Phytotoxicity of leachate from closed sanitary landfill on Mung Bean Seed (Vigna radiata) / Shantakumari Rajan ... [et al.]

Decomposing waste at landfills will produce a highly polluted liquid called leachate which can pose a great risk to the environment and potentially be the source of soil, groundwater and water pollution. Therefore, in order to prevent the continual toxicity of landfill leachate, toxicity assessment...

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Main Authors: Zulkepli, Mohamad Hilmi Aizad, Mohd Shahid, Nadiatul Syima, Ishak, Ahmad Razali, Shafie, Farah Ayuni, Mohd Yatim, Siti Rohana, Rajan, Shantakumari
Format: Article
Language:English
Published: Faculty of Health Sciences, Universiti Teknologi MARA 2019
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Online Access:https://ir.uitm.edu.my/id/eprint/54753/1/54753.pdf
https://ir.uitm.edu.my/id/eprint/54753/
http://healthscopefsk.com/
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Institution: Universiti Teknologi Mara
Language: English
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spelling my.uitm.ir.547532021-12-30T01:51:35Z https://ir.uitm.edu.my/id/eprint/54753/ Phytotoxicity of leachate from closed sanitary landfill on Mung Bean Seed (Vigna radiata) / Shantakumari Rajan ... [et al.] Zulkepli, Mohamad Hilmi Aizad Mohd Shahid, Nadiatul Syima Ishak, Ahmad Razali Shafie, Farah Ayuni Mohd Yatim, Siti Rohana Rajan, Shantakumari Seed growing. Seed farms Field crops Sanitary landfills Decomposing waste at landfills will produce a highly polluted liquid called leachate which can pose a great risk to the environment and potentially be the source of soil, groundwater and water pollution. Therefore, in order to prevent the continual toxicity of landfill leachate, toxicity assessment of potential impact of leachate towards plants is a legal necessity in some nations. In this study, leachate was characterized in addition to phytotoxicity assessment using Vigna radiata seeds as an indicator. The test concentration of leachate used were 0% (control group) 3%, 5%, 10%, 25%, 50%, 75% and 100%. Seed germination and root elongation were measured and calculated after seven days exposure. All parameters were found to be within the standards limits after treatment however concentrations of zinc, iron, ammoniacal nitrogen and cyanide were observed to increase after the leachate treatment process. Germination rate, average root length and relative growth rate were observed to decrease with the increase in leachate concentration although all parameters measured were within standard limits. Faculty of Health Sciences, Universiti Teknologi MARA 2019-06 Article PeerReviewed text en https://ir.uitm.edu.my/id/eprint/54753/1/54753.pdf ID54753 Zulkepli, Mohamad Hilmi Aizad and Mohd Shahid, Nadiatul Syima and Ishak, Ahmad Razali and Shafie, Farah Ayuni and Mohd Yatim, Siti Rohana and Rajan, Shantakumari (2019) Phytotoxicity of leachate from closed sanitary landfill on Mung Bean Seed (Vigna radiata) / Shantakumari Rajan ... [et al.]. Health Scope, 1. pp. 189-191. ISSN 2735-0649 http://healthscopefsk.com/
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Seed growing. Seed farms
Field crops
Sanitary landfills
spellingShingle Seed growing. Seed farms
Field crops
Sanitary landfills
Zulkepli, Mohamad Hilmi Aizad
Mohd Shahid, Nadiatul Syima
Ishak, Ahmad Razali
Shafie, Farah Ayuni
Mohd Yatim, Siti Rohana
Rajan, Shantakumari
Phytotoxicity of leachate from closed sanitary landfill on Mung Bean Seed (Vigna radiata) / Shantakumari Rajan ... [et al.]
description Decomposing waste at landfills will produce a highly polluted liquid called leachate which can pose a great risk to the environment and potentially be the source of soil, groundwater and water pollution. Therefore, in order to prevent the continual toxicity of landfill leachate, toxicity assessment of potential impact of leachate towards plants is a legal necessity in some nations. In this study, leachate was characterized in addition to phytotoxicity assessment using Vigna radiata seeds as an indicator. The test concentration of leachate used were 0% (control group) 3%, 5%, 10%, 25%, 50%, 75% and 100%. Seed germination and root elongation were measured and calculated after seven days exposure. All parameters were found to be within the standards limits after treatment however concentrations of zinc, iron, ammoniacal nitrogen and cyanide were observed to increase after the leachate treatment process. Germination rate, average root length and relative growth rate were observed to decrease with the increase in leachate concentration although all parameters measured were within standard limits.
format Article
author Zulkepli, Mohamad Hilmi Aizad
Mohd Shahid, Nadiatul Syima
Ishak, Ahmad Razali
Shafie, Farah Ayuni
Mohd Yatim, Siti Rohana
Rajan, Shantakumari
author_facet Zulkepli, Mohamad Hilmi Aizad
Mohd Shahid, Nadiatul Syima
Ishak, Ahmad Razali
Shafie, Farah Ayuni
Mohd Yatim, Siti Rohana
Rajan, Shantakumari
author_sort Zulkepli, Mohamad Hilmi Aizad
title Phytotoxicity of leachate from closed sanitary landfill on Mung Bean Seed (Vigna radiata) / Shantakumari Rajan ... [et al.]
title_short Phytotoxicity of leachate from closed sanitary landfill on Mung Bean Seed (Vigna radiata) / Shantakumari Rajan ... [et al.]
title_full Phytotoxicity of leachate from closed sanitary landfill on Mung Bean Seed (Vigna radiata) / Shantakumari Rajan ... [et al.]
title_fullStr Phytotoxicity of leachate from closed sanitary landfill on Mung Bean Seed (Vigna radiata) / Shantakumari Rajan ... [et al.]
title_full_unstemmed Phytotoxicity of leachate from closed sanitary landfill on Mung Bean Seed (Vigna radiata) / Shantakumari Rajan ... [et al.]
title_sort phytotoxicity of leachate from closed sanitary landfill on mung bean seed (vigna radiata) / shantakumari rajan ... [et al.]
publisher Faculty of Health Sciences, Universiti Teknologi MARA
publishDate 2019
url https://ir.uitm.edu.my/id/eprint/54753/1/54753.pdf
https://ir.uitm.edu.my/id/eprint/54753/
http://healthscopefsk.com/
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