Abstract

Coral reefs are classified as coral or coral limestone. These corals contain of a high level of calcium purity with more than 90%. These clacium are in the from calcite (CaCO3). Calcite can be used in the industrial sector wich can be processed into a catalyst and use as a mixture 0f portland cement.its economic value increases by converting CaCO3 to CaO trough the calcination process at high temperatures. The coral sampels were taken from the coastal area of Bayang, Dampelas Donggala wich consisted of 2 samples. i.e coastal and montain coral reefs. The CaO levevls contained in coral reefs wer determined by qualitative and quantitative analysis method using XRF (X-Ray Fluorescence). XRF result showed that were CaO compounds in each coral reef sample. The CaO level in the coastal reef was 92,08% before calcination and 92,11% after calcination. Whereas the CaO level in te mountain coastal reef was 94,51% before calcination and 96,77% after calcination.

Highlights

  • Coral reefs are classified as coral or coral limestone

  • These corals contain of a high level of calcium purity

  • Calcite can be used in the industrial sector wich can be processed into a catalyst

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Summary

HASIL DAN PEMBAHASAN Pengambilan dan preparasi sampel

Sampel batu karang diambil dengan menggunakan metode grab sampling yaitu pengambilan batuan dalam bentuk bongkahan di lokasi (Wijaya dkk., 2016). Kadar air yang diperoleh yaitu pada sampel batu karang gunung (sampel A) sebesar 0,31%, 0,40%, dan 0,40% sehingga diperoleh kadar air rata-rata sebesar 0,37%. Pada sampel batu karang pantai (sampel B) sebesar 0,246%, 0,275%, dan 0,275% sehingga diperoleh kadar air rata-rata sebesar 0,265%. Analisis kadar kalsium oksida (CaO) Setelah proses kalsinasi selesai, sampel dianalisis menggunakan XRF (X-Ray Fluorescence) untuk mengetahui persentase CaO pada sampel (Suhardin dkk., 2018). Tabel 1 menunjukkan kandungan senyawa oksida pada sampel batu karang gunung (sampel A) sebelum dan setelah kalsinasi. Tabel 2 menunjukkan komposisi senyawa oksida batu karang pantai (sampel B) sebelum dan setelah kalsinasi. Komposisi batu karang gunung (sampel A) sebelum dan setelah kalsinasi dalam bentuk oksida. Komposisi batu karang pantai (sampel B) sebelum dan sesudah kalsinasi dalam bentuk oksida

Setelah kalsinasi
Findings
Setelah Kalsinasi

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