Atikah Khoiriyah Azzam
Department of Environmental Science, Faculty of Mathematics and Natural Sciences, Universitas Sebelas Maret. Jl. Ir. Sutami 36A, Surakarta 57126, Central Java, Indonesia

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Efficient Removal of Indigosol Blue Using Activated Carbon from Kepok Banana (Musa paradisiaca x balbisiana) Peels Furqon Darma Nurcahyo; Husna’ Putri Nur ‘Azizah; Atikah Khoiriyah Azzam; Mohammad Al Abi Aji Setiawan; Caesario Widya Atmaja; Siti Rachmawati
LIMNOTEK Perairan Darat Tropis di Indonesia Vol. 31 No. 1 (2025)
Publisher : BRIN Publishing

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55981/limnotek.2025.8823

Abstract

Indonesia's textile industry has experienced significant growth, yet it faces environmental challenges from dye waste, such as Indigosol Blue, which is classified as hazardous and toxic, requiring special treatment. The use of activated carbon in the adsorption process has proven effective, and the Kepok banana (Musa paradisiaca x balbisiana) peel, with its high cellulose content, is a potential raw material for activated carbon. This research aims to produce adsorbents from Kepok banana peel, activated by HCl, to adsorb Indigosol Blue using an adsorption column. The production of activated carbon was conducted through carbonization and activation processes. HCl with a concentration of 37% was used as the activator, where the soaking process lasted for 24 hours, and the activation temperature was set at 90°C for 120 minutes. The activated carbon was characterized using UV-Vis Spectrophotometry, Scanning Electron Microscopy (SEM) and Fourier Transform Infrared (FTIR).  Based on the results of SEM analysis that illustrates the differences in topography and morphology of kepok banana peel powder before and after activation using various concentrations of activating agents. The results of FTIR analysis, the presence of O-H and C-O bonds indicates that activated carbon derived from kepok banana peel has more polar characteristics. If the initial colorant is increased resulting in higher adsorption efficiency. The results of this study indicated that the optimal wavelength for the Indigosol Blue dye solution, was 624 nm. The best adsorption efficiency was 88.5%, and the maximum adsorption capacity of 0.24 mg/g was obtained with an adsorbent concentration of 30 ppm.
Climate-associated shifts in potential habitat of the vulnerable tree Eusideroxylon zwageri in Southeast Asia using an exploratory MaxEnt assessment ARDITA AYU WULANDARI; AULIA TSALATSA AGUSTINA; AZKA DITA AULIA; BIAN RAFI SAFARAZ; ARUM NUR MUKARROMAH; ASFI DZIHNI; ATIKAH KHOIRIYAH AZZAM; AULIA SYAH HAFIFFAH; MUHAMMAD NUR SULTON; AHMAD DWI SETYAWAN
Nusantara Bioscience Vol. 18 No. 1 (2026)
Publisher : Smujo International

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/nusbiosci/n180107

Abstract

Abstract. Wulandari AA, Agustina AT, Aulia AD, Safaraz BR, Mukarromah AN, Dzihni A, Azzam AK, Hafiffah AS, Sulton MN, Setyawan AD. 2026. Climate-associated shifts in potential habitat of the vulnerable tree Eusideroxylon zwageri in Southeast Asia using an exploratory MaxEnt assessment. Nusantara Bioscience 18 (1): n180107. https://doi.org/10.13057/nusbiosci/n180107. Eusideroxylon zwageri (Bornean ironwood) is a slow-regenerating, high-value rainforest tree threatened by timber extraction, habitat conversion, and climate change. We examined its current and future potential habitat in Southeast Asia using an archived MaxEnt workflow based on 57 GBIF occurrence records and 18 climatic, topographic, edaphic, vegetation, radiation, and anthropogenic predictors. Baseline climate was represented by WorldClim variables, whereas projections used HadGEM2-ES conditions for 2030, 2050, and 2080 under RCP 2.6, 4.5, 6.0, and 8.5. The baseline model had an AUC of 0.91. Precipitation of the driest quarter contributed 57.40%, followed by human population density (9.85%), minimum temperature of the coldest month (9.43%), and annual temperature range (7.78%). Under baseline conditions, high-suitability habitat occupied 0.22×106 km2 (5.16% of the modeled region), principally in Borneo, Sumatra, Brunei Darussalam, and Peninsular Malaysia. Across future scenarios, total modeled area remained approximately constant (4.25-4.28×106 km2), but the distribution among suitability classes changed; high suitability ranged from 4.94% to 6.82%. Within Borneo, high suitability ranged from 22.35% to 38.06%, and the 2080 suitability centroid shifted 7.81-66.54 km depending on the RCP. These outputs indicate redistribution of modeled environmental suitability, not demonstrated adaptation, occupancy, or population persistence. The maps are therefore appropriate for regional screening but require confirmation through bias-corrected occurrence data, spatially independent validation, multiple climate models, model-tuning and extrapolation diagnostics, dynamic land-cover scenarios, and field assessment before site-level conservation decisions.