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ISSN: 2573-458X

Environment Pollution and Climate Change
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  • Review Article   
  • Environ Pollut Climate Change,
  • DOI: 10.4172/2573-458X.1000146

To Overcome the First Disadvantage in the Fight against Global Climate Change, which Suggest New Generation Equipment and Needed New Technologies

Nguyen D*
Ho Chi Minh City University of Technology, Vietnam
*Corresponding Author : Nguyen D, Ho Chi Minh City University of Technology, Vietnam, Tel: +84 898 450 821, Email: bamoidan@gmail.com

Received Date: Jan 23, 2018 / Accepted Date: Jan 31, 2018 / Published Date: Feb 07, 2018

Abstract

From identifying the disadvantages of the classic dust separator, we propose the appropriate solutions to overcome these disadvantages and we have obtained nine different types of dust separators for dust collection from different industrial emissions. These new dust separators allow us to recover almost completely the industrial dust contained in various industrial emissions streams. Examine the classic reactor for the classic solid-liquid-gas heterogeneous system, find that it has disadvantage and find a solution to overcome that disadvantage and that we have a new solid-liquid-gas heterogeneous reactors. This devices can be intermittent or continuous, and when assembled we will have combined gas-solid-liquid heterogeneous reactors with industrial capacity to meet the requirements of industrial practice. From these new devices, we can propose three new technologies: No-waste technology for treatment and reuse industrial emissions, CO2 capture from industrial gases in the form of powder NaHCO3, CO2 capture from industrial gases in the form of food clean liquid CO2 or dry ice.

Keywords: Cyclone; Mist spray; Dust extractor; Heterogeneous reactor

Citation: Nguyen D (2018) To Overcome the First Disadvantage in the Fight against Global Climate Change, which Suggest New Generation Equipment and Needed New Technologies. Environ Pollut Climate Change 2: 146. Doi: 10.4172/2573-458X.1000146

Copyright: © 2018 Nguyen D. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

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