Claim Missing Document
Check
Articles

Eco-Industrial Parks in the Palm Oil Industry: A Systematic Literature Review on Circular Economy and Sustainability Practices Ivander Adonis Amei; Arifah Arsanti; Ivana Laura Br Sinaga; Leon Gilchrist Paraya; Temmy Wikaningrum; Helmi Maulana
JACEE (Journal of Advanced Civil and Environmental Engineering) Vol 8, No 2 (2025): October
Publisher : Universitas Islam Sultan Agung

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30659/jacee.8.2.55-66

Abstract

As the world's largest palm oil producer, Indonesia has not only a significant economic opportunity but a huge environmental responsibility. Although the palm oil sector constitutes a major sector earning foreign income for the country and providing employment, it generates massive biomass waste. Incorporation of Circular Economy (CE) strategies, such as recover, reuse, recycle, and by-product valorization, provides a potential vehicle to help turn these wastes into renewable energy, organic manures, building materials, and biofuels, with both environmental conservation and long-term economic viability across the supply chain. This study utilizes a Systematic Literature Review (SLR) approach using PRISMA guidelines to synthesize 39 scientific articles from 2020-2025 discussing CE and Eco-Industrial Parks (EIPs) in the palm oil industry in Indonesia. A novelty is the combination of bibliometric mapping with thematic analysis to provide multidimensional synthesis, which discovers three dominant focus areas: (1) Biomass Utilization, (2) Circular Economy Applications, and (3) EIP Conceptualization. CE practices in these dimensions are broadly classified in Table 1 as energy recovery (e.g., biogas from POME), material reuse (e.g., composting EFB, application of POFA in construction), and process optimization (e.g., value chain integration and multi-stakeholder collaboration under EIPs). This study concludes that the structured adoption of CE principles through EIPs can significantly enhance environmental and economic outcomes in Indonesia’s palm oil industry. Future research should focus on quantitative CE indicators and the development of localized EIP models tailored to regional contexts.
The Content Of Heavy Metal In Turmeric (Curcuma Domestica Val.) In The Volcanic Rocks Oligocene-Miocene Volcano, Biting Wonogiri, Central Java, Indonesia Yudiantoro, Dwi Fitri; Soesilo, Joko; Basuki Rahmad; Haty, Intan Paramita; Radityo Prakoso; Muhammad Nurcholis; Mirzam Abdurrachman; Wikaningrum, Temmy
Journal of Geoscience, Engineering, Environment, and Technology Vol. 9 No. 3 (2024): JGEET Vol 09 No 03 : September (2024)
Publisher : UIR PRESS

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.25299/jgeet.2024.9.3.14896

Abstract

The Biting Wonogiri area is an area composed of Oligocene-Miocene volcanic deposits and volcanic deposits from Lawu Volcano. The rocks in this area consist of pyroclastic rocks, volcanic breccia, and dacite intrusions. Residents in this area more commonly grow herbal plants such as turmeric. Turmeric plants are mostly planted on old volcanic rocks, namely the Oligocene-Miocene age. By studying the planting patterns of residents, an analysis was carried out regarding the heavy metal chemical elements contained in turmeric. The research methodology was carried out using geological mapping to determine the distribution of the rocks that make up the research area and AAS analysis (Atomic Absorption Spectroscopy). This AAS method is used to determine heavy metal content. The heavy metal elements analyzed in turmeric were Hg, Pb, As, Fe, Al, and Mn. From the analysis results it was found that the heavy metal elements Hg, Pb, and As had very low levels, namely around 0.005-0.400 mg/Kg. Meanwhile, the elements Al, Fe, and Mg have high contents. Turmeric grown on dacite and volcanic breccia has higher Al (622.3-1362.76 mg/Kg) and Fe (271.32-806.27 mg/Kg) content compared to turmeric planted on sedimentary rock. Meanwhile, the metal element Mn varies around 6.85-122.01 mg/Kg. By knowing the content of these Western metal elements, it is hoped that turmeric, which contains heavy metal elements, can be used as a superior herbal herbal medicine. These metal elements, which are very important nutrients, come from old volcanic rocks.
Industrial Ecology Perspectives on Plastic Waste Valorization: A Systematic Literature Review of Industrial Symbiosis, Material Flow, and Circular Manufacturing Rivasha Nirmala Viandar Putri; Melani Fera Ayulia; Monica Rumondang Panjaitan; Temmy Wikaningrum
Jurnal Serambi Engineering Vol. 11 No. 3 (2026): Juli 2026
Publisher : Faculty of Engineering, Universitas Serambi Mekkah

