Analyze of Parameter Values of Sasirangan Home Industry Wastewater at Hot and Cold Dyeing
DOI:
https://doi.org/10.31964/mltj.v10i1.555Keywords:
Dyeing, home ındustry, hot and cold, sasiranganAbstract
The sasirangan fabric home industry produces wastewater through the hot and cold dyeing process. It is necessary to know the coloring process and wastewater parameter values to design good wastewater treatment. The purpose of the study was to compare the wastewater parameter values including pH, NH3-N, BOD5, COD, TSS, Oil/Fat, Color, Phenol, Temperature, H2S and Crom Total from Sasirangan Home Industry Wastewater at Hot and Cold Dyeing. This type of research is comparative research with static group comparison design. The sample is a portion of wastewater from home industries from in the province of South Kalimantan Indonesia, namely Banjarmasin City, Banjarbaru City, and Banjar Regency. The sampling technique used accidental sampling with a total of 20 samples consisting of 10 samples of the hot dyeing process and 10 samples of the cold dyeing process. Parameters that do not meet the standards in the hot dyeing process are pH, BOD5, COD, TSS, color, and phenol, while in the cold dyeing process are BOD5, COD, TSS, and color. Statistically, there is a significant difference in the parameter values of pH, TSS, color, phenol, and temperature in sasirangan cloth home industry wastewater between the two processes. The results of the research can be used for planning wastewater treatment for the Sasirangan home industry.References
Adriani, A., & Zarwinda, I. (2019). Pendidikan Untuk Masyarakat Tentang Bahaya Pewarna Melalui Publikasi Hasil Analisis Kualitatif Pewarna Sintetis Dalam Saus. Jurnal Serambi Ilmu, 20(2), 217–237.
Andriana, Y. F. (2018). Pergeseran Fungsi dan Makna Simbolis Kain Sasirangan. Jurnal Rupa, 3(2), 77–92.
Andriani, R. (2017). Toksisitas Limbah Cair Industri Batik Terhadap Morfologi Sisik Ikan Nila Gift (Oreochomis nilotocus). Jurnal SainHealth, 1(2), 83–91.
Arifin, A., Karlina, A., & Khair, A. (2017). The Effect of Chitosan Dosage Againts Liquid Waste Water Color on Oriens Handicraft Sasirangan Home Industry, Landasan Ulin. Journal of Health Science and Prevention, 1(2), 58–67.
Ariningsih, I., Solichatun, dan Anggarwulan, E., (2003), Pertumbuhan Kalus dan ProduksiAntrakuinon Mengkudu (Morinda citrifolia L.) pada Media Murashige-Skoog (MS) dengan Penambahan Ion Ca2+ dan Cu2+, J. Biof, 1: 39-43.
Babu, B. R., Parande, A. K., Raghu, S. & Kumar, P. T. (2007). Textile technology cotton textile processing: waste generation and effluent treatment. J. Cotton Sci. 11, 141–153.
Bisschops, I., & Spanjers, H. (2003). Literature Review on Textile Wastewater Characterisation. Environmental Technology, 24(11), 1399–1411.
Carmen Z, Daniela S (2012) Textile organic dyes—characteristics, polluting effects and separation/elimination procedures from industrial effluents—a critical overview. Organic Pollutants Ten Years after the Stockholm Convention—Environmental and Analytical Update, pp 55–86
Choudhary, Roy, A.K. (2018). Eco-friendly dyes and dyeing. Adv. Mater. Technol. Environ. Appl. 2(1), 145–176
Deng, D., Guo, J., Zeng, G. & Sun, G. (2008). Decolorization of anthraquinone, triphenylmethane and azo dyes by a new isolated Bacillus cereus strain DC11. Int. Biodeterior. Biodegrad. 62, 263–269. https://doi.org/10.1016/j.ibiod.2008.01.017.
Dey, S., & Islam, A. (2015). A Review on Textile Wastewater Characterization in Bangladesh. Resources and Environment, 5(1), 15–44.
