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膜技术的成本和我。

Membrane technology costs and me.

机构信息

Gas Processing Center, Qatar University, Qatar; Cranfield Water Science Institute, Canfield University, UK.

出版信息

Water Res. 2017 Oct 1;122:1-9. doi: 10.1016/j.watres.2017.05.027. Epub 2017 May 16.

DOI:10.1016/j.watres.2017.05.027
PMID:28570957
Abstract

A reflection of the place cost analysis holds in membrane process technology research and development is provided. The review encompassed two membrane processes and applications: (a) reverse osmosis (RO) for seawater desalination, and (b) membrane bioreactor (MBR) technology for wastewater treatment. The cost analysis undertaken extended to (i) the determination of operating expenditure (OPEX) trends using simple analytical expressions, (ii) the subsequent estimation of the sensitivity of OPEX to individual system parameters, and (iii) published data on CAPEX for individual full-scale installations or from cost analyses. An appraisal of the peer-reviewed literature through a survey of a leading scientific database was also carried out. This bibliometric analysis was based on authors' keywords; it aimed to establish the profile of process cost for each of the two applications when compared with other popular research topics. The OPEX analysis, ostensibly through a consideration of specific energy demand in kWh per m permeate, revealed it to relate primarily to hydrodynamics in the case of RO, and to both membrane fouling and air scouring for MBRs. The bibliometric analysis of research trends revealed a marked difference in emphasis on cost aspects between the two research areas, with the focus on cost specifically being 16 times greater for RO desalination of seawater than MBR treatment of wastewater. MBR research appears to be dominated by fouling and foulant characterisation, making up almost a quarter of all studies, notwithstanding evidence from practitioners that other process parameters are as important in determining MBR process OPEX and operability.

摘要

对膜工艺技术研发中位置成本分析的反映提供了。该审查涵盖了两个膜过程和应用:(a)反渗透(RO)海水淡化,和(b)膜生物反应器(MBR)技术用于废水处理。所进行的成本分析扩展到(i)使用简单的分析表达式确定运营支出(OPEX)趋势,(ii)随后估计OPEX对个别系统参数的敏感性,以及(iii)关于单个全规模装置的 CAPEX 的已发表数据或来自成本分析。还通过对一个主要科学数据库的调查进行了对同行评议文献的评估。该文献计量分析基于作者的关键词;其目的是确定两个应用程序中的每个过程成本概况,与其他热门研究课题进行比较。OPEX 分析,表面上是通过考虑每 m 渗透液的特定能源需求 kWh,发现它主要与 RO 的流体动力学有关,而 MBR 则与膜污染和空气冲刷有关。研究趋势的文献计量分析显示,两个研究领域在成本方面的重点明显不同,RO 海水淡化的成本重点比 MBR 处理废水的成本重点高 16 倍。尽管有从业者的证据表明,其他工艺参数在确定 MBR 工艺 OPEX 和可操作性方面同样重要,但 MBR 研究似乎主要集中在污染和污染特性上,几乎占所有研究的四分之一。

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