Characteristics of Liquid Smoke of Pyrolysis Results From Different Tabah Bamboo Stem(Gigantochloa nigrociliataBUSE-KURZ)

Authors

  • Cokorda Mira Devi
  • Pande Ketut Diah Kencana
  • Gede Arda

DOI:

https://doi.org/10.24843/JBETA.2020.v08.i01.p18

Keywords:

pyrolysis temperature, smoke liquid, tabah bamboo stem

Abstract

The purpose of this study is to find out how the yield of the upper, middle and lower stems of liquid bamboo stems produced from the pyrolysis process when the temperature reached 200oC and the chemical content (pH, total acid, total phenol). This study uses a Completely Randomized Design (CRD) with a single factor, which is part of a different bamboo stem. The results of the study showed that the differences in the bamboo culms affected the characteristics of the liquid smoke obtained. The lower bamboo stem produce the highest rendemen (46,44%), the highest total phenol (2.79), and the highest percentage of char coal (58.40%). While the highest total acid (12.36%) and the highest pH (4.10) were obtained from the middle stem and upper stem, respectively. The smallest real difference analysis showed differences in the upper, middle and lower stems significantly affected the rendemen, total phenol, and charcoal percentage

References

Alpian, Prayitno, T. A., Johanes Pramana Sutapa, G., & Budiadi. (2014). Kualitas Asap Cair Batang Gelam ( Melaleuca sp.). Juurnal Penelitian Hasil Hutan, 32(2), 83–92..

Darmadji, P. 2006. Perancangan pengolahan sampah kota berwawasan lingkungan berbasis teknologi asap cair.

Komarayati, S., & Wibowo Pusat Penelitian dan Pengembangan Hasil Hutan Jl Gunung Batu No, S. (2014). Karakteristik Asap Cair Dari Tiga Jenis Bambu (Characteristics of Liquid Smoke from Three Bamboo Species), 33(2), 167–174.

Kencana, P. K. D., Widia, W. danAntara, N. S. 2012. ‘Praktek Baik Budi Daya Bambu Rebung Tabah(Gigantochloa nigrociliata BUSE-KURZ)’, pp. 1–69.

Loiwatu, M., & Manuhuwa, E. (2008). Komponen kimia dan anatomi tiga jenis bambu dari Seram, Maluku. Agritech, 18(2), 76–83.Marasabessy I. 2007. Produksi asap cair dari limbah pertanian dan penggunaannya dalam pembuatan ikan tongkol (Euthynnus affinis) asap. Tesis. Program Pascasarjana IPB. Bogor.

Sumasroh M. 2010. Mengenal Asap Cair. Diambil dari http://www.kebonadem.com/2010/02/mengenal-asap-cair.htmL. Diakses pada tanggal 25 Januari 2018

Surest, A. H., Reza, M. S., & Priyayi, D. (n.d.). (2013). Bahan Bakar Cair, 19(4), 38–44

Syarif, U. I. N., Jakarta, H., Anisah, K., Kedokteran, F., Ilmu, D. A. N., & Farmasi, P. S. (2014). Analisa Komponen Kimia dan Uji Antibakteri Asap Cair Tempurung Kelapa Sawit ( Elaeis guineensis Jacq. ) Pada BakteriStaphylococcus aureus danPseudomonas aeruginosa.

Ulfah, D. (1999). Sifat dan Variasi Tiga Jenis Bambu (Apus, Ori, Wulung) pada Ketinggian Tempat Tumbuh yang Berbeda. Thesis UGM. Tidak Dipublikasikan.

Wibowo, S. (2012). Characteristic of Smoke liquid from Nyamplung Shell. Jurnal Penelitian Hasil Hutan, 30(3), 218–227.

Published

2019-06-19

How to Cite

Devi, C. M., Kencana, P. K. D., & Arda, G. (2019). Characteristics of Liquid Smoke of Pyrolysis Results From Different Tabah Bamboo Stem(Gigantochloa nigrociliataBUSE-KURZ). Jurnal BETA (Biosistem Dan Teknik Pertanian), 8(1), 145–151. https://doi.org/10.24843/JBETA.2020.v08.i01.p18

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