SU URUNLERI DERGISI

Scope & Guideline

Advancing Aquatic Knowledge for a Sustainable Future

Introduction

Welcome to your portal for understanding SU URUNLERI DERGISI, featuring guidelines for its aims and scope. Our guidelines cover trending and emerging topics, identifying the forefront of research. Additionally, we track declining topics, offering insights into areas experiencing reduced scholarly attention. Key highlights include highly cited topics and recently published papers, curated within these guidelines to assist you in navigating influential academic dialogues.
LanguageMulti-Language
ISSN1300-1590
PublisherEGE UNIV, FAC FISHERIES
Support Open AccessNo
Country-
Type-
Converge-
AbbreviationSU URUNLERI DERGISI / Su Urunleri Dergisi
Frequency4 issues/year
Time To First Decision-
Time To Acceptance-
Acceptance Rate-
Home Page-
AddressEGE UNIV, FAC FISHERIES, BORNOVA-IZMIR 35100, Turkiye

Aims and Scopes

The journal 'SU URUNLERI DERGISI' focuses on a wide range of aquatic sciences, particularly relating to marine biology, fisheries, and environmental health. Its aim is to contribute to the understanding of aquatic ecosystems and promote sustainable practices in aquaculture and marine resource management.
  1. Aquatic Ecosystem Health:
    Research on the impacts of environmental changes and pollutants (like heavy metals and microplastics) on aquatic life, emphasizing the health of marine ecosystems.
  2. Biodiversity and Species Assessment:
    Studies focused on the diversity of marine species, including new species identification, population assessments, and the effects of invasive species on native ecosystems.
  3. Aquaculture Practices and Innovations:
    Investigations into the practices and innovations in aquaculture, including feed optimization, growth performance studies, and welfare assessments of cultured species.
  4. Environmental Monitoring and Risk Assessment:
    Monitoring environmental parameters, assessing ecological risks associated with human activities, and evaluating the effects of contaminants on aquatic organisms.
  5. Biotechnological Applications:
    Exploration of biotechnological applications in marine and freshwater contexts, including the utilization of microalgae and herbal therapeutics in aquaculture.
Recent publications in 'SU URUNLERI DERGISI' highlight emerging themes that reflect current global concerns in aquatic sciences, particularly in relation to environmental sustainability and technological advances.
  1. Impact of Environmental Contaminants:
    There is an increasing emphasis on studying the effects of pollutants such as microplastics and heavy metals on aquatic organisms, reflecting growing global awareness of environmental issues.
  2. Sustainable Aquaculture Practices:
    Research focusing on optimizing aquaculture practices for sustainability, including alternative feed sources and welfare assessments, has gained momentum as the industry seeks to reduce its ecological footprint.
  3. Ecological Risk Assessments:
    The trend towards comprehensive ecological risk assessments is emerging, with studies evaluating the health of aquatic ecosystems in relation to human impacts and climate change.
  4. Innovative Biotechnological Research:
    Emerging themes in biotechnological applications in aquaculture, such as the use of microalgae for nutrient extraction and herbal therapeutics, are becoming increasingly popular as researchers seek sustainable alternatives.
  5. Diversity and Conservation of Aquatic Species:
    A focus on biodiversity assessments and the conservation of endemic and threatened species is gaining traction, driven by the need to understand and protect aquatic ecosystems.

Declining or Waning

Over the years, certain themes within 'SU URUNLERI DERGISI' have seen a decrease in frequency, indicating a potential shift in research focus or diminishing interest in specific areas.
  1. Traditional Fisheries Management:
    Research focused on conventional fisheries management practices appears to be declining, possibly due to a shift towards more sustainable and innovative approaches in aquaculture and marine resource management.
  2. Historical Fisheries Data Analysis:
    Papers analyzing historical data of fisheries trends have become less frequent, suggesting a possible shift towards real-time data analysis and predictive modeling.
  3. Human Health Risks from Aquatic Products:
    While still relevant, studies specifically assessing human health risks from consuming aquatic products have seen a decrease, possibly overshadowed by broader environmental and ecological health concerns.

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