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      Sintesis dan Karakterisasi Adsorben Ion Fe3+ dan Zn2+ dari Limbah Lumpur IPAL Industri Tekstil Menggunakan Aktivator KOH dan H3PO4

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      Date
      2026
      Author
      WARDHANA, ALVIO
      Saprudin, Deden
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      Abstract
      Limbah lumpur IPAL industri tekstil berpotensi dikonversi menjadi adsorben bernilai guna. Penelitian ini bertujuan mensintesis dan mengarakterisasi adsorben berbasis lumpur IPAL tekstil menggunakan variasi agen pengaktif kimia H3PO4 (10% v/v, 30% v/v, 50% v/v) dan KOH (5,83%, 17,47%, dan 29,11%), serta mengevaluasi performa penyerapan dan selektivitasnya terhadap kation logam berat Fe3+ dan Zn2+. Karakterisasi fisikokimia diuji mengacu pada SNI 06-3730-1995, meliputi analisis proksimat, daya serap iodin dan metilen biru, serta analisis gugus fungsi menggunakan FTIR. Hasil pengujian menunjukkan seluruh sampel memenuhi standar SNI untuk kadar air (2.79% - 12.05%) dan kadar abu (5.7% - 9.1%). Nilai daya serap iodin belum mencapai standar minimum dengan capaian tertinggi 137.05 mg/g pada KOH 29,11%, namun uji metilen biru menunjukkan pembentukan mesopori fungsional hingga 199.76 mg/g pada H3PO4 30% v/v. Uji adsorpsi menunjukkan perlakuan KOH 29,11% menghasilkan kapasitas adsorpsi maksimum teoritis (qmax) paling stabil (0.578 mg/g untuk Fe3+ dan 0.551 mg/g untuk Zn2+).
       
      Textile industrial Wastewater Treatment Plant (WWTP) sludge has the potential to be converted into valuable adsorbents. This study aims to synthesize and characterize WWTP sludge-based adsorbents using chemical activating agents of H3PO4 (10% v/v, 30% v/v, and 50% v/v) and KOH (5.83%, 17.47%, and 29.11%), and evaluate their removal performance and selectivity towards Fe3+ and Zn2+ heavy metal cations. Physicochemical characterization was tested referring to SNI 06-3730-1995, including proximate analysis, iodine and methylene blue adsorption, and FTIR functional group analysis. The results showed that all samples met the SNI standards for moisture content (2.79% - 12.05%) and ash content (5.7% - 9.1%). Although the iodine number did not reach the minimum standard with the highest value of 137.05 mg/g in KOH 29,11%, the methylene blue test confirmed functional mesopore formation up to 199.76 mg/g in H3PO4 30% v/v. Adsorption tests showed that KOH 29.11% treatment yielded the most stable theoretical maximum adsorption capacity (qmax) of 0.578 mg/g for Fe3+ and 0.551 mg/g for Zn2+.
       
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      http://repository.ipb.ac.id/handle/123456789/178329
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      Copyright © 2020 Library of IPB University
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      Indonesia DSpace Group 
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