diponegoro Univ Fac Engn Chem Engn Dept Kampus Undip Tembalang Semarang 50275 Indonesia;

    Diponegoro Univ Fac Engn Chem Engn Dept Kampus Undip Tembalang Semarang 50275 Indonesia;

    Diponegoro Univ Fac Engn Chem Engn Dept Kampus Undip Tembalang Semarang 50275 Indonesia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polyethersulfone; Nano zinc oxide; Polyvynil pyrrolidone; Biodiesel; Modified membrane;

    机译:聚醚砜;纳米氧化锌;Polyvynil吡咯烷酮;生物柴油;改性膜;

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