4.7 Review

Harvesting marine plastic pollutants-derived renewable energy: A comprehensive review on applied energy and sustainable approach

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Performance of Bioremediation Strategy in Waste Lubricating Oil Pollutants: A Review

Jaydeep Kanungo et al.

Summary: The rapid growth of industrialization has led to the increased use of lubrication oil in machinery and automobile sectors. Waste Lubricating Oil (WLO) is the used oil released by industries and vehicles as waste. WLO is toxic due to the presence of asphaltene content, residual carbons, heavy metals, and other dirt materials. Disposing WLO directly into the environment causes serious problems, such as negative impacts on soil and aquatic life, and health disorders in humans. Bioremediation, utilizing microbial activity, is an effective approach for managing WLO pollutants.

GEOMICROBIOLOGY JOURNAL (2023)

Article Engineering, Chemical

Microfiber pollution and its microbial mitigation: A review on current trends and future prospects

Alok Prasad Das et al.

Journal of the Taiwan Institute of Chemical Engineers (2023)

Article Multidisciplinary Sciences

Plastic pollution on the world's coral reefs

Hudson T. Pinheiro et al.

Summary: Coral reefs are being threatened by plastic pollution, in addition to climate change and overfishing. The distribution and quantity of plastics in coral reefs are uncertain, but it has been found that anthropogenic debris, including macroplastics, are present in majority of surveyed reefs. Fishing activities are the main source of plastics in most areas, and macroplastics peak in deeper reefs. These findings can help in designing strategies to address this global threat as the world moves towards a global treaty to tackle plastic pollution.

NATURE (2023)

Article Multidisciplinary Sciences

Plastic debris in lakes and reservoirs

Veronica Nava et al.

Summary: Plastic debris is widely present in freshwater ecosystems globally, with lakes and reservoirs in densely populated and urbanized areas and large lakes and reservoirs with elevated deposition areas, long water-retention times and high levels of anthropogenic influence being particularly vulnerable. The concentrations of plastic vary among lakes, with some reaching or even exceeding those reported in marine areas collecting large amounts of debris such as the subtropical oceanic gyres. This study highlights the importance of including lakes and reservoirs in addressing plastic pollution for effective pollution management and the preservation of lake ecosystem services.

NATURE (2023)

Review Environmental Sciences

Microplastics in freshwater: A global review of factors affecting spatial and temporal variations*

Rebecca Talbot et al.

Summary: Freshwater microplastics are influenced by anthropogenic factors such as urbanization, population density, and wastewater treatment plant effluent, as well as physical watershed characteristics like slope and elevation. Precipitation and stormwater runoff have positive correlations with microplastic concentrations, while water flow/discharge has negative correlations. Variations in study results may be attributed to differing scales or contributing area delineations, indicating a need for more rigorous and standardized spatial analytical methods.

ENVIRONMENTAL POLLUTION (2022)

Review Environmental Sciences

A Systematic Study on the Microbial Degradation of Glyphosate: A Review

Satya Sundar Mohanty et al.

Summary: Glyphosate, a widely used herbicide for weed control, has adverse effects on human health and the environment. Microbial degradation is the most effective and eco-friendly method for removing glyphosate from the environment.

GEOMICROBIOLOGY JOURNAL (2022)

Review Environmental Sciences

Microbial Colonization and Degradation of Microplastics in Aquatic Ecosystem: A Review

Sujata Mishra et al.

Summary: This article focuses on microbial colonization and degradation of microplastics in aquatic ecosystems, emphasizing the significant impact of microbes on the reduction of plastic waste in the environment.

GEOMICROBIOLOGY JOURNAL (2022)

Editorial Material Environmental Sciences

Role of Microorganisms in Extenuation of Mining and Industrial Wastes

Alok Prasad Das et al.

GEOMICROBIOLOGY JOURNAL (2022)

Article Environmental Sciences

Exploration of Probiotic Microbial Biodiversity in Acidic Environments (Curd) and Their Futuristic Pharmaceutical Applications

Prasandeep Biswal et al.

Summary: This study investigated the microbial diversity in curd samples from different local dairy farms in Odisha, India using a metagenomic approach. The dominant species found was Lactobacillus, while a significant proportion of unclassified species were also identified at different taxonomic levels. The data has been deposited in the NCBI database, providing valuable insights into the microbial composition of curd samples and their potential applications in probiotic research.

