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Keywords = antibiotic residue disposal

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22 pages, 1764 KB  
Article
Knowledge, Attitudes and Practices of Small Ruminant Farmers Regarding Antimicrobial Use, Antimicrobial Resistance and Residues
by Maria de Aires Pereira, Alexandra Lameira Baptista, Mariana Rosário, Ana Carolina Ferreira, Rita Cruz, Fernando Esteves, Nuno Santo, Rui Fragona, Daniel Correia, Carolina Figueiredo, João Serejo, João Castelo Branco, Ana Fernandes, Luís Figueira, Pedro Carreira, Pedro Caseiro, Madalena Malva and Alda F. A. Pires
Ruminants 2026, 6(2), 31; https://doi.org/10.3390/ruminants6020031 - 30 Apr 2026
Viewed by 1569
Abstract
There is growing concern that antimicrobial use (AMU) in livestock may contribute to antimicrobial resistance (AMR) in humans and lead to the consumption of animal-derived foods contaminated with antimicrobial residues. As stakeholders in the livestock industry, farmers must participate in the joint effort [...] Read more.
There is growing concern that antimicrobial use (AMU) in livestock may contribute to antimicrobial resistance (AMR) in humans and lead to the consumption of animal-derived foods contaminated with antimicrobial residues. As stakeholders in the livestock industry, farmers must participate in the joint effort to reduce AMU. This cross-sectional study, based on a survey questionnaire, was conducted to evaluate the biosafety measures implemented on small ruminant farms and to assess the knowledge, attitudes and practices (KAP) of small ruminant farmers regarding AMU, AMR and residues. The mean biosafety score obtained was 8.4 points on a 0–17 scale. Some biosafety measures appeared difficult to implement, namely vehicle disinfection, requiring visitors to change clothing and footwear at the farm entrance, cleaning and disinfecting farm facilities, using high-pressure washing equipment, and requiring employees to change clothing and footwear upon entering the farm. Although farmers self-reported moderate levels of knowledge (4.9 points on a 0–7 scale) and positive attitudes (5.8 points on a 0–7 scale), significant gaps in knowledge about antibiotics and antimicrobial stewardship persisted. Practices received lower scores (4.7 on a 0–7 scale), especially regarding medication recording, leftover antibiotic management, and waste disposal. Cluster analysis identified distinct farmer profiles with different patterns of knowledge and practices. These findings underscore the importance of considering farmer heterogeneity when designing interventions aimed at improving AMU. Full article
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23 pages, 309 KB  
Article
Knowledge, Attitudes and Practices Related to Antimicrobial Use and Resistance Among Livestock Sector Stakeholders in Seven Former Soviet Countries: A Multi-Country Regional Analysis
by Dora Kovacs, Eran Raizman, Anne Deckert, Chichak Aliyeva, Dragan Angelovski, Zaruhi Beglaryan, Duriya Charypkhan, Natalia Ciria, Tolibjon Khakimov, Maripa Kichinebatyrova, Elvira Maratova, Tamas Nagy, Anna Sargsyan, Oksana Yurchenko and Daniel Beltran-Alcrudo
Antibiotics 2026, 15(4), 384; https://doi.org/10.3390/antibiotics15040384 - 9 Apr 2026
Viewed by 1849
Abstract
Background/Objectives: Antimicrobial resistance (AMR) is one of the greatest health threats affecting humans, animals and the environment. Antimicrobial use (AMU) in the livestock sector contributes to the development and spread of AMR, highlighting the need to understand the current situation, to target knowledge [...] Read more.