Show Abstract | Download Original | Original Source | Check in Google Scholar

Abstract

The global plastic waste crisis necessitates a paradigm shift from linear management approaches to systemic industrial transformation. This Systematic Literature Review (SLR) explores plastic waste valorization through the lens of Industrial Ecology (IE), moving beyond conventional recycling technologies to analyze broader systems-level changes. Following the PRISMA 2020 guidelines, we synthesized over 100 peer-reviewed articles published between 2022 and 2026. The review focuses on four pillars of IE: Industrial Symbiosis (IS), Material Flow Analysis (MFA), Industrial Metabolism, and Circular Manufacturing. Our findings reveal that while technical valorization pathways (e.g., PET upcycling to high-value chemicals) are advancing rapidly, their systemic integration remains fragmented across industrial sectors and geographic boundaries. MFA emerges as the primary diagnostic tool for identifying resource leakage points throughout the plastic life cycle, while IS networks facilitate multi-actor collaboration to close material loops through coordinated waste-to-resource exchanges. The results demonstrate that IE-driven strategies can reduce virgin polymer demand and greenhouse gas emissions by up to 40−88% compared to traditional disposal methods such as landfilling and incineration. However, significant research gaps remain in the standardization of resource efficiency indicators, the integration of diverse "R-strategies" into national manufacturing policies, and the real-time monitoring of dynamic material flows.
Co-Authors , Nati Abdurrachman, Mirzam Afina Maulida Aliyah Oktaviani Annisa Rahma Anindita Arifah Arsanti Asrining Ghina Maulidia Aura Ryumandhina Aninditya Awidi, Saraswati Sinti Bambang Pramudya Noorachmat, Bambang Pramudya BASUKI RAHMAD Deniela Flora Mariyne Wongso Diharjo Dian Saputri Dwi Fitri Yudiantoro Efli Pratamadina Efli Pratamadina El Dabo, Mia Erliza Noor Filson Maratur Sidjabat Gita Cemara Helen Steavy Pakpahan Helmi Maulana Ignatia Marlin Pongoh Intan Paramita Haty Isnani, Shanty Ivana Laura Br Sinaga Ivander Adonis Amei Janah, Solihatun Jannie Jannie Jasmine Wardiningsih Joseph Natanael Juan Feron Ndruru Laily Thoatil Hanan Leon Gilchrist Paraya M. Arwin Renardi Widyoko M. Galang Alvasa Marques, Madalena G.J.V. Maryani Paramita Astuti Maryani Paramita Astuti Maulida, Afina Maulidia, Asrining Ghina Mayabella Puspita Nugraha Melani Fera Ayulia Mia El Dabo Monica Rumondang Panjaitan Muhammad Haekal Bahari Muhammad Nurcholis Muhammad Yeza Baihaqi Nadhifah, Dinda Fairuz Najwa Maulida Ni Iluh Permata Ariase Niken Adelia Agustin Oktaviani, Aliyah Pakpahan, Helen Steavy Paramerta, Ni Made Amanda Putri Paramerta Radityo Prakoso Reni Dwi Septiani Resda, Cicilya Resda, Cicilya Dolfiana Rijal Hakiki Rijal Hakiki Rivasha Nirmala Viandar Putri Saefurrahman, Farhan Sede, Johanes Surya Utama Soesilo, Joko Stepalin Yunipahothon Stephanie, Inna Tafaib, Mariana Grace Ustang Viena, Winda Carla Wahyu Sekti Retno Permatasari Wilbert Wijaya Yandes Panelin Yaniza Dela Daza Yunita Ismail, Yunita Zainur Risky Ardiansyah