Gas Rumah Kaca Pertanian Padi Sawah Di Sulawesi Utara: Emisi Dan Mitigasi Partisipatif

Authors

Assoc. Prof. Dr. Daniel S. I. Sondakh, M.T., EEECS

Synopsis

SPESIFIKASI BUKU

Harga                    : Rp 65.000

Ukuran                  : 15,5 x 23 cm

Jumlah Halaman : 129 hal

Ketebalan Buku  : 1  cm

ISBN                       : On Proses

Deskripsi Buku   : Buku ini hadir sebagai kontribusi untuk mendukung pemahaman yang lebih mendalam mengenai emisi gas rumah kaca (GRK) dari sektor pertanian padi sawah. Sektor pertanian merupakan salah satu kontributor emisi gas rumah kaca global, namun di sisi lain juga menjadi sektor yang rentan terhadap dampak perubahan iklim. Sulawesi Utara, dengan keragaman komoditas pertanian dan sistem pengelolaannya, memberikan gambaran yang menarik untuk diteliti lebih lanjut. Buku ini mengulas berbagai aspek emisi GRK di sektor pertanian, termasuk sumber utama emisi, faktor-faktor yang memengaruhi, serta strategi mitigasi yang relevan dan adaptif. Penulisan buku ini didasarkan pada hasil kajian ilmiah dan kajian lapangan yang dilakukan secara sistematis dan komprehensif. Diharapkan buku ini dapat menjadi referensi bagi para akademisi, peneliti, mahasiswa, pembuat kebijakan, dan praktisi pertanian dalam memahami dinamika GRK di sektor pertanian serta dalam merumuskan langkah-langkah mitigasi yang berbasis data dan ilmiah. Kami menyadari bahwa buku ini masih memiliki keterbatasan dan kekurangan. Oleh karena itu, kami sangat mengharapkan masukan dan saran dari para pembaca untuk penyempurnaan di masa mendatang.

 

REFERENSI :

Abbass, K., Qasim, M. Z., Song, H., Murshed, M., Mahmood, H., & Younis, I. (2022). A review of the global climate change impacts, adaptation, and sustainable mitigation measures. Environmental Science and Pollution Research, 29(28), 42539–42559. https://doi.org/10.1007/s11356-022-19718-6

Aguilera, E., Reyes-Palomo, C., Díaz-Gaona, C., Sanz-Cobena, A., Smith, P., García-Laureano, R., & Rodríguez-Estévez, V. (2021). Greenhouse gas emissions from Mediterranean agriculture: Evidence of unbalanced research efforts and knowledge gaps. Global Environmental Change, 69. https://doi.org/10.1016/j.gloenvcha.2021.102319

Akram, V., & Ali, J. (2021). Global disparities of greenhouse gas emissions in agriculture sector: Panel club convergence analysis. Environmental Science and Pollution Research. https://doi.org/10.1007/s11356-021-14786-6

Aldrian, E., Karmini, M., & Budiman. (2011). Adaptation and mitigation of climate change in Indonesia. Pusat Perubahan Iklim dan Kualitas Udara BMKG. www.bmkg.go.id

Alifian, M., Anshari, A., Riogilang, H., Sompie, O. B. A., & Jansen, T. (2022). Analisis adaptasi dan mitigasi perubahan iklim Provinsi Sulawesi Utara. TEKNO, 20(82). https://ejournal.unsrat.ac.id/v3/index.php/tekno/article/view/46314

Alvarez-Hess, P. (2019). A partial life cycle assessment of the greenhouse gas mitigation potential of feeding 3-nitrooxypropanol and nitrate to cattle. Agricultural Systems, 169, 14–23. https://doi.org/10.1016/j.agsy.2018.11.008

Amon, B., Çınar, G., Anderl, M., Dragoni, F., Kleinberger-Pierer, M., & Hörtenhuber, S. (2021). Inventory reporting of livestock emissions: The impact of the IPCC 1996 and 2006 guidelines. Environmental Research Letters, 16(7). https://doi.org/10.1088/1748-9326/ac0848

Ariani, M., Setyanto, P., & Ardiansyah, M. (2016). Biaya pengurangan (marginal abatement cost) emisi gas rumah kaca sektor pertanian di Kabupaten Grobogan dan Tanjung Jabung Timur. Jurnal Ilmu Lingkungan, 14(1), 39. https://doi.org/10.14710/jil.14.1.39-49

Arisandi, F. D., & Setyanto, P. (2019). Rendah emisi gas metana: Heritability and characteristics of rice plant. Jurnal Produksi Tanaman, 6(6), 1042–1047.

