Application of forward osmosis membrane technology in nutrient recovery and water reuse

In recent years, global fertilizer demand has been rising quickly and resource supply may be depleted by the end of the 21st century. Hence, a number of physicochemical and biological processes have been implemented to recover nutrients from wastewater and sludge; nevertheless, these processes consu...

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Những tác giả chính: Nguyễn, Thị Hậu, Nguyễn, Công Nguyên, Shiao-Shing Chen, Huu Hao Ngo, Xuan-Thanh Bui, Phuong-Thao Nguyen
Định dạng: Book part
Ngôn ngữ:English
Được phát hành: 2023
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Truy cập trực tuyến:https://scholar.dlu.edu.vn/handle/123456789/2287
https://www.sciencedirect.com/science/article/abs/pii/B9780443191800000018?via%3Dihub
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spelling oai:scholar.dlu.edu.vn:123456789-22872023-12-28T01:55:44Z Application of forward osmosis membrane technology in nutrient recovery and water reuse Nguyễn, Thị Hậu Nguyễn, Công Nguyên Shiao-Shing Chen, Huu Hao Ngo, Xuan-Thanh Bui, Phuong-Thao Nguyen Forward osmosis, Nutrient recovery, Water reuse, Draw solution, Membrane fouling In recent years, global fertilizer demand has been rising quickly and resource supply may be depleted by the end of the 21st century. Hence, a number of physicochemical and biological processes have been implemented to recover nutrients from wastewater and sludge; nevertheless, these processes consume more chemicals and energy, leading to the emission of greenhouse gases. Meanwhile, forward osmosis (FO)-based technology has been largely discovered to simultaneously recover water and enrich nutrients from wastewater with low membrane fouling and low energy consumption. In hybrid FO-based systems, the FO membrane is used to concentrate nutrients from wastewater while chemical precipitation is encouraged for recovering nutrients in the form of struvite or other membrane technologies used to separate a diluted draw solution. However, this technology still has some limitations, such as concentration polarization, membrane fouling in long-term FO operation, high reverse salt flux from the draw solution, which need to be handled before making it more practical. This book chapter focuses on the mechanism of the FO process, the key factors affecting the FO performance, the recent advanced hybrid FO-based system for nutrient recovery and water reuse, and future research directions. pp.493-508 Khoa Hóa học và Môi trường 6 Nguyễn Thị Hậu 2023-05-12T07:59:39Z 2023-05-12T07:59:39Z 2023-01 Book part Bài báo đăng trên tạp chí thuộc SCOPUS, bao gồm book chapter https://scholar.dlu.edu.vn/handle/123456789/2287 10.1016/B978-0-443-19180-0.00001-8 https://www.sciencedirect.com/science/article/abs/pii/B9780443191800000018?via%3Dihub en Elsevier - Current Developments in Biotechnology and Bioengineering
institution Thư viện Trường Đại học Đà Lạt
collection Thư viện số
language English
topic Forward osmosis, Nutrient recovery, Water reuse, Draw solution, Membrane fouling
spellingShingle Forward osmosis, Nutrient recovery, Water reuse, Draw solution, Membrane fouling
Nguyễn, Thị Hậu
Nguyễn, Công Nguyên
Shiao-Shing Chen, Huu Hao Ngo, Xuan-Thanh Bui, Phuong-Thao Nguyen
Application of forward osmosis membrane technology in nutrient recovery and water reuse
description In recent years, global fertilizer demand has been rising quickly and resource supply may be depleted by the end of the 21st century. Hence, a number of physicochemical and biological processes have been implemented to recover nutrients from wastewater and sludge; nevertheless, these processes consume more chemicals and energy, leading to the emission of greenhouse gases. Meanwhile, forward osmosis (FO)-based technology has been largely discovered to simultaneously recover water and enrich nutrients from wastewater with low membrane fouling and low energy consumption. In hybrid FO-based systems, the FO membrane is used to concentrate nutrients from wastewater while chemical precipitation is encouraged for recovering nutrients in the form of struvite or other membrane technologies used to separate a diluted draw solution. However, this technology still has some limitations, such as concentration polarization, membrane fouling in long-term FO operation, high reverse salt flux from the draw solution, which need to be handled before making it more practical. This book chapter focuses on the mechanism of the FO process, the key factors affecting the FO performance, the recent advanced hybrid FO-based system for nutrient recovery and water reuse, and future research directions.
format Book part
author Nguyễn, Thị Hậu
Nguyễn, Công Nguyên
Shiao-Shing Chen, Huu Hao Ngo, Xuan-Thanh Bui, Phuong-Thao Nguyen
author_facet Nguyễn, Thị Hậu
Nguyễn, Công Nguyên
Shiao-Shing Chen, Huu Hao Ngo, Xuan-Thanh Bui, Phuong-Thao Nguyen
author_sort Nguyễn, Thị Hậu
title Application of forward osmosis membrane technology in nutrient recovery and water reuse
title_short Application of forward osmosis membrane technology in nutrient recovery and water reuse
title_full Application of forward osmosis membrane technology in nutrient recovery and water reuse
title_fullStr Application of forward osmosis membrane technology in nutrient recovery and water reuse
title_full_unstemmed Application of forward osmosis membrane technology in nutrient recovery and water reuse
title_sort application of forward osmosis membrane technology in nutrient recovery and water reuse
publishDate 2023
url https://scholar.dlu.edu.vn/handle/123456789/2287
https://www.sciencedirect.com/science/article/abs/pii/B9780443191800000018?via%3Dihub
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