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PENERAPAN FREUNDLICH MODEL PADA ADSORPSI-REDUKTIF ISOTHERM AUCL4¯ DENGAN ASAM
Author(s) -
Nurul Ismillayli,
Sri Juari Santosa,
Dwi Siswanta
Publication year - 2015
Publication title -
jurnal pijar mipa
Language(s) - English
Resource type - Journals
eISSN - 2460-1500
pISSN - 1907-1744
DOI - 10.29303/jpm.v10i2.24
Subject(s) - chemistry , freundlich equation , adsorption , chromatography , nuclear chemistry , organic chemistry
Abstrak: Telah dilakukan adsorpsi reduktif isotherm AuCl4¯ dengan menggunakan asam humat hasil isolasi tanah gambut Rawa Pening, Ambarawa. Isolasi dilakukan melalui perendaman alam 0,1 M NaOH dan dilanjutkan dengan pemurnian menggunakan 0,1 M HCl/0,3 M HF. Asam humat hasil isolasi dikarakterisasi menggunakan spektroskopi inframerah, ditentukan kadar abunya dan diaplikasikan untuk adsorpsi reduksi isotherm larutan AuCl4¯. Hasil karakterisasi menunjukkan bahwa asam humat hasil isolasi memiliki gugus –COOH, -OH fenolik, hidrokarbon alifatik dan aromatis dengan kadar abu sebesar 1,13%. Data adsorpsi AuCl4¯  dengan menggunakan asam humat lebih menunjukkan kecocokan dengan persamaan Freundlich di banding Langmuir, dengan harga R=0,92, n=1,7184 dan log KF= 4,1707. Reduksi Au(III) menjadi Au(0) oleh asam humat dikonfirmasi dengan munculnya puncak tajam baru dengan nilai 2θ =38, 44, 64 dan 77° yang merupakan puncak karakteristik dari partikel emas. Kata kunci: adsorpsi reduktif isotherm, AuCl4¯, asam humat, Freundlich.                                                                                   Abstract: Isotherm adsorption reductive of AuCl4¯ by using isolated humic acid of Rawa Pening peat soil, Ambarawa had been conducted. Isolation was done by soaking peat soil in 0.1 M NaOH and following by purification in 0.1M HCl/0.3 HF. The isolated humic acid was characterized using infrared spectroscopy, determined its ash contain and aplicated for isotherm adsorption reductive of AuCl4¯. FTIR spectra indicated that isolated humic acid consist of COOH group, phenolic –OH, aliphatic hydrocarbon and aromatic ring, its ash content was 1.13%. Asorption data of AuCl4¯  showed more suitable for Freundlich model than Langmuir model, with R=0,92, n=1,7184 and log KF= 4,1707. Reduction of Au(III) to Au(0) was confirmed by appearance of sharp peak at 2θ = 38, 44, 64 dan 77° as characteristic peak of gold particles.Keywords: Isotherm adsorption reductive, AuCl4¯ , humic acid, Freundlich.

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