Analysis of Batik Industry Wastewater Quality Treated with Activated Charcoal from Coconut Fronds
DOI:
https://doi.org/10.70211/ijesi.v1i1.128Keywords:
Activated charcoal; COD; Fatty Oils, liquid waste; pH.Abstract
The increasing growth and development of population is directly proportional to the increase in activities carried out by humans. Human clothing and lifestyle needs have increased very rapidly which has had an impact on the development of the textile industry, one of which is the batik industry. Many fans of batik production produce waste water which can pollute the waters around residents. This can have a detrimental impact on the environment because there are organic compounds that can cause environmental pollution. The coconut fronds that are often found are not used optimally. Therefore, researchers used coconut fronds made into charcoal as an adsorbent material for processing batik liquid waste. The research will be carried out for 1 month, from June to July 2023. Analysis of the quality of liquid waste will be carried out at the Baristan Laboratory. This type of research is experimental research. The research design uses 25 ml of batik waste treated with 3 grams of activated charcoal, 3.5 grams. , and 4 grams for 40 minutes. Data analysis uses the Effectiveness Formula. Data shows that activated charcoal is effective in reducing oil and fat in batik liquid waste. The higher the weight of activated charcoal for filtration, the higher the reduction in oil and fat levels. However, this does not apply to the COD and pH parameters. Activated charcoal can reduce COD levels with an average effectiveness of 20.32% mg/L, pH with an average of 12% and fatty oils with an average of 66% mg/L.
References
L. Indrayani, “Pengolahan limbah cair industri batik sebagai salah satu percontohan IPAL batik di,” EJES, vol. 12, no. 2, pp. 173–184, 1907. https://doi.org/10.24843/EJES.2018.v12.i02.p07 DOI: https://doi.org/10.24843/EJES.2018.v12.i02.p07
N. Apriyani, “Industri batik: kandungan limbah cair dan metode pengolahannya,” Media Ilm. Tek. Lingkung., vol. 3, no. 1, pp. 21–29, 2018. https://doi.org/10.33084/mitl.v3i1.640 DOI: https://doi.org/10.33084/mitl.v3i1.640
I. Nurhayati, S. Vigiani, and D. Majid, “Penurunan kadar besi (Fe), kromium (Cr), COD dan BOD limbah cair laboratorium dengan pengenceran, koagulasi dan absorpsi,” Ecotrophic, vol. 14, no. 1, pp. 74–87, 2020. https://doi.org/10.24843/EJES.2020.v14.i01.p07 DOI: https://doi.org/10.24843/EJES.2020.v14.i01.p07
Rahmawati, R. A. Purnomo, M. Rudianto, and E. D. Amperawati, “Batik Ciprat Karangpatihan: inovasi batik inklusi berkelanjutan dan ramah lingkungan,” Gracias Logis Kreatif.
J. A. Natasha, A. W. Aulia, and S. I. Syarifah, “Transformasi batik ecoprint Malang Selatan: optimalisasi green capital budgeting dan green marketing untuk pasar global,” Simp. Nas. Akunt. Vokasi XII, vol. 1, pp. 577–589, 2024.
D. S. Perwitasari, Teknologi Penurunan Kadar Ion Logam Pada Limbah Cair Industri. 2021.
R. D. Siregar, T. A. Zaharah, and N. Wahyuni, “Penurunan kadar COD (Chemical Oxygen Demand) limbah cair industri kelapa sawit menggunakan arang aktif biji kapuk (Ceiba petandra),” J. Kim. Khatulistiwa, vol. 4, no. 2, pp. 62–66, 2015.
Izarna, “Uji unit filtrasi sederhana dalam menurunkan parameter kualitas air limbah cair rumah makan,” pp. 1–79, 2022.
A. M. Ichlasul, “Pengolahan limbah cair rumah makan menggunakan pengolahan anaerob (bioball) dan aerob (microbubble generator),” 2022.
N. Jais, M. Ikhtiar, A. Gafur, H. Habo Abbas, and Hidayat, “Bioakumulasi logam berat kadmium (Cd) dan kromium (Cr) yang terdapat dalam air dan ikan di Sungai Tallo Makassar,” Wind. Public Heal. J., vol. 1, no. 3, pp. 261–273, 2020. https://doi.org/10.33096/woph.v1i3.65 DOI: https://doi.org/10.33096/woph.v1i3.65
A. V. Kusumaningrum, “Analisis risiko logam berat pada air tanah dan kualitas air lindi di sekitar TPA Banyuroto Kabupaten Kulonprogo,” Itenas Repos., 2023.
