Analysis of Value-Added Product Mapping From Shellfish Waste in Coastal Areas

  • Reiga Ritomiea Ariescy Universitas Pembangunan Nasional Veteran Jawa Timur, Surabaya, Indonesia
  • Egan Evanzha Yudha Amriel Universitas Pembangunan Nasional Veteran Jawa Timur, Surabaya, Indonesia
  • Arief Budiman Universitas Pembangunan Nasional Veteran Jawa Timur, Surabaya, Indonesia
  • Laksamana Aditya Hanif Rabbani Universitas Pembangunan Nasional Veteran Jawa Timur, Surabaya, Indonesia
Keywords: Innovation, Entrepreneurship, Shellfish Waste

Abstract

Coastal areas are one of the areas that currently have many problems, such as environmental problems and community welfare. One of the areas that has problems with these issues is Gisik Cemandi, Sedati, and Sidoarjo. One of the problems in the coastal area is the pile of shells that make the residential environment look dirty, dirty, smelly, and even become a nest for dangerous animals. The purpose of this research is to map the benefits that can be taken from shell waste so that the community can take opportunities of economic value, both as industrial activities, helping to reduce waste, and empowering coastal communities. This research uses a qualitative method with the Snowball Sampling Technique. Based on the results of the study, shell waste can be reduced to several products, namely fertilizer materials, chemical mixtures (calcium carbonate and metal adsorbents), handicrafts, animal feed mixtures, chitin-chitosan, and building material mixtures. Each of these products has its own benefits and selling value. However, this research only focuses on innovation in mapping waste products. This can be a potential opportunity for local communities to provide value to waste and improve welfare.

Downloads

Download data is not yet available.

References

A’yuni, Q., Widiyanti, A., Ulfindrayani, I. F., Prayogi, Y. R., Arif, S., & Ningsih, A. F. (2019). PEMANFAATAN LIMBAH CANGKANG KERANG SEBAGAI PAKAN TERNAK BERKUALITAS DI DESA TAMBAK CEMANDI SIDOARJO. Journal Of Science And Social Development, 62-63.

Abubakar, S., Kadir, M. A., Serosero, R. H., Subur, R., Widiyanti, S. E., Susanto, A. N., & Rina, R. (2021). Pemanfaatan limbah cangkang kerang untuk produk kerajinan tangan masyarakat pesisir. Jurnal Pengabdian Magister Pendidikan IPA, 4(4).

Aditia, R. P., Pratama, G., Munandar, A., Surilayani, D., Haryati, S., Rizky, J. A., ... & Nuryadin, D. F. E. (2023). Karakterisasi Kitosan Kombinasi Cangkang Kerang Hijau (Perna Viridis) Dan Cangkang Rajungan (Portunus Pelagicus) Asal Banten, Indonesia. Jurnal Perikanan dan Kelautan, 12(2), 173-185.

Ariescy, R. R., & Amriel, E. E. Y. (2019). Pengaruh Iklan Hijau Dan Kesadaran Lingkungan Terhadap Minat Beli Dan Keputusan Pembelian Air Mineral Merek Ades Di Kabupaten Jember. Jurnal Mebis, 4(2), 142-149.

Asep, Awaludin, Prihanto., Rahmi, Nurdiani., Jauharotul, Afifah. (2024). 1. Potential Application of Chitosan from Fishery Waste. doi: 10.9734/bpi/cicms/v4/6636e

Azzahro, U. L., & Broto, W. (2021). Pemanfaatan limbah cangkang kerang dara sebagai katalis CAO pada pembuatan biodiesel minyak goreng bekas. Jurnal Sosial Teknologi, 1(6), 499-507.

Bojoaga, A. And Petrisor, I. (2013), “The Effects Of Business Model Innovation: An Exploratory Research”, Managerial Challenges Of The Contemporary Society. Proceedings, Vol. 5, Pp. 38–43.