Balafoutis, A., Beck, B., Fountas, S., Vangeyte, J., Van Der Wal, T., Soto, I., Gómez-Barbero, M., Barnes, A., & Eory, V. (2017). Precision agriculture technologies contributing to GHG mitigation, productivity, and economics. Sustainability, 9(8). https://doi.org/10.3390/su9081339

Bianchi, A. (2021). Review of greenhouse gas emissions from rewetted agricultural soils. Wetlands, 41(8). https://doi.org/10.1007/s13157-021-01507-5

Chai, R., Ye, X., Ma, C., Wang, Q., Tu, R., Zhang, L., & Gao, H. (2019). GHG emissions from synthetic nitrogen manufacture and fertilization in China. Carbon Balance and Management, 14(1). https://doi.org/10.1186/s13021-019-0133-9

Chang, J., et al. (2019). Revisiting enteric methane emissions from domestic ruminants. Nature Communications, 10(1). https://doi.org/10.1038/s41467-019-11066-3

Charkovska, N. (2019). High-resolution spatial distribution of agricultural GHG emissions. Mitigation and Adaptation Strategies for Global Change, 24(6), 881–905. https://doi.org/10.1007/s11027-017-9779-3

Chataut, G., Bhatta, B., Joshi, D., Subedi, K., & Kafle, K. (2023). Greenhouse gases emission from agricultural soil: A review. Journal of Agriculture and Food Research, 11, 100533. https://doi.org/10.1016/j.jafr.2023.100533

Coderoni, S., & Esposti, R. (2018). CAP payments and agricultural GHG emissions in Italy. Science of the Total Environment, 627, 427–437. https://doi.org/10.1016/j.scitotenv.2018.01.197

da Cruz Corrêa, D. C., et al. (2021). Soil CH4, CO2, and N2O emissions under different N sources and doses. Atmosphere, 12(6). https://doi.org/10.3390/atmos12060697

Del Grosso, S. J., et al. (2022). A gap in nitrous oxide emission reporting complicates climate mitigation. PNAS, 119(31). https://doi.org/10.1073/pnas.2200354119

Destek, M. A., & Sarkodie, S. A. (2019). EKC for ecological footprint: The role of energy & finance. Science of the Total Environment, 650, 2483–2489.

Dimitrov, D. (2019). Spatial patterns of methane and N2O emissions in Alberta agriculture. Environmental Development, 32. https://doi.org/10.1016/j.envdev.2019.100461

Dorman, L. I. (2016). Space weather and cosmic ray effects. In Climate Change: Observed Impacts on Planet Earth (2nd ed.). Elsevier. https://doi.org/10.1016/B978-0-444-63524-2.00030-0

Eni Yulianingsih, Kartikawati, R., & P. S. (2018). Emisi gas rumah kaca dari berbagai varietas padi di lahan tadah hujan, 2015, 29–64.

EPA. (2020). Inventory of U.S. greenhouse gas emissions and sinks, 1990–2020. Environmental Protection Agency.

Erb, K. H., et al. (2018). Impact of forest management and grazing on global vegetation biomass. Nature, 553(7686), 73–76. https://doi.org/10.1038/nature25138

Gerber, P. J., et al. (2013). Tackling climate change through livestock: A global assessment. FAO.

Grassi, G. (2022). Carbon fluxes from land 2000–2020. Earth System Science Data, 14(10), 4643–4666. https://doi.org/10.5194/essd-14-4643-2022

Grossi, G. (2021). Greenhouse gas emissions and carbon sinks of an Italian natural park. Frontiers in Environmental Science, 9. https://doi.org/10.3389/fenvs.2021.706880

Guo, H., Su, Z., Yang, X., Xu, S., & Pan, H. (2022). GHG emissions from beef cattle based on ecological cycle model. IJERPH, 19(15). https://doi.org/10.3390/ijerph19159481

Guo, Z., & Zhang, X. (2023). Carbon reduction through agricultural green technology. Science of the Total Environment, 874, 162483.

Han, M., Zhang, B., Zhang, Y., & Guan, C. (2019). Agricultural CH4 & N2O of major economies. Journal of Cleaner Production, 210, 276–286.

Hansen, S., et al. (2019). Review of N2O sources and NO3 leaching in organic crops. Biogeosciences, 16, 2795–2819.

Haque, M. N. (2018). Dietary manipulation to mitigate methane emissions. Journal of Animal Science and Technology. https://doi.org/10.1186/s40781-018-0175-7

Havlík, P., et al. (2014). Climate change mitigation through livestock system transitions. PNAS, 111(10), 3709–3714.

Herawati, T. (2012). Refleksi sosial mitigasi emisi gas rumah kaca sektor peternakan. Wartazoa, 22(1), 35–46.

Holmberg, M. (2021). Spatial sources and sinks of GHG in landscapes. Science of the Total Environment, 781. https://doi.org/10.1016/j.scitotenv.2021.146668

IPCC. (2006). IPCC Guidelines for National Greenhouse Inventories.

Jacinthe, P. A., & Dick, W. A. (1997). Soil management and N₂O emissions. Soil & Tillage Research, 41(3–4), 221–235.

Published

December 11, 2025

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