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May 15, 20260 citationsOpen Access

Sustainable Rice Production Using Green Manufacturing to Reduce the Risk of Flooding

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VAVina Eka AristyaTMTri MartiniAOAmarulla Octavian

Key Points

  • The study aims to improve sustainable rice production by integrating green manufacturing practices to reduce flood risks and enhance resilience.
  • On-farm research conducted in Semarang covering 50 hectares of rice fields affected by floods.
  • Multi-aspect sustainability analysis methodology used to assess the sustainability index of rice farming practices.
  • Demonstration of high-salinity-resistant rice varieties, including Biosalin1 and Biosalin2, to combat salinity issues.
  • Average sustainability index of rice production recorded at 67.65, indicating moderate sustainability status.
  • Gap analysis showed priority improvement areas: environmental aspects (9.67), economic aspects (8.33), and social institutions (6.54).
  • Salinity-tolerant rice varieties successfully reduced flooding impacts with noted efficiency in mitigating seawater rising issues.

Abstract

Sustainable rice production is critical, especially in flood-prone areas, as it addresses food security while minimizing environmental impacts. The soil's elevated salt content is one of the primary cultivation issues in rice fields along the coast, which can lead to a decrease in yield and can even result in crop failure. The study aimed to integrate green manufacturing practices, which can significantly reduce flood risk and increase resilience in rice farming. The on-farm research was on the north coast of Semarang, a stretch of rice fields affected by floods, covering an area of 50 hectares. The multi-aspect sustainability analysis methodology complements the assessment results to obtain a production system with a sustainability index. The average value of total sustainability was 67.65, which means that rice farming in Semarang has a fairly sustainable status. Factors prioritized for improvement to improve the sustainability status of rice cultivation were environmental aspects (gap 9.67), economic aspects (gap 8.33), and social institutions (gap 6.54). The leverage factors of rice farming in the socio-institutional aspect were farmer age (sensitivity max 0.33 and sensitivity value 0.67) and rice farming experience (sensitivity max 0.20 and sensitivity value 0.60). Demonstration plot of high-salinity-resistant rice varieties using Biosalin1 and Biosalin2. Planting salinity-tolerant varieties was the most efficient way to reduce the negative impact of flooding caused by seawater rising to the ground level. Green manufacturing practices include low-external-input and sustainable agriculture, which utilize organic fertilizers and integrated pest management. The practice of using agricultural equipment that uses alternative fuels from plastic waste can save energy and lower emissions to minimize the carbon footprint of sustainable rice production.

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Cite This Study

Aristya et al. (2026) studied this question.

synapsesocial.com/papers/6a06b83de7dec685947aaca1https://doi.org/10.5109/7429617
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Exploring Flooding Challenges, Causes, and Mitigation Strategies in Rice2026
  2. 2Implementation of Regenerative Technologies for Sustainable and Net-Zero Rice Farming in Adapting to Climate Change in Indonesian Coastal Areas2025
  3. 3Current Status of Studying on Physiological Mechanisms of Rice Response to Flooding Stress and Flooding-Resistant Cultivation Regulation2025 · 8 citations
  4. 4Transforming rice production constraints into opportunities: Coordinated innovation for sustainable agrosystems in Asia2026
  5. 5Enhancing Rice Productivity and Ensuring Food Security in Indonesia Through The Adoption of Innovative Technologies in Tidal Swamp Rice Farming2024 · 1 citations