Craig, W., Hargis., Irvin, Chen., Martin, Devenney., Miguel, Fernandez., Ryan, J., Gilliam., Ryan, Thatcher. (2021). 1. Calcium Carbonate Cement: A Carbon Capture, Utilization, and Storage (CCUS) Technique. Materials, doi: 10.3390/MA14112709

Daud, Z., Detho, A., Rosli, M. A., Abubakar, M. H., Samo, K. A., Rais, N. F. M., ... & Tajarudin, H. A. (2020). Ammoniacal nitrogen and COD removal from stabilized landfill leachate using granular activated carbon and green mussel (Perna viridis) shell powder as a composite adsorbent. Desalination Water Treat, 192, 111-117.

Diego, Quiroga., C., Coy-Barrera. (2024). 4. Use of Chitosan as a Precursor for Multiple Applications in Medicinal Chemistry: Recent Significant Contributions.. Mini-reviews in Medicinal Chemistry, doi: 10.2174/0113895575275799240306105615

Fatma, Zohra, Melais., Kamer, Dorbani., Nourredine, Arabi., Dajmel, Achoura. (2023). (4) The Use Of Marine Seashells As Aggregates In Pervious Concretes. Cement Wapno Beton, Doi: 10.32047/Cwb.2023.28.2.2

Firdaus, F. E., Purnamasari, I., & Gunatama, P. (2018). Chitin And Chitosan From Green Shell (Perna Viridis): Utilization Fisheries Wastes From Traditional Market In Jakarta. In MATEC Web Of Conferences (Vol. 248, P. 04002). EDP Sciences.

Fitriah, E., Maryuningsih, Y., & Roviati, E. (2018, February). Pemanfaatan daging dan cangkang kerang hijau (Perna viridis) sebagai bahan olahan pangan tinggi kalsium. In Prosiding University Research Colloquium (pp. 412-423).

Freudenreich, B., Lüdeke‐Freund, F., & Schaltegger, S. (2019). Perspektif Teori Pemangku Kepentingan Tentang Model Bisnis—Penciptaan Nilai Untuk Keberlanjutan. Jurnal Etika Bisnis. Online Pertama 08 Februari 2019. Https://Doi.Org/10.1007/S10551‐019‐04112‐Z

Gita, P. (2019). Perbandingan Kuat Tekan Paving Block Ramah Lingkungan Berbasis Limbah Botol Plastik Kemasan Air Mineral dengan Limbah Cangkang Kerang dan Limbah Botol Kaca Sebagai Bahan Subsitusi Terhadap Semen. Construction and Material Journal, 1(1), 21-27.

Habsy, B. A. (2017). Seni Memehami Penelitian Kuliatatif Dalam Bimbingan Dan. Jurnal Konseling Andi Matappa, 92-93.

Herrera, M. E. B. (2016). Innovation For Impact: Business Innovation For Inclusive Growth. Journal Of Business Research, 69(5), 1725-1730.

Ismail, R., Cionita, T., Shing, W. L., Fitriyana, D. F., Siregar, J. P., Bayuseno, A. P., ... & Endot, N. A. (2022). Synthesis and characterization of calcium carbonate obtained from green mussel and crab shells as a biomaterials candidate. Materials, 15(16), 5712.

Ismail, R., Fitriyana, D. F., Santosa, Y. I., Nugroho, S., Hakim, A. J., Al Mulqi, M. S., ... & Bayuseno, A. P. (2021). The Potential Use Of Green Mussel (Perna Viridis) Shells For Synthetic Calcium Carbonate Polymorphs In Biomaterials. Journal Of Crystal Growth, 572, 126282.

Jesús, Rodríguez-Sánchez., Barbara, Myszka., Aldo, R., Boccaccini., Dag, Kristian, Dysthe. (2019). 3. Setting behavior and bioactivity assessment of calcium carbonate cements. Journal of the American Ceramic Society, doi: 10.1111/JACE.16593

Johnson, Olaleye, Oladele. (2023). 2. Utilization of Chitosan for Gene Delivery. doi: 10.1002/9781394175635.ch8

Kurniasih, D., Rahmat, M. B., Handoko, C. R., & Arfianto, A. Z. (2017, December). Pembuatan pakan ternak dari limbah cangkang kerang di Desa Bulak Kenjeran Surabaya. In Seminar Master PPNS (Vol. 2, No. 1, pp. 159-164).

