Refining a Nordmøre-grid bycatch reduction device for the Spencer Gulf penaeid-trawl fishery.

PLoS One

IC Independent Consulting, Cronulla, New South Wales, Australia.

Published: April 2019

Incremental refinements were made to a generic Nordmøre-grid to minimise bycatches of blue swimmer crabs Portunus armatus and giant cuttlefish Sepia apama, while maintaining catches of western king prawns Melicertus latisulcatus in the Spencer Gulf penaeid-trawl fishery. These refinements involved varying bar spaces, escape-exit areas and guiding-panel lengths, and were compared against a conventional trawl. Catches of teleosts and M. latisulcatus largely remained unaffected by the changes. Maximum reductions in P. armatus and S. apama bycatches (both ~90%) were achieved with a Nordmøre-grid comprising 38-mm bar spaces, 0.81- or 1.05-m(2) escape exits and a 2.7-m guiding panel. Catching fewer P. armatus should reduce abrasion and crushing of M. latisulcatus in the codend and so increase the value of this targeted species. While noting some unresolved operational concerns, these results demonstrate the potential improvements in selectivity in this fishery using a Nordmøre-grid, primarily by mechanical separation.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6248960PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0207117PLOS

Publication Analysis

Top Keywords

spencer gulf
8
gulf penaeid-trawl
8
penaeid-trawl fishery
8
bar spaces
8
refining nordmøre-grid
4
nordmøre-grid bycatch
4
bycatch reduction
4
reduction device
4
device spencer
4
fishery incremental
4

Similar Publications

Incorporating stressor interactions into spatially explicit cumulative impact assessments.

Ecol Appl

January 2025

School of Biological Sciences and Environment Institute, Faculty of Sciences, Engineering and Technology, University of Adelaide, Adelaide, South Australia, Australia.

Human-induced stressors are impacting the oceans and reducing the biodiversity of marine ecosystems. The many stressors affecting marine environments do not act in isolation. However, their cumulative impact is difficult to predict.

View Article and Find Full Text PDF
Article Synopsis
  • Winter cover crops (WCCs) can reduce nitrogen and sediment pollution while increasing soil organic carbon (SOC) sequestration in agricultural fields, with the Tuckahoe Watershed study revealing promising results.
  • The study confirmed that WCCs effectively lower both nitrate and sediment levels and can sequester between 0.45-0.92 MgC ha yr, with early planting providing greater benefits.
  • Implementing WCCs across Maryland's cropland could help meet 2.1-4.4% of the state's 2030 greenhouse gas reduction goals, but careful management is needed to balance water availability and ecosystem health.
View Article and Find Full Text PDF

In 2022, Houston, TX became a nexus for field campaigns aiming to further our understanding of the feedbacks between convective clouds, aerosols and atmospheric boundary layer (ABL) properties. Houston's proximity to the Gulf of Mexico and Galveston Bay motivated the collection of spatially distributed observations to disentangle coastal and urban processes. This paper presents a value-added ABL dataset derived from observations collected by eight research teams over 46 days between 2 June - 18 September 2022.

View Article and Find Full Text PDF

Aims: To introduce a resource supporting research on Gulf War illness (GWI) and related disorders, the Gulf War Veterans' Illnesses Biorepository (GWVIB).

Methods: Gulf War era veterans (GWVs) are recruited nationally and enrolled via telephone and email/postal mail. Enrolled veterans receive annual telephone and mail follow-up to collect health data until their passing.

View Article and Find Full Text PDF

Human activities put stress on our oceans and with a growing global population, the impact is increasing. Stressors rarely act in isolation, with the majority of marine areas being impacted by multiple, concurrent stressors. Marine spatial cumulative impact assessments attempt to estimate the collective impact of multiple stressors on marine environments.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!