PENGARUH PENAMBAHAN BIOCHAR TERHADAP PENURUNAN KADAR TOTAL PETROLEUM HYDROCARBON (TPH) PADA TANAH TERCEMAR MINYAK BUMI

Authors

  • Aryo Sasmita Universitas Riau
  • Amalia Syakinah Universitas Riau
  • Ulfatun Nisa Universitas Riau

DOI:

https://doi.org/10.21776/ub.jtsl.2021.008.2.12

Keywords:

biochar, empty palm fruit bunches, palm fruit shells, TPH

Abstract

Hydrocarbons are compounds produced as a result of the activities of the petroleum industry, which can pollute the soil and waters. Due to the amount of waste, biochar from agricultural waste could potentially be used as a soil amendment agent for hydrocarbon contamination. The high lignocellulose in oil palm shells and empty bunches makes them potential raw materials for biochar. The purpose of this study was to explore the effect of biochar application on petroleum-contaminated soil to reduce Total Petroleum Hydrocarbon (TPH) levels. In this study, the dosage of biochar was added to the soil contaminated with petroleum with a variation of 3%, 5%, and 7% (w/w) and control without the addition of biochar. The parameters analyzed were TPH levels by gravimetric method every week for four weeks. The results showed that the addition of biochar had an effect on the degradation of TPH. The greater the dose of biochar used, the higher the percentage of TPH degradation. The highest decrease in TPH levels occurred at the addition of biochar dose by 7%, where the empty shell was 60.65%, and empty bunches was 54.1% which was greater than without the addition of biochar by 32.79%.

Downloads

Download data is not yet available.

References

Airlangga, S.S.D., Munir, M. dan Poniman, P. 2020. Pengaruh pemberian biochar terhadap beberapa sifat biokimia tanah dan pertumbuhan tanaman bawang merah pada lahan tercemar residu pestisida. Jurnal Tanah dan Sumberdaya Lahan 8(1): 27-34, doi: 10.21776/ub.jtsl.2021.008.1.4.

Arif, A.R., Saleh, A. dan Saokani, J. 2015. Adsorpsi karbon aktif dari tempurung kluwak (Pangium edule) terhadap penurunan fenol. Al-Kimia 3(1): 34-47.

Arun, K., Ashok, M. and Rajesh, S. 2011. Crude oil PAH constitution, degradation pathway and associated bioremediation microflora: an overview. International Journal of Environmental Sciences 1(7): 1420-1439.

Cecen, F. and Aktas, O. 2012. Activated Carbon for Water and Wastewater Treatment Integration of Adsorption and Biological Treatment. Willey-VCH.

Direktur Jendral Perkebunan Kementerian Pertanian. 2019. Statistik Perkebunan Indonesia Kelapa Sawit 2017-2019.

Edmund, C.O., Christopher, M.S. and Pascal, D.K. 2014. Characterization of palm kernel shell for materials reinforcement and water treatment. Journal of Chemical Engineering and Materials Science 5(1) 1-6, doi: 10.5897/JCEMS2014.0172.

Endriani, A. dan Sunarti. 2013. Pemanfaatan biochar cangkang kelapa sawit sebagai soil amandement Ultisol Sungai Bahar-Jambi. Jurnal Penelitian Universitas Jambi Seri Sains 15(1): 39-46.

Han, T., Zhao, Z., Bartlam, M. and Wang, Y. 2016. Combination of biochar amendment and phytoremediation for hydrocarbon removal in petroleum-contaminated soil. Environmental Science and Pollution Research 23(21): 21219-21228, doi: 10.1007/s11356-016-7236-6.

Handrianto, P. 2018. Mikroorganisme pendegradasi TPH (total petroleum hydrocarbon) sebagai agen bioremediasi tanah tercemar minyak bumi. Jurnal SainHealth 2(2): 35-42.

Hidayat, A. dan Siregar, C.A. 2017. Telaah Mendalam tentang Bioremediasi: Teori dan Aplikasinya dalam Upaya Konservasi Tanah dan Air. IPB Press.

Juliani, A. dan Rahman, F. 2011. Bioremediasi lumpur minyak (oil sludge) dengan penambahan kompos sebagai bulking agent dan sumber nutrien tambahan. Jurnal Sains dan Teknologi Lingkungan 3(1): 1-18.

