Sy, Salmariza
Balai Riset dan Standardisasi Industri Padang

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Pengaruh Laju Alir Inlet Reaktor MSL terhadap Reduksi BOD, COD, TSS, dan Minyak/Lemak Limbah Cair Industri Minyak Goreng Sy, Salmariza; Sofyan, Sofyan; Muchtar, Hendri; Kasman, Monik
Jurnal Litbang Industri Vol 7, No 1 (2017)
Publisher : Institution for Industrial Research and Standardization of Industry - Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (423.062 KB) | DOI: 10.24960/jli.v7i1.2768.41-51

Abstract

This research was conducted by treating edible oil industry wastewater used Multi Soil Layering (MSL) method. The MSL reactor was built from a 200x120x200 cm concrete basin. Andisol soil was mixed with sawdust and fine charcoal at each ratio 5:1:1 based on dry weight as an impermeable layer. The flow rate variations were 250, 500, 1000, and 1500 L/m2.day. The observed pollutant parameters were BOD, COD, TSS, oil/fat, and pH. The results showed that MSL reactor was effective to decrease the pollutant content of edible oil industry wastewater. The reactor could reduce concentration of effluent parameters below standard except for oil/fat parameters at high flow rates. In the effluent was found BOD 0.66-14.22 mg/L, COD 5-69 mg/L, TSS 9-26 mg/L, and oil/fat 2-9 mg/L. The flow rate had an effect on reduction efficiency of BOD, COD, TSS, and oil/fat but did not effect pH as all flow rate could raise pH 6.37-6.95 became pH 6.99-7.24. The lower the flow rate the higher the reduction efficiency. The reduction efficiency at flow rates 250 and 1500 L/m2 days for BOD were 99% and 86%, COD were 96% and 71%, TSS were 88% and 77%, and oil/fat were 80% and 60%.ABSTRAK  Penelitian ini dilakukan dengan mengolah air limbah industri minyak goreng menggunakan metoda Multi Soil Layering (MSL). Reaktor MSL dibuat dari beton berbentuk bak ukuran 200x120x200 cm. Tanah andisol dicampur dengan serbuk gergaji dan arang halus pada rasio masing-masing 5:1:1 berdasarkan berat kering sebagai penyusun lapisan impermeable. Variasi laju alir yaitu 250, 500, 1000, dan 1500 L/m2.hari. Parameter pencemar yang dianalisis meliputi BOD, COD, TSS, minyak/lemak, dan pH. Hasil penelitian menunjukkan bahwa reaktor MSL sangat efektif untuk menurunkan kandungan zat pencemar limbah cair industri minyak goreng. Reaktor dapat mereduksi konsentrasi parameter outlet sampai dibawah baku mutu yang distandarkan kecuali untuk parameter miyak/lemak pada perlakuan laju alir tinggi. Pada effluen didapatkan nilai BOD 0,66-14,22 mg/L, COD 5-69 mg/L, TSS 9-26 mg/L, dan minyak/lemak 2-9 mg/L. Laju alir berpengaruh terhadap efisiensi reduksi BOD, COD, TSS, dan minyak/lemak, tetapi tidak berpengaruh terhadap pH dimana semua perlakuan laju alir dapat menaikkan pH 6,37-6,95 menjadi pH 6,99-7,24. Makin rendah laju alir maka makin tinggi efisiensi reduksi. Efisiensi reduksi pada laju alir 250 dan 1500 L/m2 hari untuk BOD adalah  99% dan 86%, COD 96% dan 71%, TSS 88% dan 77%, dan minyak/lemak 80% dan 60%.
Pembuatan dan Karakterisasi Tinta Serbuk Printer Berbahan Baku Arang Aktif dari Limbah Padat Pengolahan Gambir Purnomo, Yudo; Sy, Salmariza; Muchtar, Hendri; Kumar, Robby
Jurnal Litbang Industri Vol 7, No 2 (2017)
Publisher : Institution for Industrial Research and Standardization of Industry - Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (589.059 KB) | DOI: 10.24960/jli.v7i2.3242.71-80

Abstract

Research on the utilization of tannins and catechins of gambier has been done a lot. There is no research report however that examines the utilization of gambier processing solid waste. The objective of the research was to utilize the solid waste of gambier processing as a raw material of printer toner. The research was done through pyrolysis process of solid waste with temperature variation 400, 500, 600oC and time variation 30, 60 minutes. The highest carbon content was obtained 42% with 400oC temperature and 60 minutes. The pyrolysis process of the gambier solid waste was further carried out at the optimum temperature and time. The charcoal was activated with H3PO4 at concentrations 0; 5; and 10% for 24 hours, cooled and washed to remove residual of H3PO4, then drying in the oven at temperature 115oC for 24 hours. Size reduction process used a ball milling for 2 hours with speed 500 rpm. Fixed carbon content was obtained between 43-51%. The results of morphological testing by scanning electron microscope showed that the produced carbon powder had not a uniform size yet. The average particle size was between 5-10 µm with polydispersity index 0.9. The most mineral elements of carbon powder analysis using XRF were Ca, Mg, K, Si, Fe, and P. Testing of print quality based on ISO/IEC 19752:2004 using laser jet printers had not provided optimal results yet.ABSTRAKPenelitian pemanfaatan tanin dan katekin gambir telah banyak dilakukan. Namun, belum dilaporkan penelitian yang mengkaji pemanfaatan limbah padat pengolahan gambir. Tujuan penelitian adalah memanfaatkan limbah padat pengolahan gambir sebagai bahan baku pembuatan tinta serbuk printer. Penelitian dilakukan melalui proses pirolisis limbah padat dengan variasi suhu 400, 500, 600oC dan variasi waktu 30, 60 menit. Kadar karbon terikat tertinggi diperoleh sebesar 42% dengan suhu pirolisis 400oC selama 60 menit. Proses pirolisis limbah padat gambir selanjutnya dilakukan pada suhu dan waktu optimal tersebut. Arang aktif dilakukan aktifasi menggunakan aktifator H3PO4 pada konsentrasi 0, 5 dan 10% selama 24 jam, kemudian didinginkan dan dicuci untuk menghilangkan sisa H3PO4, dan selanjutnya dikeringkan dalam oven pada suhu 115 oC selama 24 jam. Proses penghalusan menggunakan ball milling selama 2 jam dengan kecepatan 500 rpm. Hasil pengujian kadar karbon terikat berkisar antara 43-51%. Hasil pengujian morfologi dengan alat Scanning Electron Microscope) memperlihatkan serbuk karbon yang dihasilkan belum mempunyai ukuran seragam. Ukuran partikel serbuk rata-rata 5-10 µm dengan indek polidispersitas sebesar 0,9. Kandungan unsur mineral yang terbanyak dari hasil analisis serbuk karbon adalah unsur Ca, Mg, K, Si, Fe, dan P. Uji coba kualitas cetak berdasarkan ISO/IEC 19752:2004 menggunakan printer laser belum memberikan hasil yang optimal.