Background/Objectives: Antimicrobial resistance (AMR) is one of the greatest health threats affecting humans, animals and the environment. Antimicrobial use (AMU) in the livestock sector contributes to the development and spread of AMR, highlighting the need to understand the current situation, to target knowledge gaps and non-prudent practices with tailored interventions, and improve antimicrobial stewardship. This is especially important in low- and middle-income countries (LMICs), where data on AMU and AMR are currently limited. This study assessed knowledge, attitudes and practices (KAP) among farmers, veterinarians, veterinary pharmacy personnel and feed mill personnel related to AMU (particularly considering the use of antibiotics) and AMR in seven former Soviet countries, Armenia, Azerbaijan, Georgia, Kazakhstan, Kyrgyzstan, Tajikistan and Ukraine. Methods: Face-to-face interviews were conducted between 2020 and 2025 with 3012 participants, with results analyzed using an aggregated regional approach. Results: The interviews revealed common regional knowledge gaps and practices among livestock sector stakeholders related to antimicrobials, AMR, antimicrobial residues, and prudent AMU. Non-prudent practices, such as the purchase of antimicrobials without a prescription, the use of antimicrobials as growth promoters, the inappropriate disposal of antimicrobials, and the frequent use of highest priority critically important antimicrobials (HPCIAs) were reported. Another factor that may hinder prudent AMU was the limited access of veterinarians to diagnostic laboratories. Conclusions: Despite significant global efforts to tackle AMR, there is an ongoing need to address knowledge gaps and non-prudent practices of livestock sector stakeholders in former Soviet countries. The findings highlight the importance of antimicrobial stewardship interventions that address system-level drivers of improper AMU beyond stakeholder trainings. Full article
(This article belongs to the Section Antibiotics in Animal Health)
19 pages, 400 KB  
Article
Antimicrobial Use and Awareness of Antimicrobial Resistance in the Livestock Sector in the Western Balkans
by Dora Kovacs, Eran Raizman, Anne Deckert, Natalia Ciria Artiga, Marijana Bošković, Ervin Bučan, Jelena Vračar Filipović, Olta Agolli, Dragana Grbić, Mevlida Hrapović, Ivan Ivanović, Nora Jusufi, Saša Lješković, Ljiljana Milovanović, Tamas Nagy, Miloš Palibrk, Milan Rogošić, Anna Sargsyan, Blagojcho Tabakovski and Daniel Beltran-Alcrudo
Antibiotics 2025, 14(8), 839; https://doi.org/10.3390/antibiotics14080839 - 19 Aug 2025
Cited by 3 | Viewed by 2715
Abstract
Background/Objectives: Antimicrobial resistance (AMR) is a major threat to human, animal, and environmental health. To tackle AMR in the livestock sector, there is a need to understand the antimicrobial use (AMU) practices of different stakeholders in order to target the common knowledge gaps [...] Read more.
Background/Objectives: Antimicrobial resistance (AMR) is a major threat to human, animal, and environmental health. To tackle AMR in the livestock sector, there is a need to understand the antimicrobial use (AMU) practices of different stakeholders in order to target the common knowledge gaps and inappropriate practices with tailored interventions. In the Western Balkans, published evidence shows the presence of AMR in both humans and animals. Since studies on AMU have mainly been conducted in humans, there is a significant knowledge gap about AMU in the livestock sector. The aim of this study was to assess the knowledge, attitudes, and practices of farmers, veterinarians, veterinary pharmacy personnel, and feed mill personnel related to AMU (focusing on antibiotics) and AMR in Albania, Bosnia and Herzegovina, Kosovo (References to Kosovo shall be understood to be in the context of Security Council resolution 1244 (1999)), Montenegro, North Macedonia, and Serbia. Methods: Field interviews were conducted in 2022 with 2815 participants in selected regions of the countries. Results: The findings showed that farmers engaged in imprudent practices, including purchasing antimicrobials without a prescription, administering antimicrobials for growth promotion, and disposing of expired antimicrobials in the garbage. Farmers’ main knowledge gaps were related to the duration of antimicrobial treatment and the differentiation between AMR and antimicrobial residues. This study also revealed poor record-keeping on animal treatments and a lack of some biosecurity measures. In terms of the attitudes and practices of veterinarians and veterinary pharmacy personnel, the belief that antimicrobial drugs are important for growth promotion, and the common use and sales of highest priority critically important antimicrobials should be targets for future interventions. Conclusions: Despite significant ongoing efforts to tackle AMR, there is still a need for training, awareness-raising, and policy interventions to address the knowledge gaps identified by this study and optimize AMU in the livestock sector in the Western Balkans. Full article
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24 pages, 549 KB  
Review
Treatment Methods for Antibiotic Mycelial Residues: A Review
by Yang Tong, Kaiyu Fang, Yecheng Xue, Ningzheng Zhu, Yangyuan Zhou, Jianfu Zhao, Guodong Yao and Dongyan Liu
Appl. Sci. 2025, 15(13), 7170; https://doi.org/10.3390/app15137170 - 25 Jun 2025
Cited by 3 | Viewed by 2787
Abstract
The treatment of antibiotic mycelial residue (AMR) has emerged as a critical challenge hindering the sustainable development of the biopharmaceutical industry. As a representative hazardous solid waste generated during antibiotic manufacturing processes, AMR may pose substantial risks to environmental safety. This review elucidates [...] Read more.
