Blue Geochemistry: Sustainable Development in Libya Based on Blue Carbon
- المؤلفون
-
-
Osama Rahil Shaltami
1Department of Earth Sciences, Faculty of Science, Benghazi University, Libya & 2Libyan Centre for Sustainable Development ResearchesAuthor -
Hamza Al Matoni
3Department of Engineering Geology, Faculty of Engineering, University of Bright Star, LibyaAuthor -
Mustafa A. Ben Hkoma
Libyan Centre for Sustainable Development Researches, & 4Libyan Centre for Studies and Researches of Sciences and Environment Technology, Middle Zone Branch, Zliten, LibyaAuthor
-
- الكلمات المفتاحية:
- Blue Geochemistry, Blue Carbon, Sustainable Development, Climate Change, Libya
- الملخص
-
The authors coined the term "blue geochemistry" in this article. Blue geochemistry is the study of blue carbon ecosystems. Consequently, one may consider blue geochemistry to be a branch of green geochemistry. Blue economy and blue carbon are related ideas that focused on the sustainable utilization of coastal and marine environments. Seagrasses, salt marshes, and mangroves are ecosystems that store and collect carbon, which is known as blue carbon. Meanwhile, the blue economy includes sustainable development and economic activities associated with the coasts and seas. This study's objective is to assess Libya's blue carbon using the BCDI and provide recommendations for the country's sustainable future development. Salt marshes and seagrasses are widespread in the Libyan coast, while mangroves cannot grow there naturally due to unsuitable conditions. These ecosystems are threatened by a variety of issues, including pollution, habitat degradation, and unsustainable coastal expansion. Libya consistently has low BCDI scores due to poor management and preservation of blue carbon ecosystems, and serious climate change problems.
- التنزيلات
-
تنزيل البيانات ليس متاحًا بعد.
- المراجع
-
Ahmed, N., Cheung, W.W.L., Thompson, S. and Glaser, M. (2017): Solutions to blue carbon emissions: Shrimp cultivation, mangrove deforestation and climate change in coastal Bangladesh. Marine Policy; 82: 68-75.
Almasri, T.A. and Kafu, R.M. (2021): Marine fungi associated with the sea grass Posidonia oceanica (L.) Delil from East coast of Libya. Al academia journal for Basic and Applied Sciences (AJBAS); 3(2): 1-4.
Benani, N., Yang, P., Miwornunyuie, N., Wang, T., Wu, D., Wang, F., Chen, J., Lv, S. and Mao, G. (2025): Bridging blue carbon and carbon markets: An interdisciplinary analysis of research and technology for climate mitigation. Ocean and Coastal Management; 269: 107808.
Dahl, M., Lavery, P.S., Mazarrasa, I., Samper-Villarreal, J., Adame, M.F., Crooks, S., Duarte, C.M., Friess, D.A., Krause-Jensen, D., Leiva-Dueñas, C., Lovelock, C.E., Macreadie, P.I., Masqué, P., Mateo, M.A. and Serrano, O. (2025): Recommendations for strengthening blue carbonscience. One Earth; 8(3): 101175.
Feng, C., Ye, G., Zeng, J., Zeng, J., Jiang, Q., He, L., Zhang, Y. and Xu, Z. (2023): Sustainably developing global blue carbon for climate change mitigation and economic benefits through international cooperation. Nature Communications; 14: 6144.
Grey, A., Costeira, R., Lorenzo, E., O’Kane, S., McCaul, M.V., McCarthy, T., Jordan, S.F., Allen, C.C.R. and Kelleher, B.P. (2023): Geochemical properties of blue carbon sediments through an elevation gradient: study of an anthropogenically impacted coastal lagoon. Biogeochemistry; 162: 381-408.
Guedri, S., Yahiaoui, I., Chakour, S.C., Douaoui, A., Djabi, A.H., Ziane, A. and Zhang, Q. (2025): Balancing ecology and economy: The role of Pescatourism in advancing sustainable blue economy strategy in Algeria's coastal regions. Marine Pollution Bulletin; 218: 118096.
