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首页> 外文期刊>Environmental Technology >Development of modified airlift reactor (MALR) for improving oxygen transfer: optimize design and operation condition using 'design of experiment' methodology
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Development of modified airlift reactor (MALR) for improving oxygen transfer: optimize design and operation condition using 'design of experiment' methodology

机译:改进的空运反应器(MALR)的开发改善氧气转移:使用“实验方法”方法优化设计和操作条件

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摘要

Oxygen scarcity may significantly affect the process performance since it has low aqueous solubility and high demand by chemical and biological processes. The oxygen mass transfer is therefore necessary to enhance. This work aimed to develop the gas-liquid reactor, named Modified Airlift Reactor (MALR) for improving the oxygen transfer efficiency in terms of internal configurations and aeration parameters by equipping a vertical baffle for creating liquid circulation phenomena, and installing slanted baffles in the reactor riser to extend air-bubbles retention time and to improve their distributions. Since extremum conditions of the investigated factors may inefficient, optimum levels are required to identify. 2(k)factorial and response surface design of Design of Experiment (DOE) methodology were applied to optimize these complex variables in terms of overall liquid mass transfer coefficient (K(L)a) of clean water. As a result, the main effective factors of MALR with their optimum value are amount of baffles (N-b similar to 3 baffles), baffle angle (alpha similar to 50 degrees), position of base area (Y-r similar to 10 cm), open space on baffle (A(s)similar to 90 cm(2)), and gas flow (Qg). Increasing Qg resulted betterK(L)afor the studied ranges (2-18 LPM). At the optimum condition, the improvement of MALR in terms ofK(L)acoefficient was increased up to 97% and 28% compared to the regular bubble column and airlift reactor, respectively, at a certain gas flow without any extra energy. The correlation models ofK(L)acoefficient with significant variables and power consumption were constructed for future estimation purposes.
机译:氧稀缺可能会显着影响过程性能,因为它具有低水溶性和化学和生物过程的高需求。因此,需要氧气传递来增强。这项工作旨在通过装配用于产生液体循环现象的垂直挡板,开发出改进的Airlift反应器(MALR)的气液反应器(MALR),以改善内部配置和曝气参数的氧气转移效率,并在反应器中安装倾斜挡板提升机延长气泡保留时间并改善其分布。由于调查因子的极值条件可能低效,因此需要最佳水平来识别。 2(k)实验设计(DOE)方法的阶乘和响应面设计应用于优化这些复数的清洁水的总液体传质系数(K(L)A)。结果,具有最佳值的MALR的主要有效因素是挡板(NB类似于3个挡板)的量,挡板角度(alpha类似于50度),基面积的位置(Yr类似于10厘米),开放空间在挡板上(类似于90cm(2))的(Qg)。增加Qg导致更好的Q(L)在学习范围(2-18LPM)上。在最佳条件下,与常规气泡柱和空运反应器分别在没有任何额外能量的情况下,分别在常规气泡柱和空运反应器相比,MALR的改善增加高达97%和28%。为未来估计目的构建了具有显着变量和功耗的k(l)acoefity的相关模型。

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  • 来源
    《Environmental Technology》 |2020年第20期|2670-2682|共13页
  • 作者单位

    Chulalongkorn Univ Fac Engn Dept Environm Engn Bangkok Thailand|Inst Technol Cambodge Dept Rural Engn Phnom Penh Cambodia;

    Chulalongkorn Univ Fac Engn Dept Environm Engn Bangkok Thailand|UPS INPT INSA Toulouse France|Univ Toulouse LISBP Toulouse France;

    Chulalongkorn Univ Fac Engn Dept Environm Engn Bangkok Thailand;

    Chulalongkorn Univ Fac Engn Dept Environm Engn Bangkok Thailand;

    Chulalongkorn Univ Fac Engn Dept Environm Engn Bangkok Thailand|Inst Technol Cambodge Dept Rural Engn Phnom Penh Cambodia;

    Chulalongkorn Univ Fac Engn Dept Environm Engn Bangkok Thailand|Chulalongkorn Univ Ctr Excellence Environm & Hazardous Waste Managem Bangkok Thailand;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    2(k)factorial design; airlift reactor; design of experiment; K(L)acoefficient; optimization; response surface design;

    机译:2(k)因子设计;Airlift反应堆;实验设计;K(l)acoefditie;优化;响应表面设计;

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