GEOMICROBIOLOGY JOURNAL (2022)

Article Thermodynamics

Thermochemical treatment of daily COVID-19 single-use facemask waste: Power generation potential and environmental impact analysis

Dan Cudjoe et al.

Summary: This study evaluates the power generation potential and environmental impact of treating single-use facemask waste through incineration. The findings show that Asia and Africa produce a large amount of daily single-use facemask waste, but incineration can generate electricity while also emitting greenhouse and acid gases.

ENERGY (2022)

Article Environmental Sciences

Discovery and quantification of plastic particle pollution in human blood

Heather A. Leslie et al.

Summary: Plastic particles are widespread pollutants in the environment and food chain, and this study successfully developed a method to measure the presence of plastic particles in human blood. The study found four high production volume polymers in blood samples and demonstrated that plastic particles can be taken up by the human bloodstream.

ENVIRONMENT INTERNATIONAL (2022)

Article Environmental Sciences

Plastic-containing food waste conversion to biomethane, syngas, and biochar via anaerobic digestion and gasification: Focusing on reactor performance, microbial community analysis, and energy balance assessment

Le Zhang et al.

Summary: A hybrid biological and thermal system was investigated to convert plastic-containing food waste into renewable energy. The results showed that anaerobic digestion and CO2 gasification of the plastic-containing waste produced higher methane and syngas yields compared to pure waste. Addition of biochar further increased methane production due to selective enrichment of certain microbial communities. The system has promising potential for industrial-scale treatment of plastic-containing food waste and recovery of renewable biofuels and bioresources.

JOURNAL OF ENVIRONMENTAL MANAGEMENT (2022)

Article Engineering, Environmental

A marine fungus Alternaria alternata FB1 efficiently degrades polyethylene

Rongrong Gao et al.

Summary: Huge quantities of plastic wastes pose serious ecological problems and impact global carbon cycling. Researchers have successfully isolated a fungus named Alternaria alternata FB1 from plastic waste samples, which showed remarkable degradation capabilities on polyethylene (PE) film. This discovery provides a promising candidate for further investigation of degradation mechanisms and development of biodegradable products.

JOURNAL OF HAZARDOUS MATERIALS (2022)

Article Polymer Science

Poly(ionic liquid)s as efficient and recyclable catalysts for methanolysis of PET

Zhiqiang Jiang et al.

Summary: This study investigated the use of poly(ionic liquid)s (PILs) as catalysts for the methanolysis of polyethylene terephthalate (PET). The optimized catalyst PIL-Zn2+ demonstrated high conversion of PET and yield of dimethyl terephthalate (DMT) under the optimal conditions. Furthermore, the PIL-Zn2+ catalyst exhibited good applicability and recyclability. This research is important for designing catalysts for PET methanolysis.

POLYMER DEGRADATION AND STABILITY (2022)

Article Environmental Sciences

Detection of microplastics in human lung tissue using μFTIR spectroscopy

Lauren C. Jenner et al.

Summary: Airborne microplastics (MPs) have been found to have increased concentrations in areas with high human population and activity, especially indoors. This study analyzed human lung tissue samples and identified 39 MPs in 11 out of 13 samples, with an average concentration of 1.42 +/- 1.50 MP/g of tissue. The most abundant polymer types were polypropylene, polyethylene terephthalate, and resin. The study also found that MPs were present in all regions of the lung, with significantly higher levels in the lower region compared to the upper and middle regions. These findings suggest that inhalation is a route of exposure for environmental MPs.

SCIENCE OF THE TOTAL ENVIRONMENT (2022)

Article Environmental Sciences

Impacts of physical-chemical property of polyethylene on depolymerization and biodegradation in yellow and dark mealworms with high purity microplastics

Shan-Shan Yang et al.

Summary: Yellow and dark mealworms are able to biodegrade commercial polyethylene materials at a high rate, and the extent of biodegradation is influenced by the polymer type, molecular weight, branching, and crystallinity degree.

SCIENCE OF THE TOTAL ENVIRONMENT (2022)

Article Economics

The impact of renewable energy technology innovation on energy poverty: Does climate risk matter?

Chien-Chiang Lee et al.

Summary: This research examines the linkage between renewable energy technology (RET) innovation and energy poverty (EP) and finds that RET innovation can alleviate EP. The study also reveals that climate risk has a moderating effect and threshold effect on the relationship between RET innovation and EP.

ENERGY ECONOMICS (2022)

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The impact of technological innovation on renewable energy production: accounting for the roles of economic and environmental factors using a method of moments quantile regression

Sakiru Adebola Solarin et al.

