Topic Editors

School of Grain Science and Technology, Jiangsu University of Science and Technology, Zhenjiang, China
Department of Chemistry, Hong Kong Baptist University, Hong Kong 999077, China

Environment Ecotoxicology and Bioremediation: From Biological Solutions to High-Value Products

Abstract submission deadline
24 February 2027
Manuscript submission deadline
24 April 2027
Viewed by
998

Topic Information

Dear Colleagues,

At present, environmental ecotoxicology and bioremediation have played a central role in solving pollution problems (water eutrophication, plastic pollution, agricultural wastes, etc.) and restoring ecosystem health. Specifically, with the application of some microorganisms and insects that contain high-value components, environmental pollutants can be efficiently converted into bioproducts, such as high-quality proteins, natural antioxidants, biofuels, and even health-care products. For example, yellow mealworm-based plastic degradation, bacteria-based agricultural waste treatment, and microalgae-based wastewater remediation have become widely studied research topics. The circular economy model based on this concept, which brings not only environmental benefits but also economic benefits, is gaining widespread acceptance in the field of environmental restoration. 

Therefore, the Editors of this Topic encourage submissions addressing, but not limited to, the following topics and issues:

(1) Development of biorefinery approaches for simultaneous pollutant removal and resource recovery

  • Selection of microorganisms, plants, or insects for environmental restoration.
  • Optimization of the bioremediation parameters.
  • Mechanisms of pollutant or waste removal by organisms.

(2) Exploration of high-value bioproducts for environmental bioremediation

  • Analysis of the high-value components in microorganisms, plants, and insects after waste treatment.
  • Development of technologies to convert organisms to value-added bioproducts.

(3) Assessing the sustainability, life cycle, and techno-economic feasibility of bioremediation-based bioproducts

  • Quantification of environmental benefits and impacts across the full bioremediation-to-bioproduct chain (e.g., carbon footprint, energy balance, resource recycling efficiency, etc.).
  • Life-cycle assessment (LCA) of the technological route for environmental bioremediation.
  • Techno-economic evaluation and market feasibility analysis of high-value bioproducts derived from pollutants or wastes through biological treatment processes.

Dr. Qian Lu
Dr. Huankai Li
Topic Editors

Keywords

  • waste valorization
  • microorganisms
  • insects
  • high-value bioproducts
  • sustainability

Participating Journals

Journal Name Impact Factor CiteScore Launched Year First Decision (median) APC
Antioxidants
antioxidants
8.2 14.7 2012 18.7 Days CHF 2900 Submit
Environments
environments
4.3 5.7 2014 18.6 Days CHF 1800 Submit
Insects
insects
3.0 5.3 2010 19.7 Days CHF 2600 Submit
Materials
materials
3.7 7.0 2008 14.4 Days CHF 2600 Submit
Microplastics
microplastics
4.8 7.7 2022 22.7 Days CHF 1200 Submit
Toxics
toxics
4.9 7.8 2013 17 Days CHF 2600 Submit
Water
water
3.5 6.7 2009 17.7 Days CHF 2600 Submit

Preprints.org is a multidisciplinary platform offering a preprint service designed to facilitate the early sharing of your research. It supports and empowers your research journey from the very beginning.

MDPI Topics is collaborating with Preprints.org and has established a direct connection between MDPI journals and the platform. Authors are encouraged to take advantage of this opportunity by posting their preprints at Preprints.org prior to publication:

  1. Share your research immediately: disseminate your ideas prior to publication and establish priority for your work.
  2. Safeguard your intellectual contribution: Protect your ideas with a time-stamped preprint that serves as proof of your research timeline.
  3. Boost visibility and impact: Increase the reach and influence of your research by making it accessible to a global audience.
  4. Gain early feedback: Receive valuable input and insights from peers before submitting to a journal.
  5. Ensure broad indexing: Web of Science (Preprint Citation Index), Google Scholar, Crossref, SHARE, PrePubMed, Scilit and Europe PMC.

Published Papers (1 paper)

Order results
Result details
Journals
Select all
Export citation of selected articles as:
17 pages, 1214 KB  
Article
Effects of Pesticides Commonly Used in Avocado on Trichogramma exiguum (Hymenoptera: Trichogrammatidae): A Potential Biological Control Agent for Stenoma catenifer
by Michelle Noboa, Ana Barreiro, Jorge Merino, Jorge Espinoza, William Viera, Emely Mora and Wilson Vásquez
Insects 2026, 17(7), 728; https://doi.org/10.3390/insects17070728 - 15 Jul 2026
Viewed by 479
Abstract
Stenoma catenifer (Lepidoptera: Depressariidae), the avocado seed borer, represents a major phytosanitary threat in Andean avocado production systems. Egg parasitoids of the genus Trichogramma constitute promising biological control agents for this pest; however, their field-level compatibility with agrochemicals commonly used in avocado orchards [...] Read more.
Stenoma catenifer (Lepidoptera: Depressariidae), the avocado seed borer, represents a major phytosanitary threat in Andean avocado production systems. Egg parasitoids of the genus Trichogramma constitute promising biological control agents for this pest; however, their field-level compatibility with agrochemicals commonly used in avocado orchards remains largely uncharacterized. This study evaluated the side effects of 13 commercial pesticide formulations on Trichogramma exiguum (Hymenoptera: Trichogrammatidae) under two complementary exposure scenarios: (1) residual contact toxicity on adults and (2) susceptibility of parasitized Ephestia kuehniella (Lepidoptera: Pyralidae) eggs, following International Organisation for Biological Control IOBC/WPRS standardized methodology. Corrected adult mortality was assessed at 1 h and 24 h post-exposure, while parasitism expression at the pupal stage, adult emergence rate, and developmental time were recorded for preimaginal stages. At 24 h, abamectin, acephate, lambda-cyhalothrin, and metalaxyl caused 100% adult mortality (harmful), whereas potassium soap and hexythiazox were classified as moderately harmful. In Bioassay 2, potassium soap completely suppressed parasitism expression and adult emergence (0%), while neem extract showed no significant reduction relative to the water control. Developmental time to adult emergence ranged from 9.7 to 12.0 days across treatments, with no statistically significant differences among them. These results indicate that neem extract and the adjuvant dispersant are broadly compatible with T. exiguum, whereas neurotoxic insecticides and potassium soap are incompatible under both exposure scenarios. These findings provide an evidence-based compatibility hierarchy to guide the strategic integration of chemical inputs and augmentative biological control in avocado integrated pest management programs. Full article
Show Figures

Figure 1

Back to TopTop