L., Caroscio., Beatrice, De, Pascale., P., Tataranni., C., Chiavetta., C., Lantieri., A., Bonoli. (2024). (2) Preliminary Study On The Application Of Waste Bivalve Shells As Biofiller For The Production Of Asphalt Concrete. Cleaner Engineering And Technology, Doi: 10.1016/J.Clet.2024.100743

Liming, Yuan. (2018). 3. Scallop shell organic fertilizer, preparation method, and application thereof.

Lüdeke‐Freund, F. (2020). Sustainable Entrepreneurship, Innovation, And Business Models: Integrative Framework And Propositions For Future Research. Business Strategy And The Environment, 29(2), 665-681.

M.M.H., Al, Omari., Iyad, Rashid., Nidal, A., Qinna., A., M., Y., Jaber., Adnan, A., Badwan. (2016). 2. Chapter Two - Calcium Carbonate. Profiles of Drug Substances, Excipients and Related Methodology, doi: 10.1016/BS.PODRM.2015.11.003

Maryam, Mohammad., Rabiatul, Adawiyah, Abdul, Wahab., Mazlini, Mazlan., Nur, Nisa, Syuhaidah, Mohamad, Fazil., Nur, Suraya, Hanim, Ibrahim., Uswatul, Najiha, Muhamad, Nizam., Ahmad, Humaidi, Abu, Hanifah., Mohd, Hafiz, Mohd, Zaid. (2022). (3) Physical And Mechanical Properties Of Fired Industrial Waste-Clay Bricks From Clam Shells And Soda Lime Silica Glass. Materials Today: Proceedings, Doi: 10.1016/J.Matpr.2022.10.275

Murphy, J. N., Schneider, C. M., Hawboldt, K., & Kerton, F. M. (2020). Hard to soft: Biogenic absorbent sponge-like material from waste mussel shells. Matter, 3(6), 2029-2041.

Musapana, S., & Amalia, I. R. (2020). Kerajinan limbah cangkang kerang sebagai alternatif pembuatan bros ramah lingkungan Tambakrejo Semarang. ABDI: Jurnal Pengabdian dan Pemberdayaan Masyarakat, 2(1), 58-66.

Nika, J. W., Anisah, & Musalamah, S. (2019). Pemanfaatan Limbah Cangkang Kerang Hijau Dengan Variasi Suhu Pembakaran Sebagai Bahan Pengganti Sebagian Semen Pada Pembuatan Beton. Jurnal Teknik Sipil, Vol. Xiv No. 1, 11.

Nimeet, Desai., Dhwani, Rana., Sagar, Salave., Raghav, Gupta., Pranav, V., Patel., Bharathi, Karunakaran., Amit, Sharma., Jyotsnendu, Giri., Derajram, M., Benival., Nagavendra, Kommineni. (2023). 5. Chitosan: A Potential Biopolymer in Drug Delivery and Biomedical Applications. Pharmaceutics, doi: 10.3390/pharmaceutics15041313

Nisa, F., Astuti, K. D., Maryanih, A., Taqila, A. S., Noviyanti, N., & Affanti, C. C. (2021).Pemanfaatan Limbah Cangkang Kerang Hijau Sebagai Kerupuk Kemplang Dalam Upaya Peningkatan Kesejahteraan Masyarakat Desa Domas Kecamatan Pontang Provinsi Banten. Jurnal Abdimas Indonesia, 104-106.

Poliana, Bellei., Isabel, Torres., Runar, Gjerp, Solstad., Inês, Flores-Colen. (2023). (2) Potential Use Of Oyster Shell Waste In The Composition Of Construction Composites: A Review. Buildings, Doi: 10.3390/Buildings13061546

Preksha, Fadia., Simona, Tyagi., Stuti, Bhagat., Abhishek, Nair., Pooja, Panchal., Harsh, Dave., Sadev, Dang., Sanjay, Singh. (2021). 5. Calcium carbonate nano- and microparticles: synthesis methods and biological applications. doi: 10.1007/S13205-021-02995-2

Prihanto, A., Muryanto, S., Ismail, R., Jamari, J., & Bayuseno, A. P. (2024). Practical insights into the recycling of green mussel shells (Perna Viridis) for the production of precipitated calcium carbonate. Environmental Technology, 45(2), 235-245.