The treatment of antibiotic mycelial residue (AMR) has emerged as a critical challenge hindering the sustainable development of the biopharmaceutical industry. As a representative hazardous solid waste generated during antibiotic manufacturing processes, AMR may pose substantial risks to environmental safety. This review elucidates the properties and hazards of AMR while systematically reviewing current mainstream treatment technologies. Building upon the elucidation of underlying mechanisms, it further examines the application bottlenecks and research progress associated with different techniques. Through a comprehensive understanding of existing research achievements, this paper proposes future development strategies and perspectives for AMR treatment, highlighting that integrated multi-technology treatment approaches may represent the predominant developmental direction in this field. Full article
(This article belongs to the Special Issue Advances in Solid Waste Treatment and Recycling)
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18 pages, 2223 KB  
Article
Enhanced Erythromycin Elimination from Erythromycin Fermentation Residue via Anaerobic Volatile Fatty Acid Production Under Mesophilic Conditions
by Jianjun Ren, Xilong Xia, Honggang Mao, Lixia Zhu, Mohammad J. Taherzadeh, Yiliang Chen, Dongze Niu, Chunyu Li, Rui Tang, Xiancheng Qi, Chuanyang Xu and Dongmin Yin
Fermentation 2025, 11(6), 320; https://doi.org/10.3390/fermentation11060320 - 4 Jun 2025
Cited by 2 | Viewed by 1961
Abstract
Erythromycin fermentation residue (EFR) is difficult to dispose of due to its high content of macrolide erythromycin. An alternative economic method was proposed in this study for erythromycin elimination in EFR through volatile fatty acid (VFA) production via an anaerobic digestion process. Different [...] Read more.
Erythromycin fermentation residue (EFR) is difficult to dispose of due to its high content of macrolide erythromycin. An alternative economic method was proposed in this study for erythromycin elimination in EFR through volatile fatty acid (VFA) production via an anaerobic digestion process. Different parameters were applied to evaluate the effects on energy recovery of VFA together with erythromycin elimination from EFR through batch assays under mesophilic conditions. Results demonstrated that anaerobic digestion technology for VFA production can significantly enhance erythromycin elimination in EFR. The highest removal efficiency of 86.7–87.5% was obtained at conditions of controlled pH at 11.0, with erythromycin decreasing from an initial 100.2 to 12.6–14.0 mg/L. Additionally, controlled pH during the digestion process was reported to positively improve VFA yield to a maximum of 1.04 g-COD/g-VS than the adjustment of initial pH (0.46 g-COD/g-VS). Metabolic analysis alongside high-throughput sequence analysis further demonstrated the high hydrolysis and acidogenesis activities of EFR during the VFA accumulation process. Dominate enzymes EC:3.2.1.40, EC:6.2.1.3, EC:4.1.2.14, EC:2.7.2.1, and EC:1.1.1.27 well balanced the whole process from organic to VFA at pH controlled 11.0. The current study provided a new feasible choice for the economical treatment of antibiotic fermentation residues due to the tolerable antibiotic removal efficiency and satisfactory VFA yield. Full article
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18 pages, 2508 KB  
Article
Comparison of Thermochemical Conversion Processes for Antibiotic Residues: Insights from Life Cycle Assessment
by Jian Yang, Yulian Wei, Rui Ma, Hongzhi Ma, Biqin Dong and Ying Wang
Processes 2025, 13(4), 1139; https://doi.org/10.3390/pr13041139 - 10 Apr 2025
Viewed by 1301
Abstract
Life cycle assessment (LCA) was conducted to evaluate the environmental impacts and health risks associated with four thermochemical conversion technologies: incineration, gasification, pyrolytic liquefaction, and hydrothermal liquefaction. Results revealed that all processes yielded positive net environmental benefits (3.8–8.2 kg CO2-eq/kg AR [...] Read more.