Hassaan, M.A., Nemr, A.El. (2017). Health and environmental impacts of dyes: Mini review. Am. J. Environ. Sci. Eng. 1(3), 64–67. https://doi.org/10.11648/j.ajese.20170103.11.
Ilmannafian, A. G., Darmawan, M. I., & Kiptiah, M. (2022). Pengaruh Fitoremediasi dengan Kombinasi Tanaman pada Kadar BOD dan COD Limbah Sasirangan. Jurnal Teknologi Agro-Industri, 9(1), 72-80.
Jingsheng, C., Tao, Y., & Ongley, E. (2006). Influence of High Levels of Total Suspended Solids on Measurement of COD and BOD in the Yellow River, China. Environmental Monitoring and Assessment, 116, 321–334.
Khehra MS, Saini HS, Sharma DK, Chadha BS, Chimni SS (2006) Biodegradation of azo dye C.I. Acid red 88 by an anoxic–aerobic sequential bioreactor. Dyes Pigments 70:1–7
Khehra, M. S., Saini, H. S., Sharma, D. K., Chadha, B. S. & Chimni, S. S. (2005). Comparative studies on the potential of consortium and constituent pure bacterial isolates to decolorize azo dyes. Water Res. 39(20), 5135–5141. https://doi.org/10.1016/j.watres.2005.09.033.
Lorenza S. (2022). Karakteristik limbah cair industri batik dengan pewarna naphtol di Yogyakarta. Program Studi Teknik Lingkungan Fakultas Teknik Sipil dan Perencanaan Universitas Islam Indonesia
Mandal, H. K. (2014). Influence of Wastewater pH on Turbidity. Int. J. Environ. Res. Dev, 4(2), 105–114.
Mohammad, S. G., Mohammad, K. Y., Mansur, B. I. & Rakesh, K. (2012). Synthesis and characterisation of colorants derived from 1, 4-diamino anthraquinone polyamides. Adv. Chem. Eng. Sci. 2(2), 300–308. https://doi.org/10.4236/aces.2012.22035.
Nair, G. P. (2011). Methods and machinery for the dyeing process. In Handbook of Textile and Industrial Dyeing: Principles, Processes and Types of Dyes (Vol. 1). https://doi.org/10.1533/9780857093974.1.245
Nasruddin, Isnasyauqiah, Nurandin D, Halang B. Normelani E, Kumalawati R, Syaharuddin, Aristin NF, Riadi S. (2018). Identifikasi Potensi Limbah Cair Zat Pewarna Sasirangan terhadap Pencemaran di Kota Banjarmasin. Lembaga Penelitian dan Pengabdian Kepada Masyarakat (LPPM) Universitas Lambung Mangkurat dengan Badan Dinas Lingkungan Hidup Kota Banjarmasin.
Naubi, I., Zardari, N. H., Shirazi, S. M., Ibrahim, N. F. B., & Baloo, L. (2016). Effectiveness of Water Quality İndex for Monitoring Malaysian River Water Quality. Polish Journal of Environmental Studies, 25(1), 1-9.
Nugraha, J., & Rakhmatiara, E. Y. (2020). Pemanfaatan Daun Rami Sebagai Bahan Zat Warna Alam dan Fungsionalisasinya Pada Pencelupan Kain Kapas dan Sutera. Arena Tekstil, 35(1), 29–38.
Osibanjo, O., Daso, A. P., & Gbadebo, A. M. (2011). The Impact of Industries on Surface Water Quality of River Ona and River Alaro in Oluyole Industrial Estate, Ibadan, Nigeria. African Journal of Biotechnology, 10(4), 696–702.
Ozbelge, T. A., Ozbelge, O. H., & Başkaya, S. Z. (2002). Removal of Phenolic Compounds from Rubber–Textile Wastewaters by Physico-Chemical Methods. Chemical Engineering and Processing: Process Intensification, 41(8), 719–730.
Paramnesi, P. A., & Reza, A. I. (2020). Dampak Pencemaran Limbah Batik Berdasarkan Nilai Kompensasi Ekonomi di Hulu dan Hilir Sungai Asem Binatur. Kajen: Jurnal Penelitian dan Pengembangan Pembangunan, 4(01), 58–72.
