cover
Contact Name
Gatot Prayoga
Contact Email
gatotprayoga@bkpsl.org
Phone
-
Journal Mail Official
jurnalbkpsl@gmail.com
Editorial Address
Secretariat of Jurnal Pengelolaan Lingkungan Berkelanjutan (Journal of Environmental Sustainability Management), Environmental Research Center (ERC-IPB) Building, Floor 4, IPB Dramaga Campus, Bogor, 16680 West Java, Indonesia
Location
Kota bogor,
Jawa barat
INDONESIA
(Journal of Environmental Sustainability Management)
Core Subject : Science, Social,
The Journal of Environmental Sustainability Management (JPLB) published manuscripts/articles which are original work or research in the field of environmental management in a broad sense encompassing physical, chemical, biological, socio-economic, socio-cultural, community health, environmental health, and law.
Articles 163 Documents
Analisis kualitas perairan Sungai Kampili, Kabupaten Gowa, Sulawesi Selatan menggunakan metode biotilik Wafiq Azizah; Devi Armita; Andi Hernawati
Jurnal Pengelolaan Lingkungan Berkelanjutan (Journal of Environmental Sustainability Management) JPLB, Vol 10, No 2 (2026)
Publisher : Badan Kerjasama Pusat Studi Lingkungan (BKPSL) se-Indonesia bekerjasama dengan Pusat Penelitian Lingkungan Hidup IPB (PPLH-IPB)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36813/jplb.10.2.142-156

Abstract

River ecosystem quality can be assessed through macroinvertebrate communities, as different taxa have different levels of sensitivity to pollution. The Kampili River in Gowa Regency is under anthropogenic pressure from surrounding domestic and agricultural activities. This study aimed to evaluate the water quality of the Kampili River based on macroinvertebrate composition and abundance using the Biotilik Index. The study was conducted in February 2024, with macroinvertebrate samples collected along the river. The organisms were identified to the family level and analyzed based on abundance percentages and the Biotilik Index (X/N). Hydropsychidae was the most abundant family, followed by Mesovellidae and Ephemerellidae. Ephemeroptera, Plecoptera, and Trichoptera (EPT) accounted for 53.19% of the total abundance, indicating relatively good ecological conditions. The Biotilik Index value of 3.11 indicated light pollution, with 47 individuals recorded. These results suggest early changes in ecological conditions associated with anthropogenic pressure. Regular water quality monitoring, waste management, environmentally friendly agricultural practices, and riparian vegetation protection are needed to maintain the condition of the Kampili River ecosystem.
Peningkatan kualitas RTH taman perumahan Puri Way Halim berbasis indeks hijau biru Indonesia Muhammad Saddam Ali; Ina Winiastuti Hutriani; Zulvita Amanda; Annisa Tri Andina; Bagas Arianto; Cindy Romauly Elysabeth Manurung; Muhammad Arya Wibowo
Jurnal Pengelolaan Lingkungan Berkelanjutan (Journal of Environmental Sustainability Management) JPLB, Vol 10, No 2 (2026)
Publisher : Badan Kerjasama Pusat Studi Lingkungan (BKPSL) se-Indonesia bekerjasama dengan Pusat Penelitian Lingkungan Hidup IPB (PPLH-IPB)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36813/jplb.10.2.225-239

Abstract

The paradigm of Green Open Space (GOS) has evolved to integrate green, non-green, and blue spaces. However, residential areas in Bandar Lampung City, which possess the largest GOS portion, face low quality and are flood vulnerable. This study aims to provide design recommendations for GOS development in the Way Halim Permai Residential Field based on the Indonesian Green-Blue Index (IHBI) to improve environmental quality and flood mitigation, as well as to determine the design elements necessary to achieve a high IHBI score. The research method employed an IHBI calculation simulation referring to the Minister of ATR/BPN Regulation No. 14 of 2022, comparing the existing conditions with an integrated proposed design. The results show that applying the IHBI as a design framework is highly effective. The effective GOS area increased 4.19-fold, from 2,468.89 m² (equivalent to IHBI 1) to 10,364.64 m² (equivalent to IHBI 4.19). The main design elements required are: (1) superior large-tree vegetation; (2) blue infrastructure (bioswales, rain gardens, and retention ponds); and (3) porous materials (porous paving and grass blocks). Public GOS design in flood-prone residential areas must integrate these three elements, as they contribute most to the IHBI score while supporting green and blue ecological functions.
Potensi stok dan nilai ekonomi karbon ekosistem lamun di Desa Tanjung Sungkai, Kabupaten Kotabaru Aprizal Junaidi; Gatot Yulianto; Niken Tunjung Murti Pratiwi; Novi Susetyo Adi
Jurnal Pengelolaan Lingkungan Berkelanjutan (Journal of Environmental Sustainability Management) JPLB, Vol 10, No 2 (2026)
Publisher : Badan Kerjasama Pusat Studi Lingkungan (BKPSL) se-Indonesia bekerjasama dengan Pusat Penelitian Lingkungan Hidup IPB (PPLH-IPB)

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36813/jplb.10.2.123-141

Abstract

Seagrass ecosystems are blue carbon ecosystems that play a crucial role in coastal carbon storage. However, they are undergoing a global decline in terms of area and quality. The village of Tanjung Sungkai in Kotabaru Regency, South Kalimantan, has significant seagrass potential and is included in the indicative location of the KSNT Blue Carbon Reserve. However, scientific information regarding the total carbon storage and economic value of carbon in this area is limited. Therefore,this study aimed to evaluate the condition of the seagrass ecosystem based on seagrass cover percentage, estimate carbon stock potential and assess the economic value of carbon to support sustainable coastal management. The results showed that the average seagrass cover was 33.05 ± 20.36% (moderate category), with four types of seagrass identified: Enhalus acoroides, Thalassia hemprichii, Syringodium isoetifolium and Halophila ovalis. The community structure was dominated by H. ovalis (59%), followed by S. isoetifolium (36%). The total carbon stock reached 2,951.278 tons and the economic value of seagrass carbon was estimated at IDR 17.82 billion, while ecosystem degradation per hectare had the potential to cause losses of up to IDR 660 million. The Adaptive Management approach is considered relevant to support sustainable seagrass ecosystem management.