Life cycle assessment (LCA) was conducted to evaluate the environmental impacts and health risks associated with four thermochemical conversion technologies: incineration, gasification, pyrolytic liquefaction, and hydrothermal liquefaction. Results revealed that all processes yielded positive net environmental benefits (3.8–8.2 kg CO2-eq/kg AR reduction), with hydrothermal liquefaction exhibiting the lowest emissions (GWP-5.71 kg CO2-eq/kg). However, its widespread application has been hindered by process limitations, and enhancing catalytic efficiency has been identified as a critical area for future research. Incineration ranked second in terms of environmental benefits and remains the most favorable method according to existing studies. In contrast, gasification and pyrolytic liquefaction did not demonstrate significant environmental advantages, primarily due to the high energy consumption required for drying. Consequently, optimizing the drying process has been highlighted as a key focus for future research efforts. This study provided valuable insights for the safe disposal and resource recovery of antibiotic residue. Full article
(This article belongs to the Special Issue Research on Biomass Energy and Resource Utilization Technology)
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18 pages, 5760 KB  
Article
Efficient Removal of Tetracycline from Water by One-Step Pyrolytic Porous Biochar Derived from Antibiotic Fermentation Residue
by Xinyu Zhao, Guokai Zhu, Jiangtao Liu, Jieni Wang, Shuqin Zhang, Chenlin Wei, Leichang Cao, Shuguang Zhao and Shicheng Zhang
Nanomaterials 2024, 14(17), 1377; https://doi.org/10.3390/nano14171377 - 23 Aug 2024
Cited by 10 | Viewed by 2643
Abstract
The disposal and treatment of antibiotic residues is a recognized challenge due to the huge production, high moisture content, high processing costs, and residual antibiotics, which caused environmental pollution. Antibiotic residues contained valuable components and could be recycled. Using a one-step controllable pyrolysis [...] Read more.
The disposal and treatment of antibiotic residues is a recognized challenge due to the huge production, high moisture content, high processing costs, and residual antibiotics, which caused environmental pollution. Antibiotic residues contained valuable components and could be recycled. Using a one-step controllable pyrolysis technique in a tubular furnace, biochar (OSOBs) was produced without the preliminary carbonization step, which was innovative and time- and cost-saving compared to traditional methods. The main aim of this study was to explore the adsorption and removal efficiency of tetracycline (TC) in water using porous biochar prepared from oxytetracycline fermentation residues in one step. A series of characterizations were conducted on the prepared biochar materials, and the effects of biochar dosage, initial tetracycline concentration, reaction time, and reaction temperature on the adsorption capacity were studied. The experimental results showed that at 298 K, the maximum adsorption capacity of OSOB-3-700 calculated by the Langmuir model reached 1096.871 mg/g. The adsorption kinetics fitting results indicated that the adsorption of tetracycline on biochar was more consistent with the pseudo-second-order kinetic model, which was a chemical adsorption. The adsorption isotherm fitting results showed that the Langmuir model better described the adsorption process of tetracycline on biochar, indicating that tetracycline was adsorbed in a monolayer on specific homogeneous active sites through chemical adsorption, consistent with the kinetic conclusions. The adsorption process occurred on the surface of the biochar containing rich active sites, and the chemical actions such as electron exchange promoted the adsorption process. Full article
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16 pages, 1820 KB  
Review
Antibiotic Resistance and Aquatic Systems: Importance in Public Health
by Njomza Lajqi Berisha, Ana Poceva Panovska and Zehra Hajrulai-Musliu
Water 2024, 16(17), 2362; https://doi.org/10.3390/w16172362 - 23 Aug 2024
Cited by 48 | Viewed by 10600
Abstract
This review focuses on the crucial role of aquatic ecosystems in preserving biodiversity and the biosphere, as well as the connection between antimicrobial resistance (AMR) and these ecosystems. It provides an in-depth analysis of the link between ecological well-being and public health, helping [...] Read more.
