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Biochar, a potential hydroponic growth substrate, enhances the nutritional status and growth of leafy vegetables

Authors
Awad, Yasser MahmoudLee, Sung-EunAhmed, Mohamed Bedair M.Ngoc Thang VuFarooq, MuhammadKim, Il SeopKim, Hyuck SooVithanage, MeththikaUsman, Adel Rabie A.Al-Wabel, MohammadMeers, ErikKwon, Eilhann E.Ok, Yong Sik
Issue Date
Jul-2017
Publisher
ELSEVIER SCI LTD
Keywords
Black carbon; Crop production; Hydroponics substrate; Microalgae removal; Perlite
Citation
JOURNAL OF CLEANER PRODUCTION, v.156, pp.581 - 588
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF CLEANER PRODUCTION
Volume
156
Start Page
581
End Page
588
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/191524
DOI
10.1016/j.jclepro.2017.04.070
ISSN
0959-6526
Abstract
A hydroponics system developed using a nutrient film technique was used to evaluate the effectiveness of rice husk biochar (RB) alone or in combination with perlite (PL) as substrates for increasing the growth of leafy vegetables compared with that of PL. Seedlings of cabbage, dill, mallow, red lettuce, and tatsoi were grown hydroponically in PL, RB, and PL + RB (1:1 ratio of PI, to RB, v/v) substrates for a 30-d under optimal environmental conditions in a greenhouse. Shoot length and fresh/dry masses of cabbage, dill, and red lettuce plants grown in RB substrate were decreased by 49% on average compared to those plants grown in PI, substrate. In contrast, PL + RB substrate led to approximately 2-fold increases in shoot length, number of leaves, and fresh/dry masses of leafy vegetable plants compared with those grown in PL substrate. Foliar nutritional composition (Ca, Mg, K, Na, Mn, Fe, and Zn) and nitrogen status (SPAD index) of plants grown in PL + RB and PL substrates suggested the presence of optimal growth conditions for ensuring optimum yield with high quality. In addition, RB substrate contributed to respective increases of 1.2-3.5-fold in leaf K, Mg, Mn, and Zn contents in most vegetable plants compared with those grown in PL substrate. The RB alone or in combination with PL substrates decreased algal growth in the nutrient solutions as confirmed by scanning electron micrographs of microalgae on the RB surface. The results also indicated that use of PL + RB hydroponic substrate could be an alternative and effective technology for the better management of unwanted algal growth in nutrient solutions and high production of leafy vegetables.
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Kwon, Eilhann E.
COLLEGE OF ENGINEERING (DEPARTMENT OF EARTH RESOURCES AND ENVIRONMENTAL ENGINEERING)
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