Irhamni, S. Pandia, E. Purba, and W. Hasan, “Serapan logam berat esensial dan non-esensial pada air lindi TPA Kota Banda Aceh,” Serambi Eng., vol. 2, no. 3, pp. 134–140, 2017.
I. I. Fatiha, “Potensi tumbuhan melati air (Echinodorus radicans) terhadap penurunan kadar timbal (Pb) dan tembaga (Cu) pada limbah cair home industry batik di Desa Sendang,” UIN Sunan Ampel, p. 20, 2022.
KLHK No. P.16, “Permen KLHK,” Peraturan Menteri Lingkungan Hidup dan Kehutanan Republik Indonesia: Perubahan Kedua atas Peraturan Menteri Lingkungan Hidup Nomor 5 Tahun 2014 tentang Baku Mutu Air Limbah, vol. 53, no. 9, pp. 1689–1699, 2019. file:///C:/Users/User/Downloads/fvm939e.pdf
A. Y. Bagastyo, F. Sidik, A. D. Anggrainy, J. L. Lin, and E. Nurhayati, “The performance of electrocoagulation process in removing organic and nitrogenous compounds from landfill leachate in a three-compartment reactor,” J. Ecol. Eng., vol. 23, no. 2, pp. 235–245, 2022. https://doi.org/10.12911/22998993/145290 DOI: https://doi.org/10.12911/22998993/145290
A. A. Pratama, “Penurunan kadar krom limbah cair industri penyamakan kulit menggunakan karbon aktif dari limbah kulit sapi dan tumbuhan,” Environ. Res. J., 2021.
M. Muhdarina, N. Nurhayati, M. R. Pahlepi, Z. Pujiana, and S. Bahri, “Penyiapan arang aktif pelepah kelapa sawit sebagai adsorben asam lemak bebas dari CPO (Crude Palm Oil),” al-Kimiya, vol. 7, no. 1, pp. 7–13, 2020. https://doi.org/10.15575/ak.v7i1.6497 DOI: https://doi.org/10.15575/ak.v7i1.6497
Y. Khery, N. Kurnia, and K. Kahpiyati, “Efektivitas penurunan COD limbah tempe tahu oleh karbon aktif tongkol jagung,” Hydrog. J. Kependidikan Kim., vol. 1, no. 1, p. 21, 2013. https://doi.org/10.33394/hjkk.v1i1.575 DOI: https://doi.org/10.33394/hjkk.v1i1.575
Y. Rahmanto, A. Rifaini, S. Samsugi, and S. D. Riskiono, “Sistem monitoring pH air pada aquaponik menggunakan mikrokontroler Arduino Uno,” J. Teknol. dan Sist. Tertanam, vol. 1, no. 1, p. 23, 2020. https://doi.org/10.33365/jtst.v1i1.711 DOI: https://doi.org/10.33365/jtst.v1i1.711
T. Harmawan, “Analisis kandungan minyak dan lemak pada limbah outlet pabrik kelapa sawit di Aceh Tamiang,” Quim. J. Kim. Sains dan Terap., vol. 4, no. 1, pp. 15–19, 2022. https://doi.org/10.33059/jq.v4i1.4318 DOI: https://doi.org/10.33059/jq.v4i1.4318
Siregar, R. Duharna, N. Kurnia, and K. Kahpiyati, “Penurunan kadar COD (Chemical Oxygen Demand) limbah cair industri kelapa sawit menggunakan arang aktif biji kapuk (Ceiba petandra),” Hydrog. J. Kependidikan Kim., vol. 1, no. 1, pp. 62–66, 2015.
T. Suryanti, D. A. Ambarwati, K. Udyani, and D. Y. Purwaningsih, “Penurunan kadar BOD dan COD pada limbah cair industri batik dengan metode gabungan koagulasi dan adsorpsi,” Semin. Nas. Sains dan Teknol. Terap. VII - Inst. Teknol. Adhi Tama Surabaya, pp. 113–118, 2019.
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