Application of Molecular Sieve Oxygen Generation Mini-plant under Harsh Environment

Ji-xue Liu, Chao Qiu, Jianxiong Zuo, Xiaomin Lou
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Abstract

Pressure Swing Adsorption (PSA) oxygen generation mini-plant is widely used in all various hospitals for its fast, convenient, and cost-effective features. However, considering the landscape of global markets, the PSA medical oxygen generation mini-plant design basis varies from location to location. Therefore, it forces the manufacturer to design and build the PSA oxygen generation mini-plant more flexibly to enable its compatibility in different extreme ambient conditions (temperature, humidity, pressure, cleanliness) of installation location. For the sake of these concerns, this paper employs the concept of modularity as an approach to PSA medical-grade oxygen generation mini-plant design and application and elaborates 10 key components for 4 modules of PSA medical-grade oxygen generation mini-plant, namely (a) air compressor module; (b) PSA module; (c) oxygen compressor module; (d) smart control module. Under this modularized design approach, this paper investigates the technical features and the design criticality of modular and key components in fulfilling the expected performance, finally achieving and maintaining the overall performance of PSA oxygen generation mini-plant with the selected modules which may be installed worldwide. This paper helps to highlight the variability of PSA oxygen generation mini-plants in harsh environments in four dimensions (temperature, humidity, pressure, cleanliness) and briefs the methodology of the phase gate model for modular approach in oxygen generation mini-plant. It contributes to the literature on this important subject in the modularized design method, adsorption technology, air separation process, etc.
分子筛制氧微型装置在恶劣环境下的应用
变压吸附制氧小型装置以其快速、方便、经济高效的特点被广泛应用于各大医院。然而,考虑到全球市场的格局,PSA医用制氧微型工厂的设计依据因地而异。因此,它迫使制造商更灵活地设计和建造PSA制氧微型装置,使其能够适应安装位置的不同极端环境条件(温度、湿度、压力、清洁度)。针对这些问题,本文采用模块化的理念对PSA医用级制氧微型装置进行设计与应用,并详细阐述PSA医用级制氧微型装置4个模块的10个关键部件,分别是(a)空压机模块;(b) PSA模块;(c)氧气压缩机模块;(d)智能控制模块。在这种模块化的设计方法下,本文研究了模块和关键部件在实现预期性能方面的技术特点和设计关键,最终选用可在全球范围内安装的模块实现并保持PSA制氧微型装置的整体性能。本文从四个维度(温度、湿度、压力、清洁度)分析了PSA制氧微型装置在恶劣环境下的可变性,并简要介绍了用于制氧微型装置模块化方法的相门模型的方法。在模块化设计方法、吸附技术、空气分离工艺等方面对这一重要课题进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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