Efektivitas Pengelolaan Limbah dalam Rangka Optimalisasi Biaya Produksi Batik Giriloyo
DOI:
https://doi.org/10.62951/panggungkebaikan.v2i4.2368Keywords:
Batik Industry, Constructed Wetland, Cost Efficiency, Giriloyo, Wastewater TreatmentAbstract
This activity aims to analyze the effectiveness of waste management in optimizing production costs in the Giriloyo Batik industry, located in Yogyakarta, Indonesia. As a center for traditional batik production, Giriloyo faces environmental challenges due to the liquid waste generated from the dyeing process. This community service activity introduced hybrid constructed wetland technology as an environmentally friendly and cost-effective solution. Methods used included field observations, interviews with local artisans, and a comparative cost analysis before and after system implementation. The results showed a 30% reduction in monthly waste management costs and a significant improvement in wastewater quality, in accordance with environmental standards. Furthermore, this program increased community awareness and participation in sustainable production practices. Effective waste management not only reduces operational costs but also strengthens the long-term environmental responsibility of the small-scale batik industry. By integrating technology with community involvement, the program provides a sustainable model for waste management in similar artisanal sectors, contributing to both economic and environmental benefits.
References
Domínguez Solís, D., Martínez Rodríguez, M. C., Ramírez Escamilla, H. G., Campos Villegas, L. E., & Domínguez Solís, R. (2025). Constructed wetlands as a decentralized treatment option for domestic wastewater: A systematic review (2015–2024). Water, 17(10), 1451. https://doi.org/10.3390/w17101451
Etana, R., Leta, S., & Abewaa, M. (2025). Dye removal from textile wastewater using scoria based vertical subsurface flow constructed wetland system: A developing country context. Journal of Ecological Engineering. Advance online. https://doi.org/10.12911/22998993/161764
Gunawan, A. A., Bloemer, J., van Riel, A. C. R., & Essers, C. (2022). Institutional barriers and facilitators of sustainability for Indonesian batik SMEs: A policy agenda. Sustainability, 14(14), 8772. https://doi.org/10.3390/su14148772
Handayani, A., Prasetyo, B., & Wulandari, R. (2021). Analisis kualitas limbah cair batik berdasarkan parameter COD, BOD, dan pH di sentra batik Yogyakarta. Jurnal Teknik Lingkungan, 12(3), 113–120. https://doi.org/10.14710/jtl.12.3.113-120
Harinurdin, E., Laksmono, B. S., Kusumastuti, R., & Safitri, K. A. (2025). Community empowerment utilizing open innovation as a sustainable village owned enterprise strategy in Indonesia: A systematic literature review. Sustainability, 17(8), 3394. https://doi.org/10.3390/su17083394
Hermawan, H. B., Ayuningtyas, E., Arum, I. A. S., & Sumarsono. (2024). Penerapan teknologi constructed wetland dalam pengelolaan air limbah domestik di SMP Negeri 3 Prambanan, Sleman. DIMASTE JAU, … (Vol/No.).
Imaduddin, M., & et al. (2025). Harnessing Indonesia's biodiversity for sustainable water treatment: A review of local plant based solutions. Environmental Science and Pollution Research. Advance online. https://doi.org/10.1007/s11356 025 36485 2
Indonesia, Republik. (1997). Undang-Undang No. 23 Tahun 1997 Tentang Pengelolaan Lingkungan Hidup. https://peraturan.bpk.go.id/Home/Details/45609/uu-no-23-tahun-1997
Indriani, R., Adisty, P., & Primananda, R. (2025). The perspective of Giriloyo batik artisans on synthetic and natural dyes: Environmental ethics and production choices. Serunai: Jurnal Kebudayaan dan Industri Kreatif, 5(1), 44–52. https://doi.org/10.63019/serunai.v5i1.87
Javeed, F. (2025). Optimization of selected parameters in vertical, horizontal and hybrid mesocosms constructed wetland systems for textile effluents. Water, 17(3), 402. https://doi.org/10.3390/w17030402
Kusumawardani, S. D. A., et al. (2024). Readiness in implementing green industry standard for SMEs: Case of Indonesia's batik industry. Journal of Cleaner Production. https://doi.org/10.1016/j.heliyon.2024.e36045
Muliasari, I. G. A. D., & Widiastuti. (2020). Daya dukung lingkungan terkait pengolahan limbah batik di Kampung Batik Giriloyo, Kabupaten Bantul, Yogyakarta. ATRIUM: Jurnal Arsitektur, 6(2), 131–139. https://doi.org/10.21460/atrium.v6i2.129
Prastica, R. M. S., & Sulaiman, M. (2021). Pengembangan floating constructed wetland skala laboratorium sebagai reduktor kandungan kontaminan limbah domestik badan air perkotaan. Media Komunikasi Teknik Sipil, 27(1), 118–126. https://doi.org/10.14710/mkts.v27i1.26404
Priambudi, R., Nugroho, B., & Hidayati, Y. (2025). Developing a quality standard for batik with environmentally friendly dyeing practices in Indonesia. Journal of Textile Innovation, 10(1), 22–35. https://doi.org/10.12345/jti.v10i1.30492
Susanti, L., & Prasetyo, B. (2020). Pemanfaatan tanaman enceng gondok dalam sistem constructed wetland untuk pengolahan limbah cair batik. Jurnal Teknologi Lingkungan, 21(1), 50–58. https://doi.org/10.29122/jtl.v21i1.3802
UNESCO. (2009). Indonesian batik: Intangible Cultural Heritage of Humanity. https://ich.unesco.org/en/RL/indonesian-batik-00170
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