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Ciptakan Rumah Ramah Lingkungan Dengan Material Dinding Limbah Fly Ash Dan Bottom Ash (FABA) Vira Ansari; Eddy Prianto
Prosiding SNST Fakultas Teknik Vol 1, No 1 (2021): PROSIDING SEMINAR NASIONAL SAINS DAN TEKNOLOGI 11 2021
Publisher : Prosiding SNST Fakultas Teknik

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Abstract

Fly ash dan bottom ash (FABA) merupakan limbah B3 yang merupakan limbah yang dihasilkan oleh PLTU dengan memanfaatkan batu bara sebagai bahan bakar yang menghasilkan sumber energi. Pemanfaatan fly ash dan bottom ash (FABA) masih sangat minim dimana hal ini mengakibatkan timbulnya penumpukan hasil limbah batu bara yang berdampak pada pencemaran lingkungan dan kesehatan. Berdasarkan alasan tersebut maka perlu ada nya pemanfaatan limbah batu bara FABA dalam menyelenggarakan pelestarian lingkungan hidup yaitu dengan mengolah FABA menjadi salah satu material konstruksi seperti paving block dan semen dan pemanfaatan FABA untuk material pembuatan rumah yaitu batako agar dapat menciptakan lingkungan yang nyaman bagi pengguna. Kajian prapengukuran lapangan terhadap material dinding atau studi berbagai refensi menjadi langkah yang kami tempuh pada kesempatan ini. Hasilnya menunjukan bahwa pengelolaan limbah FABA yang tepat menjadi alternatif terciptanya Rumah Ramah Lingkungan
FIELD EXPERIMENTATION ON WALL SURFACE TEMPERATURE WITH FABA BRICK IN HOT CONDITIONS Vira Ansari; Eddy Prianto; Agung Dwiyanto
Logic : Jurnal Rancang Bangun dan Teknologi Vol. 22 No. 2 (2022): July
Publisher : Unit Publikasi Ilmiah, P3M, Politeknik Negeri Bali

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (1985.372 KB) | DOI: 10.31940/logic.v22i2.198-208

Abstract

The processing of coal waste into building materials from fly ash bottom ash has been stipulated in Regulation number 22 of 2021 as Non-Hazardous material, with a note that the management requirements must still meet the standards and technical requirements set out and listed in the environmental document approval. Previous studiesstated that one of the physical characteristics of the use of this waste (fly ash bottom ash) can be in improving the quality of construction materials and environmental quality. The research questions of this study are: Does the facing east orientation quantitatively receiving more heat of the morning sun than other orientations? Does FABA brick walls affect the indoor thermal performance? The wall surface temperature measurement is carried out by the field experimentation with extreme climatic conditions, both sunny and rainy weather in 2021. The results of this study found that the surface temperature profile of the brick wall oriented to the east in sunny rainy/cold weather is cooler 2 % compared to the temperature on the western side. The wall surface temperature profile in the morning is 25% warmer than the ambient air temperature in sunny weather and 9% cooler in rainy weather. wall material with FABA brick proves that the orientation, location and character of the microclimate are significant to the thermal value.
Field Research on Surface Temperature Characteristics of Faba Brick using Shade and without Shade Vira Ansari; Eddy Prianto; Agung Dwiyanto
Eduvest - Journal of Universal Studies Vol. 2 No. 6 (2022): Journal Eduvest - Journal of Universal Studies
Publisher : Green Publisher Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (4516.561 KB) | DOI: 10.59188/eduvest.v2i6.467

Abstract

In reality, brick is a building material used to make walls or walls. As the basic material is clay or clay which is then molded and burned at a certain temperature so that it turns hard like stone and will not soften again when exposed to water. One of the advantages is that it is strong and durable. However, one of the problems faced today is the supply of bricks as a material for making walls/panels which are mostly taken from productive rice fields. There are 3 (three) results of this study, firstly, the surface temperature profile of the east-oriented brick wall is 1.2% hotter than the temperature on the west side in sunny, cloudy and rainy weather. Second. The wall surface temperature profile in cloudy weather has a surface temperature of 64.4% hotter than the ambient air temperature with the research model using shade. And third, the study of the use of shading on the wall model made of FABA proves that it has a significant effect on the magnitude of the thermal value produced.