Qiang, Wang., Wenhao, Gao., Zhiming, Wang., X., Lyu. (2022). (7) Effect Of Clam Shell From Kitchen Waste On The Synthesis, Performance, And Hydration Of Cementitious Clinker. Construction And Building Materials, Doi: 10.1016/J.Conbuildmat.2022.126588

Rahman, N. A. A., Said, M. I. M., & Azman, S. (2017). Carbonized green mussel shell as heavy metal removal. Malaysian Journal of Civil Engineering, 29(1), 56-68.

Roby, Tan., Febriani, Fajar, Wati., Mashita, Ayuni. (2023). 1. Manajemen proyek produksi pupuk organik dari kerang darah. Serat Acitya, doi: 10.56444/sa.v11i2.824

Rosanna, Leone., Adriana, Calà., M.N., Capela., Simona, Colajanni., Tiziana, Campisi., Manfredi, Saeli. (2023). (1) Recycling Mussel Shells As Secondary Sources In Green Construction Materials: A Preliminary Assessment. Sustainability, Doi: 10.3390/Su15043547

Santás-Miguel, V., Campillo-Cora, C., Núñez-Delgado, A., Fernández-Calviño, D., & Arias-Estévez, M. (2022). Utilization Of Mussel Shell To Remediate Soils Polluted With Heavy Metals. Biomass-Derived Materials For Environmental Applications, 221-242.

Sartika, I. D. (2016). Isolasi dan karakterisasi kitosan dari cangkang rajungan (Portunus pelagicus). Jurnal Biosains Pascasarjana, 18(2), 98-111.

Setyoningrum, A., & Saefudina, A. (2024). Pemanfaatan Limbah Cangkang Kerang sebagai Bahan Campuran dalam Pembuatan Paving Block (Literature Review). Jurnal TESLINK: Teknik Sipil dan Lingkungan, 6(1), 54-61.

Sofia, Adibah, Jasni., K., Muthusamy., Hanis, Nadiah, Ruslan., Hussein, Hamada., Ezahtul, Shahreen, Ab, Wahab. (2024). (1) Use Of Seashell As Cement Replacement In Construction Material: A Review. Doi: 10.15282/Construction.V4i1.10001

Subekti, S. (2020). Kawasan Konservasi Maritim Dan SDG 14: Prospek Teluk Benoa Bali. Jurnal Ilmiah Kajian Antropologi.

Sugiyono, 2015. Quantitative, Qualitative, and R&D Research Methods. Bandung: Alfabeta

Sung, Yun, Jung., Heamin, Hwang., Han-Saem, Jo., Somang, Choi., Hak, Jun, Kim., Sungeun, Kim., Kyeongsoon, Park. (2021). 5. Tannylated Calcium Carbonate Materials with Antacid, Anti-Inflammatory, and Antioxidant Effects. International Journal of Molecular Sciences, doi: 10.3390/IJMS22094614

Syafiadi, Rizki, Abdillah., Sahrul, Zulfikar., Y., Prima. (2023). (4) Pengaruh Limbah Cangkang Kerang Sebagai Substitusi Agregat Halus Terhadap Kuat Tekan Beton. Doi: 10.61488/Sipilkrisna.V9i1.250

Trott, P. (2017). Innovation Management And New Product Development.

Wen-Cheng, Shao., Chao-Ling, Lu., Yucai, Dong., Jiawei, Chen., Yu-Ting, Chiang. (2024).(3) Research On Innovative Green Building Materials From Waste Oyster Shells Into Foamed Heat-Insulating Bricks. Cleaner Materials, Doi: 10.1016/J.Clema.2024.100222

Yani, I., & Erawati, D. (2021). Pemanfataan Limbah Kerang; Solusi Alternatif Income Rumah Tangga (Analisis Fenomenologi Husserl). Proceedings, 320.

Published
2025-05-06
How to Cite
Ariescy, R., Amriel, E., Budiman, A., & Rabbani, L. (2025). Analysis of Value-Added Product Mapping From Shellfish Waste in Coastal Areas. Indonesian Interdisciplinary Journal of Sharia Economics (IIJSE), 8(2), 5458-5473. https://doi.org/10.31538/iijse.v8i2.6158