Dangir-Tech: Inovasi Mekanisasi Pertanian untuk Meningkatkan Efisiensi Petani Jagung pada Proses Pendangiran

Penulis

  • Widiyanti Widiyanti Universitas Negeri Malang, Indonesia
  • Mardji Mardji Universitas Negeri Malang, Indonesia
  • Erwin Komara Mindarta Universitas Negeri Malang, Indonesia
  • Muhammad Idris Effendi Universitas Negeri Malang, Indonesia
  • Fahru Riza Universitas Negeri Malang, Indonesia
  • Lailatul Nurjanah Universitas Negeri Malang, Indonesia

DOI:

https://doi.org/10.70609/i-com.v5i2.7134

Kata Kunci:

Mekanisasi, Pertanian Jagung, Teknologi Tepat Guna

Abstrak

Permasalahan pendangiran manual yang masih dilakukan oleh petani jagung di Desa Wonosari berdampak pada rendahnya efisiensi kerja dan tingginya risiko kesehatan kerja. Pengabdian ini bertujuan untuk menerapkan teknologi tepat guna berupa mesin Dangir-Tech sebagai solusi mekanisasi pendangiran. Metode pelaksanaan meliputi survei lokasi, perancangan dan pengembangan alat, pelatihan operasional, serta monitoring dan evaluasi. Hasil kegiatan menunjukkan bahwa Dangir-Tech mampu meningkatkan efisiensi waktu kerja lebih dari 40%, mengurangi kelelahan fisik, serta diterima baik oleh mitra petani. Evaluasi kepuasan menunjukkan lebih dari 90% responden berada dalam kategori puas hingga sangat puas. Penerapan teknologi ini dinilai berhasil mendorong perubahan praktik kerja yang lebih produktif dan sehat. Hasil ini menunjukkan pentingnya inovasi lokal berbasis kebutuhan petani dalam mendukung modernisasi pertanian desa.

Referensi

Adhikari, R., Wang, T., Jin, H., Ulrich‐Schad, J., Sieverding, H., & Clay, D. (2023). Farmer perceived challenges toward conservation practice usage in the margins of the corn belt, usa. Renewable Agriculture and Food Systems, 38. https://doi.org/10.1017/s1742170523000042

Elizabeth, M., Olutumise, A., Akinrinola, O., Omosehin, O., Aturamu, O., & Hosu, Y. (2024). Impacts of capital formation and investment sources on total factor productivity: the example of nigeria’s agriculture. Diyala Agricultural Sciences Journal, 16(1), 106-117. https://doi.org/10.52951/dasj.24160109

Gugissa, D., Abro, Z., & Tefera, T. (2022). Achieving a climate-change resilient farming system through push–pull technology: evidence from maize farming systems in ethiopia. Sustainability, 14(5), 2648. https://doi.org/10.3390/su14052648

Howard, M., Ahmed, S., Lachapelle, P., & Schure, M. (2020). Farmer and rancher perceptions of climate change and their relationships with mental health.. Rural Mental Health, 44(2), 87-95. https://doi.org/10.1037/rmh0000131

Huang, Y., Ren, W., Lindsey, L., Wang, L., Hui, D., Tao, B., … & Tian, H. (2024). No-tillage farming enhances widespread nitrate leaching in the us midwest. Environmental Research Letters, 19(10), 104062. https://doi.org/10.1088/1748-9326/ad751d

Jukić, Ž., Mason, S., Babić, M., Vitázek, I., Pliestić, S., Srečec, S., … & Habuš, M. (2024). Factors influencing maize kernel breakage – a review. Journal of Central European Agriculture, 25(2), 401-415. https://doi.org/10.5513/jcea01/25.2.4250

Li, X. and Guan, R. (2023). How does agricultural mechanization service affect agricultural green transformation in china?. International Journal of Environmental Research and Public Health, 20(2), 1655. https://doi.org/10.3390/ijerph20021655

Mahato, D., Dutta, D., Maity, L., Biswas, P., Mahato, B., Ghosh, C., … & Patra, S. (2020). Response of plant spacing and balanced fertilization on growth and yield of maize (zea mays l.) in red laterite zone of purulia district of west bengal. Journal of Experimental Agriculture International, 1-6. https://doi.org/10.9734/jeai/2020/v42i630529

Paudel, G., Gartaula, H., Rahut, D., Justice, S., Krupnik, T., & McDonald, A. (2023). The contributions of scale-appropriate farm mechanization to hunger and poverty reduction: evidence from smallholder systems in nepal. Journal of Economics and Development, 25(1), 37-61. https://doi.org/10.1108/jed-10-2022-0201

Quan, X. and Doluschitz, R. (2021). Factors influencing the adoption of agricultural machinery by chinese maize farmers. Agriculture, 11(11), 1090. https://doi.org/10.3390/agriculture11111090

Rinaldi, J., Mahaputra, I., Arya, N., Elisabeth, D., & Silitonga, T. (2023). Income differences and feasibility of maize farming with different harvest times on dry land in bali. Iop Conference Series Earth and Environmental Science, 1153(1), 012013. https://doi.org/10.1088/1755-1315/1153/1/012013

Sun, M., Wan, Y., Wang, S., Liang, J., Hu, H., & Cheng, L. (2024). Analysis of the impact of agricultural mechanization on the economic efficiency of maize production. Sustainability, 16(13), 5522. https://doi.org/10.3390/su16135522

Tufa, A., Alene, A., Ngoma, H., Marenya, P., Manda, J., Matin, M., … & Chikoye, D. (2023). Willingness to pay for agricultural mechanization services by smallholder farmers in malawi. Agribusiness, 40(1), 248-276. https://doi.org/10.1002/agr.21841

Yan, F., Sun, X., Chen, S., & Dai, G. (2024). Does agricultural mechanization improve agricultural environmental efficiency?. Frontiers in Environmental Science, 11. https://doi.org/10.3389/fenvs.2023.1344903

Yoto, Nurhadi, D. ., Suyetno, A., Mawangi, P. A. N. ., Paryono, P., Effendi, M. I. ., & Maula, P. I. . (2024). Multipurpose Machine Design Innovation to Increase Economic Efficiency and Work Productivity of Farmers in Tulungagung Regency. G-Tech: Jurnal Teknologi Terapan, 8(4), 2522–2531. https://doi.org/10.70609/gtech.v8i4.5181

Yoto, Y., Nurhadi, D. ., Suyetno, A., Mawangi, P. A. N. ., Effendi, M. I., & Maula, P. I. . (2024). Pemanfaatan TTG Mesin Grinder dalam Proses Pengolahan Jagung Menjadi Menir untuk Meningkatkan Nilai Ekonomi Hasil Pertanian dan Peternakan Unggas. I-Com: Indonesian Community Journal, 4(3), 2110–2120. https://doi.org/10.33379/icom.v4i3.5270

Zhu, Y., Deng, J., Wang, M., Tan, Y., Yao, W., & Zhang, Y. (2022). Can agricultural productive services promote agricultural environmental efficiency in china?. International Journal of Environmental Research and Public Health, 19(15), 9339. https://doi.org/10.3390/ijerph19159339

Unduhan

Diterbitkan

04-06-2025

Cara Mengutip

Dangir-Tech: Inovasi Mekanisasi Pertanian untuk Meningkatkan Efisiensi Petani Jagung pada Proses Pendangiran. (2025). I-Com: Indonesian Community Journal, 5(2), 816-827. https://doi.org/10.70609/i-com.v5i2.7134

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