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      Peningkatan Kekuatan Beton Plastik Dengan Penambahan Kalsit Menggunakan Metode Soybean Crude Urease Calcite Percipitation

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      Date
      2022
      Author
      Putri, Risky Sherly
      Putra, Heriansyah
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      Abstract
      Beton sebagai bahan konstruksi terus meningkat penggunaannya karena kuat tekannya yang tinggi dan mudah dalam pengerjaannya. Pengelolaan sampah plastik menjadi persoalan karena plastik sulit untuk diuraikan secara alami. Subtitusi plastik saja tidak dapat dilakukan pada beton, sehingga diperlukan tambahan lain untuk mempertahankan kekuatan beton. Soybean crude urease calcite precipitation (SCU-CP) dijadikan sebagai alternatif pemecahan masalah dengan menggunakan kedelai sebagai pengganti enzim urease yang dapat meningkatkan kekuatan tanah. Oleh karena itu diperlukan evaluasi pengaruh subtitusi plastik serta penambahan larutan kalsit terhadap kuat tekan dan tegangan-regangan beton. Peningkatan kuat tekan terjadi secara signifikan pada beton plastik SCU-CP 5%. Penambahan kalsit meningkatkan tegangan dan menurunkan regangan yang menjadikan kurva semakin tegak, modulus elastisitas meningkat dan mutu beton semakin bagus.
       
      Concrete as a construction material continues to increase in use because of its high compressive strength and ease of operation. Plastic waste management is a problem because plastic is difficult to decompose naturally. Plastic substitution alone cannot be done on concrete, so other additions are needed to maintain the strength of the concrete. Soybean crude urease calcite precipitation (SCU-CP) is used as an alternative problem solving by using soybeans as a substitute for urease enzymes which can increase soil strength. Therefore, it is necessary to evaluate the effect of plastic substitution and the addition of calcite solution on the compressive strength and stress-strain of concrete. The increase in compressive strength occurred significantly in the 5% SCU-CP plastic concrete. The addition of calcite increases the stress and decreases the strain, which makes the curve more upright, the modulus of elasticity increases, and the concrete quality gets better.
       
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      http://repository.ipb.ac.id/handle/123456789/112706
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      • UT - Civil and Environmental Engineering [1042]

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