This review focuses on the crucial role of aquatic ecosystems in preserving biodiversity and the biosphere, as well as the connection between antimicrobial resistance (AMR) and these ecosystems. It provides an in-depth analysis of the link between ecological well-being and public health, helping readers understand this complex subject. Aquatic ecosystems are essential for maintaining biodiversity and ecological balance. Additionally, they act as primary reservoirs and pathways for the spread of antimicrobial resistance (AMR). These ecosystems risk antibiotic contamination through various sources, such as the release of antibiotics from animal and human waste, improper disposal of unused medications, and pharmaceutical industry waste management practices. The presence of antibiotic residues in these environments significantly speeds up the development of bacterial resistance. The global prevalence of antimicrobial resistance (AMR) is evident in freshwater bodies, tributaries, sewage waters, and wastewater treatment facilities. Antimicrobial resistance (AMR) is now a significant public health threat, compromising the effectiveness of many previously successful treatments against various pathogens. One notable and alarming aspect of antimicrobial resistance (AMR) is its rapid development, often occurring within 5–10 years after introducing antimicrobial drugs to the market. This acceleration is closely tied to bacteria’s ability to thrive and adapt in the presence of antimicrobial agents and their residues in the environment. The implications of antimicrobial resistance (AMR) include treatment failures with long-term effects and a continuous increase in healthcare costs. This review comprehensively examines the intricate relationship between aquatic habitats, antibiotics, and the global challenge of antimicrobial resistance (AMR). It emphasizes the critical role of these ecosystems in preserving ecological diversity. It raises awareness about AMR’s urgent public health issue, laying a foundation for understanding its extensive consequences. Full article
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12 pages, 2961 KB  
Article
Study on Pyrolysis Behavior of Avermectin Mycelial Residues and Characterization of Obtained Gas, Liquid, and Biochar
by Shuangxia Yang, Jianjun Hou, Lei Chen, Feixia Yang, Tianjin Li, Laizhi Sun and Dongliang Hua
Processes 2024, 12(6), 1118; https://doi.org/10.3390/pr12061118 - 29 May 2024
Cited by 2 | Viewed by 1859
Abstract
The proper disposal of antibiotic mycelial residue (AMR) is a critical concern due to the spread of antibiotics and environmental pollution. Pyrolysis emerges as a promising technology for AMR treatment. In this study, we investigated the effect of pyrolysis temperature on the thermal [...] Read more.
The proper disposal of antibiotic mycelial residue (AMR) is a critical concern due to the spread of antibiotics and environmental pollution. Pyrolysis emerges as a promising technology for AMR treatment. In this study, we investigated the effect of pyrolysis temperature on the thermal decomposition behavior and product characteristics of avermectin (AV) mycelial residues. Various characterization techniques were employed to analyze thoroughly the compositions and yields of the obtained gas, liquid, and biochar products. The results indicated that most of the organic matter such as protein, carbohydrate, and aliphatic compounds in AV mycelial residues decomposed intensely at 322 °C and tended to end at 700 °C, with a total weight loss of up to 72.6 wt%. As the pyrolysis temperature increased, the biochar yield decreased from 32.81 wt% to 26.39 wt% because of the enhanced degradation of volatiles and secondary reactions of the formed aromatic rings. Accordingly, more gas components were formed with the gas yield increased from 9.76 wt% to 15.42 wt%. For bio-oil, the contents were maintained in the range of 57.43–60.13 wt%. CO and CO2 dominated the gas components with a high total content of almost 62.37–97.54 vol%. At the same time, abundant acids, esters (42.99–48.85%), and nitrogen-containing compounds (32.14–38.70%) such as nitriles, amides, and nitrogenous heterocyclic compounds were detected for the obtained bio-oil. As for the obtained biochars, particle accumulation and irregular pores were presented on their bulk surface, which was primarily composed of calcium oxalate (CaC2O4) and calcium carbonate (CaCO3). This work can provide theoretical insights for the harmless disposal and resource recovery for AMR, contributing significantly to the field of solid waste reuse and management. Full article
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40 pages, 3891 KB  
Review
A Review on Pharmaceuticals and Personal Care Products Residues in the Aquatic Environment and Possibilities for Their Remediation
by Urszula Wydro, Elżbieta Wołejko, Linda Luarasi, Klementina Puto, Živilė Tarasevičienė and Agata Jabłońska-Trypuć
Sustainability 2024, 16(1), 169; https://doi.org/10.3390/su16010169 - 23 Dec 2023
Cited by 72 | Viewed by 15116
Abstract
Pharmaceuticals and Personal Care Products (PPCPs) are pollutants known as organic micropollutants. PPCPs belong to a group of compounds with proven biological activity used in medicine, veterinary medicine and to maintain hygiene in daily life. Their presence in the environment, even in trace [...] Read more.