Summary: Renewable energy innovation has a significant impact on renewable energy production, with a greater effect observed in countries with lower per capita production.

HELIYON (2022)

Article Energy & Fuels

Second-generation biofuel production from the organic fraction of municipal solid waste

Zygmunt Kowalski et al.

Summary: Biofuels are an attractive alternative to fossil fuels and can help European Union countries achieve their climate and energy goals. By producing second-generation biofuels from the organic fraction of municipal solid wastes, a circular economy can be supported, contributing to effective waste management.

FRONTIERS IN ENERGY RESEARCH (2022)

Review Environmental Sciences

Plastic Recovery and Utilization: From Ocean Pollution to Green Economy

Adedeji A. Adelodun

Summary: The excessive use of plastics has led to environmental pollution, particularly in oceans. Pyrolysis technology is considered an effective resource control method with advantages, but further research and optimization are needed. Studies should focus on discovering environmentally friendly organic catalysis methods to improve current pyrolysis technology.

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Effects of plastics on reactor performance and microbial communities during acidogenic fermentation of food waste for production of volatile fatty acids

Le Zhang et al.

Summary: This study aimed to investigate the influence of different types of plastics on reactor performance and microbial communities during acidogenic fermentation of food waste for VFA production. The results showed that PS had the best enhancement effect on total VFA yields. FESEM results confirmed limited degradation of various plastics, and bacterial analysis revealed changes in community diversity when different plastics were added.

BIORESOURCE TECHNOLOGY (2021)

Article Energy & Fuels

Production Line Optimization to Minimize Energy Cost and Participate in Demand Response Events

Bruno Mota et al.

Summary: This paper proposes a method to optimize the scheduling of tasks in a production line using genetic algorithms, taking into account the availability of renewable energy sources and energy prices, allowing users to manage their energy consumption based on prices and availability.

ENERGIES (2021)

Article Engineering, Environmental

Climate Change Impacts of Electricity Generated at a Waste-to-Energy Facility

Alyssa R. Pfadt-Trilling et al.

Summary: Combustion is the main source of greenhouse gas emissions from waste-to-energy facilities, with the nonbiogenic fraction of the waste playing a significant role in climate change impact. The fraction of methane from landfills that is not captured is the most influential variable under system expansion. The climate change impact of waste-to-energy facilities can range from below that of renewable energy to comparable to natural gas based electricity with system expansion.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2021)

Editorial Material Green & Sustainable Science & Technology

Smart energy management and recovery towards Sustainable Energy System Optimisation with bio-based renewable energy

Peng Yen Liew et al.

Summary: This Virtual Special Issue features extensions of papers presented at the 22nd Conference of Process Integration, Modelling and Optimisation for Energy Saving and Pollution Reduction (PRES'19) related to Renewable and Sustainable Energy Reviews, covering topics such as energy recovery, bio-based renewable energy, energy system management, and data-driven energy management. The ultimate goal of these developments is to bridge the gaps for achieving the average global temperatures rise target set by the United Nations Framework Convention on Climate Change.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2021)

Article Environmental Sciences

Removal of polystyrene and polyethylene microplastics using PAC and FeCl3 coagulation: Performance and mechanism

Guanyu Zhou et al.

Summary: This study investigated the removal performance of PS and PE microplastics using PAC and FeCl3 coagulants. Results showed that PAC was more effective than FeCl3, especially in alkaline conditions. Adsorption and complexation were the main removal mechanisms, with the formation of new bonds enhancing the efficiency.

SCIENCE OF THE TOTAL ENVIRONMENT (2021)

Review Green & Sustainable Science & Technology

A review of recent developments and future prospects in gasification systems and their modeling

Isam Janajreh et al.

Summary: Gasification technology is experiencing a revival in response to the need for global warming mitigation, with increased capacity and efficiency driving its growth. Despite the vast amount of studies and information available, there is a lack of comprehensive organization, particularly in terms of addressing gasification challenges and integrating it with other technologies. Recent developments and future prospects focus on utilizing a variety of feed materials for gasification, improving efficiencies, and exploring new avenues for research and development in this evolving field of thermochemical conversion.

RENEWABLE & SUSTAINABLE ENERGY REVIEWS (2021)

Article Polymer Science

Waste-to-Energy: Production of Fuel Gases from Plastic Wastes

Cheuk-Fai Chow et al.

