Residue Inverse Laplace Transforms in Complex

Authors

  • Rajendra B Patel  R. R. Mehta College of Science & C L Parikh Commerce, Palanpur, Gujarat, India

Keywords:

Landfill, Leachate, Health Impact, Groundwater Contamination, Waste Management, Exposure Pathways, Regulation, Mitigation.

Abstract

Landfills are commonly used for waste disposal, but they pose significant environmental and health risks due to the generation of landfill leachate. Landfill leachate is a complex mixture of organic and inorganic compounds that can percolate into the surrounding soil and water bodies, potentially leading to adverse health effects in nearby communities. This paper aims to provide a comprehensive review of the health impacts associated with landfill leachate exposure. It discusses the composition of landfill leachate, the pathways through which it can affect human health, and the potential health risks. Additionally, the paper explores current regulations and mitigation measures to minimize health hazards. By analyzing existing research, this paper sheds light on the importance of proper landfill management and waste disposal practices to safeguard public health.

References

  1. Abedin MA, Jahiruddin M (2013) Waste generation and management in Bangladesh: an overview. Asian J Med Biol Res 1:114–120. https://doi.org/10.3329/ajmbr.v1i1.25507
  2. Alam O, Qiao X (2013) An in-depth review on municipal solid waste management, treatment and disposal in Bangladesh. Sustain, Cities Soc
  3. Alam R, Ahmed Z, Howladar MF (2010) Evaluation of heavy metal contamination in water, soil and plant around the open landfll site Mogla Bazar in Sylhet. Groundw Sustain Dev, Bangladesh. https://doi.org/10.1016/j.gsd.2019.100311
  4. Akpor OB (2014) Heavy Metal Pollutants in Wastewater Efuents: Sources, Efects and Remediation. Adv Biosci Bioeng. https://doi.org/10.11648/j.abb.20140204.11
  5. Baun DL, Christensen TH (2004) Speciation of heavy metals in landfll leachate: a review. Waste Manag Res 22:3–23
  6. Christensen TH, Kjeldsen P, Bjerg PL et al (2001) Biogeochemistry of landfll leachate plumes. Appl Geochemistry 16:659–718. https:// doi.org/10.1016/S0883-2927(00)00082-2
  7. Fergusson JE (1991) The heavy elements: chemistry, environmental impact and health effects. Pergamon Press plc, Oxford, UK
  8. Fadhullah W, Kamaruddin MA, Ismail N et al (2012) Characterization of landfll leachates and its impact to groundwater and river water quality: a case study in beris lalang waste dumpsite, Kelantan. Pertanika J Sci Technol 27:633–646
  9. Gautam RK, Sharma SK, Mahiya S, Chattopadhyaya MC (2014) CHAPTER 1. Contamination of heavy metals in Aquatic media: transport, toxicity and technologies for remediation. In: Heavy metals in water. pp 1–24. https://doi.org/10.1039/9781782620 174-00001
  10. Hossain MF, Jahan E, Parveen Z et al (2011) Solid waste disposal and its impact on surrounding environment of matuail landfll site, Dhaka, Bangladesh. Am J Environ Sci 14:234–245. https://doi. org/10.3844/ajessp.2018.234.245
  11. Iswa (2013) International solid waste association report. https://www. nswai.org/docs/ISWA_Report_2013.pdf
  12. Jahan E, Nessa A, Hossain MF, Parveen Z (2013) Characteristics of municipal landfll leachate and Bangladesh. J Environ Res 29:31–39
  13. Kamal AKI, Islam MR, Hassan M et al (2012) Bioaccumulation of trace metals in selected plants within amin bazar landfll site, Dhaka, Bangladesh. Environ Process 3:179–194. https://doi.org/ 10.1007/s40710-016-0123-9
  14. Khan T (2013) Annual Report 2018–2019, WASA
  15. Kibria G, Hossain MM, Mallick D et al (2012) Trace/heavy metal pollution monitoring in estuary and coastal area of Bay of Bengal, Bangladesh and implicated impacts. Mar Pollut Bull. https://doi. org/10.1016/j.marpolbul.2016.02.021
  16. Kjeldsen P, Barlaz MA, Rooker AP et al (2002) Present and longterm composition of MSW landfll leachate: a review. Crit Rev
  17. Mishra S, Tiwary D, Ohri A, Agnihotri AK (2012) Impact of municipal solid waste landfll leachate on groundwater quality in Varanasi. India Groundw Sustain Dev 9:100230. https://doi.org/10.1016/j. gsd.2019.100230
  18. Rikta SY, Tareq SM, Uddin MK (2013) Toxic metals (Ni2+, Pb2+, Hg2+) binding afnity of dissolved organic matter (DOM) derived from diferent ages municipal landfll leachate. Appl Water Sci 8:1–8. https://doi.org/10.1007/s13201-018-0642-9
  19. Toufexi E, Tsarpali V, Efthimiou I et al (2013) Environmental and human risk assessment of landfll leachate: an integrated approach with the use of cytotoxic and genotoxic stress indices in mussel and human cells. J Hazard Mater. https://doi.org/10. 1016/j.jhazmat.2013.05.054
  20. Verma R, Dwivedi P (2011) Heavy metal water pollution-A case study. Recent Res Sci Technol 5(5):98–99
  21. Xaypanya P, Takemura J, Chiemchaisri C et al (2011) Characterization of landfll leachates and sediments in major cities of Indochina Peninsular Countries—Heavy metal partitioning in municipal solid waste leachate. Environments 5:65. https://doi.org/10.3390/ environments5060065
  22. Youcai Z (2010) Leachate generation and characteristics. In: Pollution control technology for leachate from municipal solid waste, Elsevier. https://doi.org/10.1016/B978-0-12-815813-5.00001-2

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Published

2014-11-30

Issue

Section

Research Articles

How to Cite

[1]
Rajendra B Patel, " Residue Inverse Laplace Transforms in Complex, International Journal of Scientific Research in Science, Engineering and Technology(IJSRSET), Print ISSN : 2395-1990, Online ISSN : 2394-4099, Volume 1, Issue 1, pp.293-297, -2014.