Pharmaceuticals and Personal Care Products (PPCPs) are pollutants known as organic micropollutants. PPCPs belong to a group of compounds with proven biological activity used in medicine, veterinary medicine and to maintain hygiene in daily life. Their presence in the environment, even in trace concentrations, can have negative effects on living organisms, including humans. Especially relevant are the residues of pharmaceuticals such as hormonal drugs and antibiotics. PPCPs’ presence in the environment is caused by the improper production, usage and disposal of medicines. PPCPs and their residues may be introduced into the various parts of the environment such as wastewater, water and soil. Therefore, wastewater containing PPCPs, their residues and active metabolites firstly goes to a wastewater treatment plant (WWTP). However, some of these compounds may also be present in sewage sludge. This article reviews the methods and technologies used in the remediation of water and wastewater containing PPCPs residues. Among them, physical, chemical and biological methods, as well as a compilation of various techniques, can be identified. Nowadays, in a time of energy crisis, it is important to emphasize that the applied methods of wastewater and water treatment are not only effective, but also have been characterized by low energy consumption or allow for the generation of energy that could be used for the needs of the wastewater treatment plant. Full article
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43 pages, 4108 KB  
Review
A Systematic Review of Contaminants of Concern in Uganda: Occurrence, Sources, Potential Risks, and Removal Strategies
by Gabson Baguma, Gadson Bamanya, Allan Gonzaga, Wycliffe Ampaire and Patrick Onen
Pollutants 2023, 3(4), 544-586; https://doi.org/10.3390/pollutants3040037 - 4 Dec 2023
Cited by 16 | Viewed by 10974
Abstract
Contaminants of concern (CoCs) pose significant threats to Uganda’s ecosystems and public health, particularly in the face of rapid urbanization, industrial expansion, and intensified agriculture. This systematic review comprehensively analyzed Uganda’s CoC landscape, addressing imminent challenges that endanger the country’s ecosystems and public [...] Read more.
Contaminants of concern (CoCs) pose significant threats to Uganda’s ecosystems and public health, particularly in the face of rapid urbanization, industrial expansion, and intensified agriculture. This systematic review comprehensively analyzed Uganda’s CoC landscape, addressing imminent challenges that endanger the country’s ecosystems and public health. CoCs, originating from urban, industrial, and agricultural activities, encompass a wide range of substances, including pharmaceuticals, personal care products, pesticides, industrial chemicals, heavy metals, radionuclides, biotoxins, disinfection byproducts, hydrocarbons, and microplastics. This review identified the major drivers of CoC dispersion, particularly wastewater and improper waste disposal practices. From an initial pool of 887 articles collected from reputable databases such as PubMed, African Journal Online (AJOL), Web of Science, Science Direct, and Google Scholar, 177 pertinent studies were extracted. The literature review pointed to the presence of 57 pharmaceutical residues and personal care products, along with 38 pesticide residues and 12 heavy metals, across various environmental matrices, such as wastewater, groundwater, seawater, rainwater, surface water, drinking water, and pharmaceutical effluents. CoC concentrations displayed significant levels exceeding established regulations, varying based on the specific locations, compounds, and matrices. This review underscores potential ecological and health consequences associated with CoCs, including antibiotic resistance, endocrine disruption, and carcinogenicity. Inefficiencies in traditional wastewater treatment methods, coupled with inadequate sanitation practices in certain areas, exacerbate the contamination of Uganda’s aquatic environments, intensifying environmental and health concerns. To address these challenges, advanced oxidation processes (AOPs) emerge as promising and efficient alternatives for CoC degradation and the prevention of environmental pollution. Notably, no prior studies have explored the management and mitigation of these contaminants through AOP application within various aqueous matrices in Uganda. This review emphasizes the necessity of specific regulations, improved data collection, and public awareness campaigns, offering recommendations for advanced wastewater treatment implementation, the adoption of sustainable agricultural practices, and the enforcement of source control measures. Furthermore, it highlights the significance of further research to bridge knowledge gaps and devise effective policies and interventions. Ultimately, this comprehensive analysis equips readers, policymakers, and regulators with vital knowledge for informed decision-making, policy development, and the protection of public health and the environment. Full article
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10 pages, 836 KB  
Article
Bioaccumulation and Depletion of the Antibiotic Sulfadiazine 14C in Lambari (Astyanax bimaculatus)
by Patrícia Alexandre Evangelista, Felipe Machado de Oliveira Lourenço, Darmin Chakma, Chironjit Kumar Shaha, Almamy Konate, Rodrigo Floriano Pimpinato, Helder Louvandini and Valdemar Luiz Tornisielo
Animals 2023, 13(15), 2464; https://doi.org/10.3390/ani13152464 - 30 Jul 2023
Cited by 7 | Viewed by 3016
Abstract
Antibiotics are present in the environment, primarily due to their release through wastewater treatment plants, agricultural practices, and improper disposal of unused medications. In the environment, these drugs can be bioaccumulated by organisms and transferred along the food chain. This is a problem [...] Read more.