Howard, J., Sutton-Grier, A., Herr, D., Kleypas, J., Landis, E., Mcleod, E., Pidgeon, E. and Simpson, S. (2017): Clarifying the role of coastal and marine systems in climate mitigation. Frontiers in Ecology and the Environment; 15(1): 42-50.
Jiao, N., Wang, H., Xu, G. and Aricò, S. (2018): Blue carbon on the rise: Challenges and opportunities. National Science Review; 5(4): 464-468.
Katila, J., Ala-Rämi, K., Repka, S., Rendon, E. and Törrönen, J. (2019): Defining and quantifying the sea-based economy to support regional blue growth strategies – Case Gulf of Bothnia. Marine Policy; 100: 215-225.
Lovelock, C.E. and Reef, R. (2020): Variable impacts of climate change on blue carbon. One Earth; 3(2): 195-211.
Niner, H.J., Barut, N.C., Baum, T., Diz, D., del Pozo , D.L., Laing, S., Lancaster, A.M.S.N., McQuaid, K.A., Mendo, T., Morgera, E., Maharaj, P.N., Okafor-Yarwood, I., Ortega-Cisneros, K., Warikandwa, T.V. and Rees, S. (2022): Issues of context, capacity and scale: Essential conditions and missing links for a sustainable blue economy. Environmental Science and Policy; 130: 25-35.
Pergent, G., Djellouli, A., Hamza, A.A., Ettayeb, K.S., El Mansouri, A.A., Talha, F.M., Hamza, M.A., Pergent-Martini, C. and Platini, F. (2002): Characterization of the benthic vegetation in the Farwà Lagoon (Libya). Journal of Coastal Conservation; 8: 119-126.
Ritchie, H. and Roser, M. (2024): CO₂ emissions: How much CO₂ does the world emit? Which countries emit the most? (available at https://ourworldindata.org/co2-emissions).
Rodríguez-Rodríguez, D., Abdul Malak, D., Soukissian, T. and Sánchez-Espinosa, A. (2016): Achieving blue growth through maritime spatial planning: Offshore wind energy optimization and biodiversity conservation in Spain. Marine Policy; 73: 8-14.
Thomas, S. (2014): Blue carbon: Knowledge gaps, critical issues, and novel approaches. Ecological Economics; 107: 22-38.
Shaltami, O.R. (2022): Green geochemistry: Principles and applications. 1st edition, Amazon Kindle Direct Publishing (KDP); 154p.
Shaltami, O.R., Errishi, H. and Fares, F.F. (2017): Environmental geochemistry of the surface sediments of Sabkhat Daryana, NE Libya. Science and its applications; 5(1): 30-35.
Shaltami, O.R., Fares, F.F., El-Fallah, O.A., EL Oshebi, F.M., Errishi, H., and El-Ekhfifi, S.S. (2021): Oil pollution in the Port of Benghazi. Global Environmental Development and Sustainability: Research, Engineering and Management, Óbuda University, Budapest, Hungary, Proceeding Book; pp. 241-249.
Shaltami, O.R., Fares, F.F, EL Oshebi, F.M., Errishi, H., Aljazwi, M.S., Favaloro, R.R. and Rhouma, A.A. (2020): Geochemistry of surface coastal water in Al-Sabri area, Benghazi city, Libya. Libyan Journal of Ecological and Environmental Sciences and Technology (LJEEST); 2(2): 21-25.
Smart, M., Essghaier, M.F., Etayeb, K., Hamza, A., Azafzaf, H., Baccetti, N., Du Rau, P.D. and Dlensi, H. (2006): Wetlands and wintering waterbirds in Libya, January 2005 and 2006. Wildfowl; 56: 172-191.
United Nations Environment Programme (2020): Blue Carbon—Nationally Determined Contributions Inventory. Appendix to: Coastal Blue Carbon Ecosystems: Opportunities for Nationally Determined Contributions (available at https://www.unep.org/ndc/resources/report/bluecarbon- nationally-determined-contributions-inventory-appendixcoastal- blue).
Winters, G., Nguyen, H.M. and Kaminer, M. (2025): Expansion of Halophila stipulacea in parallel with declines of native seagrasses in the eastern Mediterranean Sea. Aquatic Botany; 196: 103829.