Popli S, Patel UD (2015) Destruction of azo dyes by anaerobic–aerobic sequential biological treatment: a review. Int J Environ Sci Technol 12:405–420
Pratiwi, D. R. (2020). Analisis Daya Saing Industri Tekstil dan Produk Tekstil (TPT) Indonesia di Pasar ASEAN. Jurnal Budget: Isu dan Masalah Keuangan Negara, 5(2), 44-66.
Putra, M. R. A. (2011). Analisis Peranan Industri Kain Sasirangan Terhadap Perekonomian Kota Banjarmasin dan Strategi Pengembangannya (Periode 2005-2009). Theses. IPB University.
Rahman, A., Islam, M., Hossain, M. Z., & Ahsan, M. A. (2012). Study of the Seasonal Variations in Turag River Water Quality Parameters. African Journal of Pure and Applied Chemistry, 6(10), 144–148.
Rizza, R. (2013). Hubungan Antara Kondisi Fisik Sumur Gali Dengan Kadar Nitrit Air Sumur Gali di Sekitar Sungai Tempat Pembuangan Limbah Cair Batik. Unnes Journal of Public Health, 2(3), 1-10.
Rono, A. K. (2017). Evaluation of TSS, BOD5, and TP in Sewage Effluent Receiving Sambul River. Journal of Pollution Effects & Control, 5(2), 1–5.
Rosyida, A., & Achadi, D. (2014). Pemanfaatan Daun Jati Muda Untuk Pewarnaan Kain Kapas Pada Suhu Kamar. Arena Tekstil, 29(2).
Savin, I.-I., & Butnaru, R. (2008). Wastewater Characteristics in Textile Finishing Mills. Environmental Engineering & Management Journal (EEMJ), 7(6), 859-864.
Sekomo CB, Rousseau DPL, Saleh SA, Lens PNL (2012) Heavy metal removal in duckweed and algae ponds as a polishing step for textile wastewater treatment. Ecol Eng 44:102–110
Shah MP, Patel KA, Nair SS, Darji A (2013) Optimization of environmental parameters on microbial degradation of reactive black dye. J Bioremed Biodegrad 4:10–15
Subagyo, P. K. (2021). Pengaruh Zat Pewarna Sıntetıs Terhadap Pewarnaan Kaın Batık. Folio, 2(2), 40-48.
Tambunan, P. M. (2018). Studi Pengaruh pH dan Kesadahan Terhadap Pertumbuhan Ikan Mas Koi (Crypinus Carpio) Dengan Media Pertumbuhan Air Sungai Tuntungan. Jurnal Saintika, 18(1), 8–11.
Vo, N.; Huynh, N.; Le, M.; Vo, K.; Vo, D. (2020). Fabrication of Ag-photodeposited TiO2/cordierite honeycomb monolith photoreactors for 2-naphthol degradation. J. Chem. Technol. Biotechnol. 95, 2628–2637.
Wang, X.; Chen, Q. (2017). Influencing factors of 2-naphthol degradation in water by biofilm-electrode method. Chem. J. Chin. Univ, 38, 855–859.
Yaseen DA, Scholz M (2016) Shallow pond systems planted with Lemna minor treating azo dyes. Ecol Eng 94:295–305
Yaseen, D.A., Scholz, M. (2019). Textile dye wastewater characteristics and constituents of synthetic effluents: a critical review. Int. J. Environ. Sci. Technol. 16, 1193–1226. https://doi.org/10.1007/s13762-018-2130-z
Zammi, M., Rahmawati, A., & Nirwana, R. R. (2018). Analisis Dampak Limbah Buangan Limbah Pabrik Batik di Sungai Simbangkulon Kab. Pekalongan. Walisongo Journal of Chemistry, 1(1), 1–5.
Zang, S.; Lian, B.; Wang, J.; Yang, Y. (2010). Biodegradation of 2-naphthol and its metabolites by coupling Aspergillus niger with Bacillus subtilis. J. Environ. Sci, 22, 669–674.
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