Antibiotics are present in the environment, primarily due to their release through wastewater treatment plants, agricultural practices, and improper disposal of unused medications. In the environment, these drugs can be bioaccumulated by organisms and transferred along the food chain. This is a problem when considering the consumption of fish meat. In the United States, legislation stipulates that the maximum residue limit for sulfadiazine (SDZ) should not exceed 100 μg kg−1. Lambari fishes have potential economic importance in aquaculture, as they are relatively easy to breed and can be raised in small-scale operations. Finally, studying the biology and ecology of lambari could provide valuable information about freshwater ecosystems and their inhabitants. The current work aimed to measure the bioaccumulation and depletion of the antibiotic SDZ 14C in lambari (Astyanax bimaculatus). For this purpose, the tests were divided into two stages; seven days of exposure and seven days of depletion, where one fish was randomly selected and sampled every day. In the exposure phase, the fish were fed the medicated feed three times a day at a concentration of 2.5 mg·g−1. The control fish were fed uncontaminated feed. For the depletion phase, the remaining lambari were transferred to clean tanks and fed uncontaminated feed three times a day. The fish samples were burned in the Oxidizer and the reading of radioactivity was performed in a liquid scintillation spectrometer. It is worth noting that on day 7 and day 14, the water in the aquariums was filtered through filter paper to collect the metabolic excrement. SDZ concentrations increased over the days and accumulation occurred in the fish, with day seven presenting the maximum accumulation value of 91.7 ng·g−1 due to feeding uptake. After the depletion phase on day 13, the value found was 0.83 ng·g−1. The bioconcentration factor calculated was 20 L·kg−1. After the bioaccumulation period, the concentrations of SDZ in the water and excreta were 4.5 µg·L−1 and 363.5 ng·g−1, respectively. In the depletion period, the concentrations in the water and excreta were 0.01 µg·L−1 and 5.96 ng·g−1, respectively. These results imply that there was little SDZ bioaccumulation in the fish, but that it was distributed in larger amounts in the water. This is due to the physicochemical properties of the molecule with the low Log P value. Regarding the maximum residue limit, the value was below the established value. This study contributes to understanding SDZ dynamics in an aquatic species native to Brazil. Full article
(This article belongs to the Special Issue Pharmacokinetics and Pharmacodynamics in Aquatic Animals)
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28 pages, 1556 KB  
Review
The Fate and Occurrence of Antibiotic-Resistant Bacteria and Antibiotic Resistance Genes during Advanced Wastewater Treatment and Disinfection: A Review
by Maria Kalli, Constantinos Noutsopoulos and Daniel Mamais
Water 2023, 15(11), 2084; https://doi.org/10.3390/w15112084 - 31 May 2023
Cited by 57 | Viewed by 13192
Abstract
Antimicrobial resistance (AMR) is a serious problem for modern society, not only associated with clinical environments, but also the natural environment. Conventional wastewater treatment plants (WWTPs) are important nodes for the dissemination of antibiotic resistance to the aquatic environment since they are reservoirs [...] Read more.
