Water hyacinth as a green and sustainable material for carbon aerogel electrodes utilized in membrane capacitive deionization

Author:

Nguyen Ngan Tuan123,Duong Thu Thuy T.12,Phan Thuy Van T.12,Truong Cong Chien4,Nguyen Van Vien12,Tran Thanh Nhut12,Nguyen Thanh Tung3,Anh Tuan Huynh5,Hoang Sy Minh Tuan5,Ngo Hoang Long3ORCID,Chung Nguyen Thi Kim5

Affiliation:

1. Faculty of Chemistry University of Science Ho Chi Minh City Vietnam

2. Vietnam National University Ho Chi Minh City Vietnam

3. VKTech Research Center NTT Hi‐Tech Institute Nguyen Tat Thanh University Ho Chi Minh City Vietnam

4. Department of Chemical Engineering Hanyang University Seoul Republic of Korea

5. Thu Dau Mot University Thu Dau Mot Vietnam

Abstract

AbstractWater hyacinth is a substantial and quick‐growing plant that can strongly invade and negatively affect the aquatic ecosystem, causing many problems to the water environment by consuming nutrients and oxygen from surface water. However, the hierarchical porous carbon derived from water hyacinth can be employed for the removal of oil spills, heavy metals, or wastewater nutrients. Recently, water‐hyacinth‐derived carbon aerogel has been utilized as electrode for the desalination of brackish water using membrane capacitive deionization (MCDI) technology. In this research, lignocellulose aerogels were synthesized from water hyacinth, which were then pyrolyzed to obtain carbon aerogel and then treated with KOH to acquire activated carbon aerogel, with the corresponding surface area of 51 and 100 m2 g−1. The desalination capacity of the MCDI device was also evaluated using a 200 ppm NaCl feed water solution with an applied potential of 1.2 V. A high salt adsorption capacity value of 14.69 mg g−1 was achieved after 3000 s. These results will lead a new research area of biomass and bio‐waste conversion to fabricate CDI‐utilized carbon aerogel electrodes.

Publisher

Wiley

Subject

Pollution,Water Science and Technology,Environmental Chemistry

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