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Seagrass Restoration Review: Spatial Analysis of Potential Habitats, Innovative Restoration Methods, and Predictive Modeling for Monitoring Tika, Nurhasanah; Fauziah, Yasmin; Nurfata, Azzahra Shinta Bilqis; Koesratmoko, Eko; Patria, Mufti Petala; Silaban, Denny Riama
Jurnal Ilmu dan Teknologi Kelautan Tropis Vol. 17 No. 2 (2025): Jurnal Ilmu dan Teknologi Kelautan Tropis
Publisher : Department of Marine Science and Technology, Faculty of Fisheries and Marine Science, IPB University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29244/jitkt.v17i2.64544

Abstract

  Seagrass ecosystems are vital for maintaining marine ecological balance, supporting the blue carbon cycle, offering habitat for marine organisms, and safeguarding coastal areas against erosion. Nevertheless, seagrass ecosystems worldwide are declining substantially due to human activities and climate change. This trend is also evident in Indonesia, where approximately 7% of seagrass coverage is lost annually. This research examines existing literature on seagrass restoration by focusing on three key approaches: spatial assessment of suitable habitats, advancements in physical restoration techniques, and the creation of predictive models for evaluating restoration outcomes. The goal is to offer comprehensive insights into the challenges and prospects for improving management and establishing more effective and sustainable restoration strategies in coastal environments. A Systematic Literature Review (SLR) combined with bibliometric analysis was conducted on 177 publications from the Scopus database spanning 2019 to 2024 to identify research trends, technological advancements, and existing challenges in seagrass restoration. The research emphasizes the necessity of a holistic approach to seagrass restoration, incorporating spatial analysis, developing flexible restoration techniques, and implementing predictive modeling and statistical assessments to enhance long-term planning and monitoring efforts. The case study in Jepara demonstrates the effectiveness of participatory approaches at the local scale, despite limitations in technology and long-term monitoring. Integrating spatial and digital technologies, strengthening local capacity, international collaboration, and multidisciplinary integration are key to improving the effectiveness and sustainability of seagrass restoration, while strengthening its contribution to coastal resilience and climate change mitigation.
ANALISIS HUBUNGAN ANTARA ZONA IKLIM LOKAL DAN SUHU PERMUKAAN LAHAN DI KOTA MAKASSAR Tika, Nurhasanah; Wibowo, Adi
Jurnal Perencanaan dan Pengembangan Kebijakan Vol. 5 No. 3 (2025): Desember 2025
Publisher : Lembaga Penelitian dan Pengabdian kepada Masyarakat (LPPM) ITERA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35472/jppk.v5i3.2224

Abstract

The rapid expansion of built-up areas in Makassar City has led to an increase in Land Surface Temperature (LST) and intensified the Urban Heat Island (UHI) phenomenon. This study aims to analyze the relationship between Local Climate Zones (LCZ) and surface temperature distribution across three districts: Tallo, Panakkukang, and Manggala. The methods involved rule-based LCZ classification using Sentinel-2 imagery and high-resolution (10-meter) LST prediction through a Random Forest model based on Landsat 8 and Sentinel-2 data, processed in Google Earth Engine. The results indicate that built-up zones such as compact low-rise and sparsely built areas exhibit significantly higher surface temperatures compared to vegetated and water zones. These findings confirm that the spatial distribution of LCZs strongly influences urban thermal variation and highlight the importance of climate-responsive urban planning through increased green spaces and water body preservation to mitigate localized heating in Makassar City.