Summary: A new mechanochemical method was developed to convert polymer wastes into fuel gases, where the activation followed the hydrogen atom transfer mechanism. Metal oxidant molecules abstracted hydrogen atoms from substrates, resulting in the production of H-2, CH4, and CO gases.

POLYMERS (2021)

Review Microbiology

Potential Use of Microbial Enzymes for the Conversion of Plastic Waste Into Value-Added Products: A Viable Solution

Muhammad Tamoor et al.

Summary: The widespread use of commercial polymers composed of a mixture of polylactic acid and polyethene terephthalate (PLA-PET) in bottles and other packaging materials has caused a massive environmental crisis. The enzymatic hydrolysis of PLA-PET contaminants plays a vital role in environmentally friendly strategies for plastic waste recycling and degradation. Various enzymes and strategies for the utilization of PLA-PET's carbon content as C1 building blocks for the production of new plastic monomers and value-added products were discussed in detail.

FRONTIERS IN MICROBIOLOGY (2021)

Review Ornithology

Birds and plastic pollution: recent advances

Limin Wang et al.

Summary: Birds, susceptible to environmental influences, can be utilized to assess the negative impacts of pollution. Plastic waste and debris have detrimental effects on the health and survival of birds, calling for heightened attention.

AVIAN RESEARCH (2021)

Article Environmental Sciences

Enhanced biodegradation of total petroleum hydrocarbons by implementing a novel two-step bioaugmentation strategy using indigenous bacterial consortium

Ipsita Dipamitra Behera et al.

Summary: In this study, a two-step bioaugmentation strategy (TSBS) using indigenous bacterial consortium showed enhanced degradation of total petroleum hydrocarbons (TPH) from petroleum refinery sludge (PRS). The TSBS resulted in a higher TPH degradation rate compared to a single-step bioaugmentation strategy (SSBS) within a 15-day incubation period, demonstrating its effectiveness in TPH removal.

JOURNAL OF ENVIRONMENTAL MANAGEMENT (2021)

Review Environmental Sciences

Microplastics: An overview on separation, identification and characterization of microplastics

Anita Tirkey et al.

Summary: Plastic residues pose a serious threat to the environment, with microplastics being difficult to remove due to their small size, while nanoplastics are even smaller. Sampling methods for microplastics include sieving and filtration, with identification techniques such as SEM-EDS and FTIR.

MARINE POLLUTION BULLETIN (2021)

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Plastics degradation by microbes: A sustainable approach

Zeenat et al.

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JOURNAL OF KING SAUD UNIVERSITY SCIENCE (2021)

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Energy from biomass and plastics recycling: a review

Samuel Oluwafikayo Adegoke et al.

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COGENT ENGINEERING (2021)

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Low-energy catalytic methanolysis of poly(ethyleneterephthalate)

Duong Dinh Pham et al.

Summary: In this study, a low-energy catalytic route for methanolysis to convert PET resin to DMT was developed, achieving high DMT selectivity at ambient temperature by controlling the moisture level. The PET depolymerization apparently proceeded through two series of reaction steps, and the degradation of PET had a relatively low activation energy of 66.5 kJ mol(-1), which was accountable for catalytic methanolysis of PET at ambient conditions.

GREEN CHEMISTRY (2021)

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Nitin Patwa et al.

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Delineating and preventing plastic waste leakage in the marine and terrestrial environment

John N. Hahladakis

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Environmental exposure to microplastics: An overview on possible human health effects

Joana Correia Prata et al.

SCIENCE OF THE TOTAL ENVIRONMENT (2020)

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Ali Chamas et al.

ACS SUSTAINABLE CHEMISTRY & ENGINEERING (2020)

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Global distribution of microplastics and its impact on marine environment-a review

Nithin Ajith et al.

ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH (2020)

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(Micro)plastic crisis: Un-ignorable contribution to global greenhouse gas emissions and climate change

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Fei Miao et al.

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Periphytic biofilm: An innovative approach for biodegradation of microplastics

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SCIENCE OF THE TOTAL ENVIRONMENT (2020)

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SCIENCE OF THE TOTAL ENVIRONMENT (2020)

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CHEMOSPHERE (2020)

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Microplastic accumulation in the gastrointestinal tracts in birds of prey in central Florida, USA

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MARINE POLLUTION BULLETIN (2019)

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ENVIRONMENTAL SCIENCE & TECHNOLOGY LETTERS (2019)

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Biodegradation of polyethylene microplastics by the marine fungus Zalerion maritimum

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