Analisis Life Cycle Assessment (LCA) pada Proses Produksi Pupuk ZA II Menggunakan Metode Recipe 2016

Authors

  • Saffira Arlisa Devi UPN Veteran Jawa Timur
  • Mohammad Mirwan UPN Veteran Jawa Timur

DOI:

https://doi.org/10.55123/insologi.v2i3.2074

Keywords:

Environmental Pollution, Analysis, Software, ZA Fertilizer, Life Cycle Assessment (LCA)

Abstract

The operation of the fertilizer industry can cause environmental pollution, so that preventive or preventive measures are needed aimed at controlling the remaining air emissions produced and creating alternative ways of production that are environmentally friendly. In this study, the environmental impact is determined using the life cycle assessment (LCA) method, on the products and emissions produced as well as the materials used, such as raw materials, chemicals and fuels. Environmental impact assessments were carried out using an endpoint approach using the 2016 recipe method and divided into three main categories including human health, ecosystem quality and resources. In this study, SimaPro 9.4.0.2 and Open LCA 1.11.0 software are used to determine the extent of the environmental impact of the LCA process. In the LCA results, the most important moisture category in the entire ZA II fertilizer production process is resource impact with the “lost fossil” impact category, while the process unit that produces the highest impact value is drying and cooling. The effects seen in this unit are due to the presence of ammonia chemicals from dirt-repellent materials, the resulting ammonia and carbon dioxide emissions, and excessive electricity consumption. Therefore, it is necessary to provide alternative recommended repair programs. Alternative programs that can be used to minimize the impact include: reducing anti-caking doses, using transformers, and combining reducing anti-caking doses & using transformers.

Downloads

Download data is not yet available.

References

Acero, A. P., Rodríguez, C., & Changelog, A. C. (2016). LCIA methods Impact assessment methods in Life Cycle Assessment and their impact categories. http://www.openlca.org/files/openlca/Update_info_open

Aniza, E. A. (2017). Analisis Dampak Lingkungan Penggunaan Material Pada Produksi Batik Cap Menggunakan Simapro ( Studi Kasus : UKM Batik Putra Laweyan , Surakarta ). http://eprints.ums.ac.id/55542/1/NASKAH PUBLIKASI.pdf

Aprialdi, M. A., Ramadhan, M. F., Tias, R. G. A. N., & Nurlaela, R. S. (2023). Studi Literatur : Analisis Penggunaan Anti kempal (Anticacking Agent) Terhadap Karakteristik Produk Pangan Bertekstur Serbuk. Karimah Tauhid, 2(2), 394–406.

Bagaswara, M. E. A., & Yuswono, H. (2017). Analisis dan Rekayasa Proses Produksi untuk Mengendalikan Environmental Impact Menggunakan Metode LCA. Jurnal Metris, 18, 95–104. http://ojs.atmajaya.ac.id/index.php/metrisTelp.

Devia, D., Lestari, P., & Sembiring, E. (2017). Life Cycle Assessment ( Lca ) Produk Semen Portland Komposit ( Studi Kasus : PT X ) Life Cycle Assessment Of Portland Cement Composite ( Case Study : PT X ). 23, 1–10.

Fauziah, R., Prihatin, J., & Suratno. (2018). Pengaruh Pemberian Pupuk ZA pada Tanaman Murbei terhadap Kokon Ulat Sutera Alam. Bioeksperimen, 4(1), 37–41. https://doi.org/10.23917/bioeksperimen.v4i1.2802

Harahap, P., Adam, M., & Prabowo, A. (2019). Analisa Penambahan Trafo Sisip Sisi Distribusi 20 Kv Mengurangi Beban Overload dan Jatuh Teganagan Pada Trafo B1 11 Rayon Tanah Jawa Dengan Simulasi Etab 12.6.0. (Rekayasa Elektrikal Dan Energi) : Jurnal Teknik Elektro, 1(2), 62–69. https://doi.org/https://doi.org/10.30596/rele.v1i2.3002

Mahaputra, A. H., GstAgGdeEka Martiningsih, & Cokorda Javandira. (2016). Pengaruh Pemberian Pupuk Za Terhadappertumbuhan Dan Hasiltanaman SawI(Brassisca juncea L.). AGRIMETA: Jurnal Pertanian Berbasis Keseimbangan Ekosistem , 6(11), 1–5.

Petrokimia Gresik. (2019). Pupuk.

Purbaya, M., Indah Sari, T., Ayu Saputri, C., & Tama Fajriaty, M. (2011). Pengaruh Beberapa Jenis Bahan Penggumpal Lateks Dan Hubungannya Dengan Susut Bobot, Kadar Karet Kering Dan Plastisitas. Prosiding Seminar Nasional AVoER Ke-3, 351–357.

Savci, S. (2012). An Agricultural Pollutant: Chemical Fertilizer. International Journal of Environmental Science and Development, 73–80. https://doi.org/10.7763/ijesd.2012.v3.191

Supriyadi, A. (n.d.). Hubungan Pada Transformator Tiga Fasa. Forum Teknologi, 7(1), 45–52.

Wahyudi, J. (n.d.). Penerapan Life Cycle Assessment untuk Menakar Emisi Gas Rumah Kaca yang Dihasilkan dari Aktivitas Produksi Tahu.

Downloads

Published

2023-06-28

How to Cite

Saffira Arlisa Devi, & Mohammad Mirwan. (2023). Analisis Life Cycle Assessment (LCA) pada Proses Produksi Pupuk ZA II Menggunakan Metode Recipe 2016 . INSOLOGI: Jurnal Sains Dan Teknologi, 2(3), 620–632. https://doi.org/10.55123/insologi.v2i3.2074

Issue

Section

Articles