PENDAMPINGAN PENGOLAHAN LIMBAH CAIR ZAT WARNA ALAMI PADA BATIK ULUR WIJI KABUPATEN MOJOKERTO
Abstract
In Kemlagi District, Mojokerto Regency, a small and medium-sized batik enterprise, CV Ulur Wiji Muda Berdaya, has gained popularity among millennials due to its use of natural dyes that are environmentally friendly. The products have not only attracted domestic consumers but have also reached international markets. Despite this achievement, the enterprise continues to face a major challenge in managing batik dye wastewater, which has not received optimal treatment. To solve this issue, a community service program was implemented to provide technical assistance in wastewater treatment through training on filtration adsorption methods for the employees of CV Ulur Wiji. The filtration unit employed adsorption media consisting of foam filters, zeolite, activated carbon, coral stone, and Malang sand. The questionnaire results confirm that the partner has improved the application of wastewater treatment technology as a result of the program. The results of batik waste processing indicated an improvement in the waste quality, changing from a turbid color to a clearer appearance, with an initial pH of 6.3; after undergoing filtration-adsorption, the pH shifted to near neutral at 6.9. Furthermore, an additional outcome of this program is the successful development of an appropriate technology system for treating wastewater from batik dye using filtration–adsorption techniques.
References
Adeosun, A. T., Kasim, A. R. M., & Akolade, M. T. (2025). Modeling pollutant discharges in a channel: Water quality control and treatment using carbon nanotubes for filtration and adsorption. Journal of Water Process Engineering, 76, 108074. https://doi.org/https://doi.org/10.1016/j.jwpe.2025.108074
Arista, N. I. D., Budiastuti, M. T. S., Supriyono, Nurmalasari, A. I., Setyaningrum, D., & Manurung, I. R. (2024). Mycorrhizal symbiosis and natural dye waste organic fertilizer: Enhancing growth and yield in indigofera tinctoria. Journal of Earth Kingdom, 2(1), 14–35. https://doi.org/10.61511/jek.v2i1.2024.930
Ariyatun, A., Marwoto, P., Sudarmin, S., Wardani, S., & Saptono, S. (2022). Identification of Active Compounds of Tantrum Leaves (Indigofera tinctoria) as Natural Textile Dyes. Biosaintifika: Journal of Biology & Biology Education, 14(3), 435–443. https://doi.org/10.15294/biosaintifika.v14i3.39651
BPS. (2024). Kabupaten Mojokerto dalam Angka 2024.
Cordeiro, C. C., Medeiros, A. R., Fraga, G. N., Paschoal, S. M., Dragunski, D. C., & Fiorentin-Ferrari, L. D. (2025). Efficiency of poly(vinyl alcohol) and chitosan fibers produced by electrospinning in reactive dye removal by combining adsorption and filtration. International Journal of Biological Macromolecules, 322, 146404. https://doi.org/https://doi.org/10.1016/j.ijbiomac.2025.146404
Davoodbeygi, Y., Askari, M., Salehi, E., & Kheirieh, S. (2023). A review on hybrid membrane-adsorption systems for intensified water and wastewater treatment: Process configurations, separation targets, and materials applied. Journal of Environmental Management, 335, 117577. https://doi.org/https://doi.org/10.1016/j.jenvman.2023.117577
Imeldanita, A. C., Adrin, A., & Almulqu, A. A. (2023). Eksplorasi Potensi Hasil Hutan Bukan Kayu Tanaman Tarum ((Indigofera tinctoria L) Sebagai Pewarna Alami Kain Tenun Di Kabupaten Malaka, Provinsi Nusa Tenggara Timur. Paspalum: Jurnal Ilmiah Pertanian, 11(1), 172. https://doi.org/10.35138/paspalum.v11i1.557
Indah, M., & Utami, W. (2024). Pengolahan Limbah Zat Warna Batik di Perairan: Systematic Literatur Review Processing of Batik Dyestuff Waste in Waterways: Systematic Literatur Review. JSSIT: Jurnal Sains Dan Sains Terapan , 2(2), 26–33. https://doi.org/10.30631/jssit.v2i2.61
Kurnia, M., Suprapto, S., & Ni’mah, Y. L. (2024). Bio-adsorbent for Remazol Brilliant Blue R (RBBR) dye. South African Journal of Chemical Engineering, 47, 111–122. https://doi.org/https://doi.org/10.1016/j.sajce.2023.11.002
Nengsih, S., Nur Abdulmadjid, S., Mursal, M., & Jalil, Z. (2024). Photocatalytic performance of Fe3O4-TiO2 in the degradation of methylene blue dye: Optimizing the usability of natural iron sand. Materials Science for Energy Technologies, 7, 374–380. https://doi.org/https://doi.org/10.1016/j.mset.2024.06.001
Qomariyah, L., Kadir, A., Hirano, T., Tejamaya, M., Fauziyah, M., Putra, N. R., Sunarno, S. D. A. M., & Atmajaya, H. (2024). Sustainable removal of pigment dye from traditional batik textile wastewater using ZnO photocatalysis. South African Journal of Chemical Engineering, 50, 223–234. https://doi.org/https://doi.org/10.1016/j.sajce.2024.08.010
Raj, A., Yadav, A., Rawat, A. P., Singh, A. K., Kumar, S., Pandey, A. K., Sirohi, R., & Pandey, A. (2021). Kinetic and thermodynamic investigations of sewage sludge biochar in removal of Remazol Brilliant Blue R dye from aqueous solution and evaluation of residual dyes cytotoxicity. Environmental Technology & Innovation, 23, 101556. https://doi.org/https://doi.org/10.1016/j.eti.2021.101556
Seran, A. G. R., Kamu, V. S., Katja, D. G., Hutagalung, F., & Bonaventura, R. (2025). Uji Kandungan Total Fenolik, Flavonoid, Tanin, dan Aktivitas Antioksidan dari Ekstrak dan Fraksi Daun Macleania rupestris. CHEMISTRY PROGRESS, 18(2), 67–75. https://doi.org/10.35799/cp.18.2.2025.63803
Susanto, S., & Prasdiantika, R. (2024). Adsorption of Chromium (VI) with Silica Coated on Iron Sand Magnetic Material Modified with Propyldiethylenetriamine. Jurnal Teknik Kimia Dan Lingkungan, 8(2), 70–81. https://doi.org/10.33795/jtkl.v8i2.5478
Wei, T., Zhu, Y., Duan, G., Han, J., Han, X., Zhang, C., He, S., Mao, H., Ma, C., & Jiang, S. (2025). Recent advances in nanocellulose-derived materials for dyes adsorption: A review. International Journal of Biological Macromolecules, 306, 141770. https://doi.org/https://doi.org/10.1016/j.ijbiomac.2025.141770
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