Antimicrobial resistance (AMR) is a serious problem for modern society, not only associated with clinical environments, but also the natural environment. Conventional wastewater treatment plants (WWTPs) are important nodes for the dissemination of antibiotic resistance to the aquatic environment since they are reservoirs of antibiotic-resistant bacteria (ARB), antibiotic resistance genes (ARGs), and antibiotic residues. WWTPs are not designed to remove these antibiotic resistance determinants from wastewater, and as a result, they are present in treated effluent, leading to environmental and public health concerns regarding wastewater disposal and reuse. Additional treatments combined with conventional WWTPs can be barriers to the spread of AMR to the environment. In order to understand the effect of wastewater treatment methods on the removal of ARB and ARGs, an extensive bibliographic study was conducted. This review summarizes the efficiency of conventional disinfection methods, tertiary wastewater treatment, and advanced oxidation processes (AOPs) to remove ARB and ARGs from wastewater. In the context of the revised Urban Wastewater Treatment Directive 91/271/EEC, further studies are needed on the removal potential of AOPs on a full-scale, as they offer great potential for the removal of ARB and ARGs with a low formation of toxic by-products compared to conventional disinfection methods. Full article
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13 pages, 4492 KB  
Article
Enhancing Visible-Light Photodegradation of TC-HCl by Doping Phosphorus into Self-Sensitized Carbon Nitride Microspheres
by Xiangyu Chen, Xiuru Yang, Jianhao Wu, Zhi Chen, Lan Li, Jingyang Gao, Jinchao Chen, Jinglei Hu, Chunyan Li and Wen Wang
Processes 2023, 11(2), 298; https://doi.org/10.3390/pr11020298 - 17 Jan 2023
Cited by 3 | Viewed by 2565
Abstract
SSCN is a new type of self-sensitive photocatalyst. It consists of oxygenated carbon nitride-containing microspheres inside and polymerized triazine dye (TBO) formed on its surface by in situ polymerization. The presence of TBO endows SSCN with a wide range of optical responses. However, [...] Read more.
SSCN is a new type of self-sensitive photocatalyst. It consists of oxygenated carbon nitride-containing microspheres inside and polymerized triazine dye (TBO) formed on its surface by in situ polymerization. The presence of TBO endows SSCN with a wide range of optical responses. However, the TBO would self-degrade under light, making SSCN extremely unstable in photocatalytic reactions and limiting the practical application of SSCN. The introduction of phosphorus into the structure of SSCN significantly improved the electron–hole separation efficiency and reduced the self-degradation of surface TBO. Phosphorus-doped self-sensitive carbon nitride microspheres (P-SSCN) are easily synthesized by a one-pot solvothermal method—the phosphorus source was added to the precursor solution of SSCN. This resulting material was used for the photodegradation of tetracycline hydrochloride (TC-HCl) for the first time, giving improved visible light sensitivity and high stability in the photocatalytic process. This provides a new method for modifying self-sensitive carbon nitride carbon. Full article
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14 pages, 3207 KB  
Article
Sustainable Utilization Strategy of Organic Waste via Fabrication of Bioelastomer with Antibacterial and Antioxidant Activities Using Mandarin Peel Extracts
by Kang Hyun Lee, Youngsang Chun, Ja Hyun Lee, Jong Uk Lee, Taek Lee and Hah Young Yoo
Agriculture 2023, 13(1), 161; https://doi.org/10.3390/agriculture13010161 - 9 Jan 2023
Cited by 15 | Viewed by 4067
Abstract
Mandarin peels (MPs), a food-processing residue, have several restrictions on their disposal and can cause serious environmental pollution. In this study, MP was used to fabricate a functional bioelastomer with antioxidant and antibacterial activities. Bioactive compounds were recovered from MPs in liquid form [...] Read more.
Mandarin peels (MPs), a food-processing residue, have several restrictions on their disposal and can cause serious environmental pollution. In this study, MP was used to fabricate a functional bioelastomer with antioxidant and antibacterial activities. Bioactive compounds were recovered from MPs in liquid form and added to the bioelastomer during fabrication to maintain the mechanical strength of the bioelastomer. The radical scavenging activities of the fabricated bioelastomer (B–MPE 15%) were 3.3% for DPPH and 20.8% for ABTS, respectively. In addition, B–MPE 15% exhibited antibacterial activity against gram-positive (Staphylococcus aureus), gram-negative (Escherichia coli), and antibiotic-resistant bacteria (Methicillin-resistant S. aureus and Vancomycin resistant Enterococcus). The chemical properties of B–MPE 15% were not significantly different from those of the control group (bare PDMS). Tensile strength, elongation at break, and water vapor transmission rate of B–MPE 15% were found to be 5.1 N/mm2, 649%, and 33.3 g/(m2 day), respectively. Therefore, the addition of MP extracts did not significantly affect the physical properties. The fabricated bioelastomer with antibacterial and antioxidant activities is expected to be utilized in the food packaging, pharmaceutical, and medical industries. Our research is expected to represent a future-oriented strategy for realizing carbon neutrality by upcycling food waste. Full article
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