- التنزيلات
- منشور
- 2025-08-21
- إصدار
- مجلد 4 عدد 2 (2025)
- القسم
- Original Articles
- الرخصة
-
الحقوق الفكرية (c) 2025 Osama Rahil Shaltami, Hamza Al Matoni, Mustafa A. Ben Hkoma (Author)

هذا العمل مرخص بموجب Creative Commons Attribution-NonCommercial 4.0 International License.
كيفية الاقتباس
المؤلفات المشابهة
- Osama Rahil Shaltami Rahil Shaltami, Husam Uldin Hamid Alghamari, Mustafa A. Ben Hkoma, Elemental Geochemistry of the Upper Cretaceous Rakb Formation in Well C3-65, Sarir Field, Sirte Basin, NE Libya , Derna Academy Journal for Applied Sciences: مجلد 4 عدد 1 (2025)
- Ebtesam Moftah Alashger, Khansa Mohammad Khalil Elsheikh, Najah Yousef Alfatory, Salwa Muftah Eljamay , Molecular Variability Among Fusarium Oxysporum Isolates Infecting Plants in Different Agricultural Environments in Libya , Derna Academy Journal for Applied Sciences: مجلد 3 عدد 2 (2025)
- جورجيت جورج جريديني, بلال رافع عبد العاطي, فضل الله رافع عبد العاطي, مفتاح جمعة مفتاح علي, تحليل مقارن لدور الفناء الداخلي في تعزيز الاستدامة البيئية: دراسة حالة بين المسكن التقليدي والحديث في مدينة درنة، ليبيا , Derna Academy Journal for Applied Sciences: مجلد 3 عدد 2 (2025)
- عبدالرازق محمد موسي الميهوب, علي مفتاح عبدالرحيم سعد, عبدالخالق دم عبدالجليل موسيأ, التوسع العمراني العشوائي بمدينة درنه شمال شرق ليبيا وأثره على التخطيط الحضري , Derna Academy Journal for Applied Sciences: مجلد 1 عدد 1 (2023)
- Adel A S banana, Reemah Mohammed Abdullah Sallam, Mohamed Abuajelah Kassab, Physicochemical and Biological Evaluation of Biotreatment Processes for Olive Mill Wastewater (OMWW) in Western Libya , Derna Academy Journal for Applied Sciences: مجلد 3 عدد 2 (2025)
- Khaled S Almansori, Osama M EL-barasi, Enas N Alhsady, Shaima F Bader , Manar E Elzawi , Soliman A Habeel , Mawada j Elkoom , Tomana M Alakary, Isolation and Identification of Bacterial Types from Dinar Currency Coins Collected from Various Commercial Shops , Derna Academy Journal for Applied Sciences: مجلد 1 عدد 2 (2023)
- Tawfg Omar Abdlmola, Ali Guma Azbida, Esra Mosbah, Hana Fathi, Retag Nasser, Wedad Daw, Prevalence of Thyroid Disorders in Diabetic Patients in Tarhuna area , Derna Academy Journal for Applied Sciences: مجلد 1 عدد 2 (2023)
- Araf Taher Almasri1, Mohamed Fargani, Moutaz Alarida, Review of a Solar Thermal Power Plant and its Potential Use in Libya , Derna Academy Journal for Applied Sciences: مجلد 2 عدد 2 (2024)
- Mohamed M. Elzahaf, A New Conceptual Model for Assessing Risk Factors in Software Development Projects , Derna Academy Journal for Applied Sciences: مجلد 2 عدد 1 (2024)
- محمد صالح رفعت سعد, عبدالرازق محمد موسى الميهوب, سمير سعيد ابراهيم امدورد, العزل الحراري في المباني المعدة للإخلاء في حالة الكوارث الطبيعية في منطقة الجبل الاخضر , Derna Academy Journal for Applied Sciences: مجلد 2 عدد 2 (2024)
يمكنك أيضاً إبدأ بحثاً متقدماً عن المشابهات لهذا المؤلَّف.



