Altitudinal zonationed moss as bioindicator for pollution /

Placed as the crown of the mountain, Moss forest or tropical montane cloud forest (TMCF) are one of Earth's most imperiled and neglected ecosystems. More than half of these forests are situated within Southeast Asia; those located in Malaysia are considered well studied in the region compared t...

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Bibliographic Details
Main Author: Ainaa Hanis binti Zuhairi (Author)
Format: Thesis
Language:English
Published: Kuala Lumpur : Kulliyyah of Architecture and Environmental Design, International Islamic University Malaysia, 2018
Subjects:
Online Access:Click here to view 1st 24 pages of the thesis. Members can view fulltext at the specified PCs in the library.
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Summary:Placed as the crown of the mountain, Moss forest or tropical montane cloud forest (TMCF) are one of Earth's most imperiled and neglected ecosystems. More than half of these forests are situated within Southeast Asia; those located in Malaysia are considered well studied in the region compared to others. Malaysia is known for its numerous mountains that are exceptionally rich in biodiversity and locally endemic species, but they are also threatened by human expanding activity such are, forestry, agriculture, infrastructure, and global warming. By critically assessing the current state of moist forests—focusing on their biological fingerprints and potentials for a long-term survival—and propose conservation strategies for agricultural, forestry, tourism, and policy sectors of the Biota content as well as the effect that human interference has on it using indigenous moss species as Bio indicators through Bio monitoring, to help conserve these endangered ecosystems. There is no wrong in hoping that decision makers around the region can use the review to evaluate and improve their national strategies related to cloud forest conservation.
Item Description:Abstracts in English and Arabic.
"A thesis submitted in fulfilment of the requirement for the degree of Master of Science (Built Environment)." --On title page.
Physical Description:xiv, 150 leaves : colour illustrations ; 30cm.
Bibliography:Includes bibliographical references (leaves 135-138).