Carbon Stored In Sengon Wood Products Using Different Oxidation Models

Yonky Indrajaya

Abstract


Harvested wood product is one of the carbon pools that must be considered in calculating carbon emission from forestry sector. There are several models of wood product retirement : linear, logistic, and exponential. The type of model applied inthe calculation of wood product pool influence the estimated amount of carbon stored in wood product, and hence also influence the recommended management regime of a plantation forest. This study analyzed  how different models of wood product oxidation produced different estimates of carbon stored in sengon wood product and caused different management recommendation of sengon plantation. The models used in this paper include linear (VCS model), exponential (IPCC, 2006), and logistic (Miner model). The focus of the study is to evaluate only long term wood product that is oxidized up to 100 years. The study showed that the lowest carbon stored  from sengon  wood product are those estimated by linear, logistic, and exponential respectively. VCS model with 20 years linear decay is conservative.


Keywords


Oxidation models;wood product;sengon

Full Text:

PDF

References


Asante, P., & Armstrong, G. W. (2012). Optimal forest harvest age considering carbon sequestration in multiple carbon pools: A comparative statics analysis. Journal of Forest Economics, 18(2), 145-156.

Awaludin, A., Shahidan, S., Basuki, A., Zuki, S. S. M., & Nazri, F. M. (2018). Laminated Veneer Lumber (LVL) Sengon: An Innovative Sustainable Building Material in Indonesia. International Journal of Integrated Engineering, 10(1).

Brown, S. (1997). Estimating biomass and biomass change of tropical forests: a primer (Vol. 134): Food & Agriculture Org.

Indrajaya, Y. (2013). Penentuan daur optimal hutan tanaman sengon (Paraserianthes falcataria (L.) Nielsen) dengan metode Faustmann. Jurnal Penelitian Agroforestry, 1(1), 31-40.

Indrajaya, Y. (2016). Daur optimal hutan rakyat manglid di Kecamatan Kawalu, Tasikmalaya, Jawa Barat. In M. Siarudin, A. Sudomo, Y. Indrajaya, T. Puspitojati, & N. Mindawati (Eds.), Hutan rakyat manglid: Status riset dan pengembangan. Bogor, Indonesia: FORDA PRESS.

Indrajaya, Y. (2017). Daur optimal hutan tanaman sengon dalam proyek aforestasi: Review penelitian Suharlan et al. (1975). Jurnal Wallacea, 6(2).

Indrajaya, Y., & Siarudin, M. (2013). Daur finansial hutan rakyat jabon di Kecamatan Pakenjeng, Kabupaten Garut, Jawa Barat. Jurnal Penelitian Hutan Tanaman, 10(4).

Indrajaya, Y., & Siarudin, M. (2015). Daur tebang optimal hutan rakyat gmelina (Gmelina arborea Roxb.)di Tasikmalaya dan Banjar, Jawa Barat, Indonesia. Jurnal Penelitian Sosial Ekonomi Kehutanan, 12(2), 109-116.

IPCC. (2006). IPCC Guideline 2006 Guidelines for national green house gas inventories.

Irawanti, S., Race, D., Stewart, H., Parlinah, N., & Suka, A. P. (2017). Understanding the timber value chain in community-based forestry in Indonesia: Analysis of sengon in central Java. Journal of Sustainable Forestry, 36(8), 847-862. doi:10.1080/10549811.2017.1381029

Irawanti, S., Suka, A. P., & Ekawati, S. J. J. P. S. d. E. K. (2012). Manfaat ekonomi dan peluang pengembangan hutan rakyat sengon di Kabupaten Pati. 9(3).

Peraturan Dirjen Bina Produksi Kehutanan No P.13/VI-BPPHH/2009, tentang Rendemen Kayu Olahan Industri Primer Hasil Hutan Kayu (IPHHK), (2009).

Krisnawati, H., Adinugroho, W. C., & Imanuddin, R. (2012). Model-Model Alometrik untuk Pendugaan Biomassa Pohon pada Berbagai Tipe Ekosistem Hutan di Indonesia (Indonesia versions): wahyu catur adinugroho.

Mearns, L., Giorgi, F., Whetton, P., Pabon, D., Hulme, M., & Lal, M. (2003). Guidelines for use of climate scenarios developed from regional climate model experiments.

Miner, R. (2006). The 100-Year Method for Forecasting Carbon Sequestration in Forest Products in Use. Mitigation and Adaptation Strategies for Global Change. doi:10.1007/s11027-006-4496-3

Riyanto, H. D., & Pamungkas, B. J. T. H. T. (2010). Model pertumbuhan tegakan hutan tanaman sengon untuk pengelolaan hutan. 3(3), 113-120.

Sari, R. R., Hairiah, K., & Suyanto, S. J. J. E. P. d. A. (2018). Karakteristik Hutan Rakyat Jati dan Sengon serta Manfaat Ekonominya di Kabupaten Malang. 2(2), 129-137.

Sharma, S. K., Telfer, M., & Phua, S. T. (2013). Comparison of approaches and functions for estimating greenhouse gas emissions from long-term harvested wood products in carbon abatement projects. Greenhouse Gas Measurement and Management, 3(1-2), 64-80.

Suharlan, A., Sumarna, K., & Sudiono, J. (1975). Tabel Tegakan Sepuluh Jenis Kayu Industri. Bogor: Pusat Penelitian dan Pengembangan Hutan.

VCS. (2013). Methodology for improved forest management through extension of rotation age (IFM ERA): Ecotrust.

Zanne, A. E., Lopez-Gonzalez, G.*, C., D.A., , Ilic, J., Jansen, S., , Lewis, S. L., Miller, R. B., . . . Chave, J. (2009). Global wood density database.




DOI: https://doi.org/10.20886/jai.2019.2.2.91-102

Refbacks

  • There are currently no refbacks.




Copyright (c) 2019 Jurnal Agroforestri Indonesia

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.

Copyright Jurnal Agroforestri Indonesia

 

E=ISSN : 2655-9595

Jurnal Agoforestri Indonesia terindeks di :