Removal of urea in ultrapure water system by urease-coated reverse osmosis membrane

IF 7.2 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Water Research X Pub Date : 2024-01-01 DOI:10.1016/j.wroa.2024.100211
Seung-Ju Choi , Lucas Crane , Seoktae Kang , Treavor H. Boyer , François Perreault
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Abstract

Among the various substances found in the feed source for the production of ultrapure water (UPW), urea is challenging to remove because it is a small molecular weight molecule that is not easily oxidized and does not carry a charge under neutral pH conditions. Urease enzyme, found in various organisms such as plants and bacteria, catalyze the hydrolysis of urea into carbon dioxide and ammonia. In this study, urease was immobilized on the polyamide layer of a reverse osmosis (RO) membrane to remove urea in UPW systems. The removal efficiency of urea by urease-coated RO membrane showed up to 27.9 % higher urea removal efficiency compared to the pristine membrane. This increase in urea removal can be attributed to both physical and biological effects from the urease coating on the membrane. Firstly, urease on the membrane surface can act as an additional physical barrier for urea to pass through. Secondly, urea can be hydrolyzed by the enzyme when it passes through the urease-coated RO membrane. In a two-pass RO system typical for UPW production, the removal of urea by a urease-coated membrane would be enhanced by twofold. This overall method can significantly increase the removal efficiency of urea in UPW systems, especially when considering the compounded removal by the urease coating, rejection by RO, and additional reactions by other treatment processes. Moreover, urea in UPW systems can be removed without the installment of additional processes by simply coating urease on the existing RO membranes.

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用尿素酶涂层反渗透膜去除超纯水系统中的尿素
在用于生产超纯水(UPW)的进料源中发现的各种物质中,尿素的去除具有挑战性,因为尿素是一种小分子量分子,在中性 pH 值条件下不易被氧化且不带电荷。脲酶存在于植物和细菌等多种生物体内,可催化尿素水解为二氧化碳和氨。本研究将脲酶固定在反渗透膜的聚酰胺层上,以去除 UPW 系统中的尿素。与原始膜相比,脲酶涂层反渗透膜对尿素的去除率高达 27.9%。尿素去除率的提高可归因于膜上脲酶涂层的物理和生物效应。首先,膜表面的尿素酶可以作为尿素通过的额外物理屏障。其次,尿素在通过涂有尿素酶的反渗透膜时会被酶水解。在典型的用于生产 UPW 的两道反渗透系统中,尿素酶涂层膜对尿素的去除率将提高两倍。特别是考虑到脲酶涂层的复合去除、反渗透膜的排斥以及其他处理工艺的附加反应,这种整体方法可以大大提高超临界水系统中的尿素去除效率。此外,只需在现有的反渗透膜上涂覆尿素酶,就能去除 UPW 系统中的尿素,而无需安装其他工艺。
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来源期刊
Water Research X
Water Research X Environmental Science-Water Science and Technology
CiteScore
12.30
自引率
1.30%
发文量
19
期刊介绍: Water Research X is a sister journal of Water Research, which follows a Gold Open Access model. It focuses on publishing concise, letter-style research papers, visionary perspectives and editorials, as well as mini-reviews on emerging topics. The Journal invites contributions from researchers worldwide on various aspects of the science and technology related to the human impact on the water cycle, water quality, and its global management.
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