The Study of Tuff Breccia for Batik Wasterwater Treatment Media in Bayat, Klaten District, Central Java

  • Wawan Budianta Universitas Gadjah Mada
  • Johan Syafri Mahathir Ahmad Universitas Gadjah Mada
  • I Wayan Warmada Universitas Gadjah Mada
Keywords: batik wastewater, treatment, tuff breccia

Abstract

Batik wastewater produced in the batik industry in Bayat, Klaten Regency, contains chromium and phenol, which pass the wastewater quality standard. This study aimed to evaluate the ability of tuff breccia from the study area to reduce chromium and phenol concentration in batik wastewater. Mineralogical and chemical characterization was conducted to investigate tuff breccia's mineralogical and chemical composition. A batch and regeneration test was conducted to investigate tuff breccia's ability to reduce the chromium and phenol concentration in the batik wastewater. The characterization of tuff breccia indicates that the tuff breccia consists of fragments, minerals (quartz, plagioclase), and clay minerals (smectite and illite). The batch test results show that the grain size of tuff breccia and the pH value significantly influence the ability of tuff breccia to reduce the chromium and phenol concentration in batik wastewater. The regeneration test showed that the tuff breccia would decrease the capability by up to 30 percent after five times of use.

References

Abdelfattah, I., Abdelwahab, W., & El-Shamy, A. M. (2022). Environmental Remediation of Contaminated Wastewater with Ammonium Using Clay-Based Adsorbents. Nature Environment & Pollution Technology, 21(4).
Aryee, A. A., Mpatani, F. M., Kani, A. N., Dovi, E., Han, R., Li, Z., et. Al. (2021). A Review on Functionalized Adsorbents Based on Peanut Husk for the Sequestration of Pollutants in Wastewater: Modification Methods and Adsorption Study. Journal of Cleaner Production, 310, 127502.
Bashir, A., Malik, L. A., Ahad, S., Manzoor, T., Bhat, M. A., Dar, G. N., dan Pandith, A. H. (2019). Removal of heavy metal ions from aqueous system by ion-exchange and biosorption methods. Environmental Chemistry Letters, 17, 729-754.
Belviso, C. (2020). Zeolite for potential toxic metal uptake from contaminated soil: A brief review. Processes, 8(7), 820.
Bhagya, T.G. (2016). Studi Kelayakan Penerapan Teknologi GPS dan Fish Finder Untuk Meningkatkan Hasil Tangkap Ikan. InSearch, 15, 55-60.
Budianta, W., & Sutrisno (2021). Kajian Kualitas Air Sungai Dengkeng di Kecamatan Bayat, Kabupaten Klaten, Jawa Tengah. KURVATEK, 6(2), 153-164.
Djebbar, M., Djafri, F., Bouchekara, M., & Djafri, A. (2012). Adsorption of Phenol on Natural Clay. Applied Water Science, 2, 77-86.
Fu, F., dan Wang, Q. (2011). Removal of Heavy Metal Ions from Wastewaters: A Review. Journal of Environmental Management, 92(3), 407-418.
Ibrahimi, M. M., & Sayyadi, A. S. (2015). Application of Natural and Modified Zeolites in Removing Heavy Metal Cations from Aqueous Media: An Overview of Including Parameters Affecting the Process. International Journal of Geology, Agriculture and Environmental Sciences, 3(2), 1-7.
Izzo, F., Langella, A., de Gennaro, B., Germinario, C., Grifa, C., Rispoli, C., et. Al. (2022). Chabazite from Campanian Ignimbrite Tuff as a Potential and Sustainable Remediation Agent for the Removal of Emerging Contaminants from Water. Sustainability, 14(2), 725.
Katsou, E., Malamis, S., Tzanoudaki, M., Haralambous, K. J., & Loizidou, M. (2011). Regeneration of Natural Zeolite Polluted by Lead and Zinc in Wastewater Treatment Systems. Journal of hazardous materials, 189(3), 773-786.
Lukman, S., Essa, M. H., Mu'azu, N. D., Bukhari, A., & Basheer, C. (2013). Adsorption and Desorption of Heavy Metals onto Natural Clay Material: Influence of Initial pH. Journal of Environmental Science and Technology, 6(1), 1-15.
Natalia N. & Firdaus H. (2017). Penurunan Kadar Kromium Heksavalen (Cr6+) dalam Limbah Batik Menggunakan Limbah Udang (Kitosan). TEKNIK, 38 (2), pp. 99-102. doi: 10.14710/teknik.v38i2.13403.
Peraturan Pemerintah Republik Indonesia Nomor 82 Tahun 2001. Tentang Pengelolaan Kualitas Air Dan Pengendalian Pencemaran Air.
Petersen, L. W., Moldrup, P., Jacobsen, O. H., & Rolston, D. E. (1996). Relations between Specific Surface Area and Soil Physical and Chemical Properties. Soil Science, 161(1), 9-21.
Setyaningtyas, T., Riyani, K., Dwiasi, D. W., & Rahayu, E. B. (2018). Degradasi Fenol Pada Limbah Cair Batik Menggunakan Reagen Fenton dengan Sinar UV. Jurnal Kimia VALENSI, 4 (1).
Standar Nasional Indonesia. (2008). Air dan Air Limbah-Bagian 59: Metode Pengambilan Contoh Air Limbah. SNI 6989:2008. Jakarta : Badan Standardisasi Nasional.
Surono, S. (2009). Litostratigrafi Pegunungan Selatan Bagian Timur Daerah Istimewa Yogyakarta dan Jawa Tengah. Jurnal Geologi Dan Sumberdaya Mineral, 19(3), 209-221.
Published
2023-03-26
Section
Articles