Kresnawaty, I., Putra, S.M., Budiani, A. dan Darmono, T. 2018. Konversi Tandan kosong kelapa sawit (TKKS) menjadi arang hayati dan asap cair. Jurnal Penelitian Pascapanen Pertanian 14(3): 171-179, doi: 10.21082/jpasca.v14n3.2017.171-179

Kurniawan, A., Haryono, B., Baskhara, M. dan Tyasmoro, S.M. 2016. Pengaruh penggunaan biochar pada media tanam terhadap pertumbuhan bibit tanaman tebu (Saccharum officinarum L.). Jurnal Produksi Tanaman 4(2): 153-160.

Maguire, R.O. dan Agblevor, F.A. 2010. Biochar in Agricultural Systems. College of Agriculture and Life Science: Virginia Polytechnic Institute and State University.

Nurjanah, I., Mauludiyah, and Munir, M. 2020. Diesel oil degradation potential of hydrocarbonoclastic bacteria in Tanjung Perak port area. Journal of Marine Resources and Coastal Management 1(1): 31-38.

Omar, R., Idris, A., Yunus, R., Khalid, K. and Aida Isma, M. I. 2011. Characterization of empty fruit bunch for microwave-assisted pyrolysis. Fuel 90(4): 1536-1544, doi: 10.1016/j.fuel.2011.01.023.

Putri, V.I., Mukhlis dan Hidayat, B. 2017. Pemberian beberapa jenis biochar untuk memperbaiki sifat kimia tanah Ultisol dan pertumbuhan tanaman jagung. Jurnal Agroekoteknologi FP USU 5(4): 824-828.

Ristiati, N.P., Mulyadiharja, S. dan Putra, I.M.G.P. 2016. Uji Kemampuan Degradasi Minyak Solar oleh Konsorsium Bakteri Hasil Preservasi dengan Kombinasi Metode Liofilisasi dan Metode Gliserol. Seminar Nasional MIPA, Sumedang.

Rutigliano, F.A., Romano, M., Marzaioli, R., Baglivo, I., Baronti, S., Miglietta, F. and Castaldi, S. 2014. Effect of biochar addition on soil microbial community in a wheat crop. European Journal of Soil Biology 60: 9-15, doi: 10.1016/j.ejsobi.2013.10.007.

Si, H., Liang, X., Lu, J., Xiang, W., Li, Y., Wang, B., Wang, H., Tang, C., He, L. and Xin, H. 2021. Technology of acid soil improvement with biochar: a review. IOP Conference Series: Earth and Environmental Science 692(4): 042098, doi: 10.1088/1755-1315/692/4/042098.

Susanti, W.I. and Trinanda, R. 2020. Potensi bakteri asal tanah rizosfer, sedimen tanah, dan pupuk kandang sapi untuk biodegradasi minyak berat dan oli bekas. Jurnal Tanah dan Iklim 41(1): 37-44, doi: 10.21082/jti.v41n1.2017.37-44.

Tang, J., Zhu, W., Kookana, R., and Katayama, A. 2013. Characteristics of biochar and its application in remediation of contaminated soil. Journal of Bioscience and Bioengineering 116(6): 653-659, doi: 10.1016/j.jbiosc.2013.05.035.

Tri Retno, D.L. and Mulyana, N. 2013. Bioremediasi lahan tercemar limbah lumpur minyak menggunakan campuran bulking agents yang diperkaya konsorsia mikroba berbasis kompos iradiasi. Jurnal Ilmiah Aplikasi Isotop dan Radi asi 9(2): 139-150.

Vidali, M. 2001. Bioremediation: an overview. Pure and Applied Chemistry 73(7): 1163-1172.

Yolantika, H., Priadnadi, dan Nurmiati. 2015. Isolasi bakteri pendegradasi hidrokarbon di tanah tercemar lokasi perbengkelan otomotif. Jurnal Biologi Universitas Andalas 4(3): 153-157.

Downloads

Published

01-07-2021

Issue

Section

Articles

How to Cite

Sasmita, A., Syakinah, A., & Nisa, U. (2021). PENGARUH PENAMBAHAN BIOCHAR TERHADAP PENURUNAN KADAR TOTAL PETROLEUM HYDROCARBON (TPH) PADA TANAH TERCEMAR MINYAK BUMI. Jurnal Tanah Dan Sumberdaya Lahan, 8(2), 407-414. https://doi.org/10.21776/ub.jtsl.2021.008.2.12

Similar Articles

1-10 of 79

You may also start an advanced similarity search for this article.