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Degradation-fragmentation of marine plastic waste and their environmental implications: A critical review
Institution:1. Environmental Science Program, Department of Biological and Environmental Sciences, College of Arts and Sciences, Qatar University, P.O. Box: 2713, Doha, Qatar;2. FEWWS Program, Center for Sustainable Development, College of Arts and Sciences, Qatar University, P.O. Box: 2713, Doha, Qatar;3. Central Laboratories Unit, Qatar University, P.O. Box: 2713, Doha, Qatar;4. Department of Chemistry and Earth Sciences, College of Arts and Sciences, Qatar University, P.O. Box: 2713, Doha, Qatar;5. Biotechnology Program, Center for Sustainable Development, College of Arts and Sciences, Qatar University, P.O. Box: 2713, Doha, Qatar
Abstract:This review critically evaluates the plastic accumulation challenges and their environmental (primarily) and human (secondarily) impacts. It also emphasizes on their degradation and fragmentation phenomena under marine conditions. In addition, it takes into account the leachability of the various chemical substances (additives) embedded in plastic products to improve their polymeric properties and extend their life. Regardless of their effectiveness in enhancing the polymeric function of plastic products, these additives can potentially contaminate air, soil, food, and water. Several findings have shown that, regardless of their types and sizes, plastics can be degraded and/or fragmented under marine conditions. Therefore, the estimation of fragmentation and degradation rates via a reliable developed model is required to better understand the marine environmental status. The main parameter, which is responsible for initiating the fragmentation of plastics, is sunlight/UV radiation. Yet, UV- radiation alone is not enough to fragment some plastic polymer types under marine conditions, additional factors are needed such as mechanical abrasion. It should be also mentioned that most current studies on plastic degradation and fragmentation centered on the primary stages of degradation. Thus, further studies are needed to better understand these phenomena and to identify their fate and environmental effects.
Keywords:Plastic waste  Degradation  Marine litter  Fragmentation  Leachate  Plastic additives  BFRs"}  {"#name":"keyword"  "$":{"id":"k0040"}  "$$":[{"#name":"text"  "_":"Brominated flame retardants  BPA"}  {"#name":"keyword"  "$":{"id":"k0050"}  "$$":[{"#name":"text"  "_":"Bisphenol A  DDT"}  {"#name":"keyword"  "$":{"id":"k0060"}  "$$":[{"#name":"text"  "_":"Dichlorodiphenyltrichloroethane  DSC"}  {"#name":"keyword"  "$":{"id":"k0070"}  "$$":[{"#name":"text"  "_":"Differential scanning calorimetry  EDCs"}  {"#name":"keyword"  "$":{"id":"k0080"}  "$$":[{"#name":"text"  "_":"Endocrine-disrupting chemicals  EDS"}  {"#name":"keyword"  "$":{"id":"k0090"}  "$$":[{"#name":"text"  "_":"Energy-dispersive X-ray spectroscopy  GPC"}  {"#name":"keyword"  "$":{"id":"k0100"}  "$$":[{"#name":"text"  "_":"Gel permeation chromatography  HDPE"}  {"#name":"keyword"  "$":{"id":"k0110"}  "$$":[{"#name":"text"  "_":"High-density polyethylene  LDPE"}  {"#name":"keyword"  "$":{"id":"k0120"}  "$$":[{"#name":"text"  "_":"Low-density polyethylene  LEDCs"}  {"#name":"keyword"  "$":{"id":"k0130"}  "$$":[{"#name":"text"  "_":"Less economically developed countries  LLDPE"}  {"#name":"keyword"  "$":{"id":"k0140"}  "$$":[{"#name":"text"  "_":"Linear low-density polyethylene  MA"}  {"#name":"keyword"  "$":{"id":"k0150"}  "$$":[{"#name":"text"  "_":"Mechanical abrasion  MEDCs"}  {"#name":"keyword"  "$":{"id":"k0160"}  "$$":[{"#name":"text"  "_":"More economically developed countries  MPs"}  {"#name":"keyword"  "$":{"id":"k0170"}  "$$":[{"#name":"text"  "_":"Microplastics  MTBE"}  {"#name":"keyword"  "$":{"id":"k0180"}  "$$":[{"#name":"text"  "$$":[{"#name":"__text__"  "_":"Methyl "}  {"#name":"italic"  "_":"tert"}  {"#name":"__text__"  "_":"-butyl ether  MW"}  {"#name":"keyword"  "$":{"id":"k0190"}  "$$":[{"#name":"text"  "_":"Molecular weight  NPs"}  {"#name":"keyword"  "$":{"id":"k0200"}  "$$":[{"#name":"text"  "_":"Nanoplastics  PAHs"}  {"#name":"keyword"  "$":{"id":"k0210"}  "$$":[{"#name":"text"  "_":"Polycyclic aromatic hydrocarbons  PBDEs"}  {"#name":"keyword"  "$":{"id":"k0220"}  "$$":[{"#name":"text"  "_":"Polybrominated diphenyl ethers  PCBs"}  {"#name":"keyword"  "$":{"id":"k0230"}  "$$":[{"#name":"text"  "_":"Polychlorinated biphenyls  PE"}  {"#name":"keyword"  "$":{"id":"k0240"}  "$$":[{"#name":"text"  "_":"Polyethylene  PET"}  {"#name":"keyword"  "$":{"id":"k0250"}  "$$":[{"#name":"text"  "_":"Polyethylene terephthalate  PM"}  {"#name":"keyword"  "$":{"id":"k0260"}  "$$":[{"#name":"text"  "_":"Particulate matter  PoLA"}  {"#name":"keyword"  "$":{"id":"k0270"}  "$$":[{"#name":"text"  "_":"Potentially leaching additives  POPs"}  {"#name":"keyword"  "$":{"id":"k0280"}  "$$":[{"#name":"text"  "_":"Persistent organic pollutants  PP"}  {"#name":"keyword"  "$":{"id":"k0290"}  "$$":[{"#name":"text"  "_":"Polypropylene  PPos"}  {"#name":"keyword"  "$":{"id":"k0300"}  "$$":[{"#name":"text"  "_":"Plastic polymers  PS"}  {"#name":"keyword"  "$":{"id":"k0310"}  "$$":[{"#name":"text"  "_":"Polystyrene  PU"}  {"#name":"keyword"  "$":{"id":"k0320"}  "$$":[{"#name":"text"  "_":"Polyurethane  PVC"}  {"#name":"keyword"  "$":{"id":"k0330"}  "$$":[{"#name":"text"  "_":"Polyvinyl chloride  PW"}  {"#name":"keyword"  "$":{"id":"k0340"}  "$$":[{"#name":"text"  "_":"Plastic waste  py-GC/MS"}  {"#name":"keyword"  "$":{"id":"k0350"}  "$$":[{"#name":"text"  "_":"Pyrolysis-gas chromatography-mass spectrometry  TOC"}  {"#name":"keyword"  "$":{"id":"k0360"}  "$$":[{"#name":"text"  "_":"Total organic carbon  UDC"}  {"#name":"keyword"  "$":{"id":"k0370"}  "$$":[{"#name":"text"  "_":"United development company  VOCs"}  {"#name":"keyword"  "$":{"id":"k0380"}  "$$":[{"#name":"text"  "_":"Volatile organic compounds  XRD"}  {"#name":"keyword"  "$":{"id":"k0390"}  "$$":[{"#name":"text"  "_":"X-ray diffraction  XRF"}  {"#name":"keyword"  "$":{"id":"k0400"}  "$$":[{"#name":"text"  "_":"X-ray fluorescence
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