| Literature DB >> 30906697 |
Saeid Fallahizadeh1,2, Masoumeh Rahmatinia3, Zakarya Mohammadi4, Marzieh Vaezzadeh5, Ali Tajamiri6, Hamed Soleimani7.
Abstract
CH4 has a high potential for energy production and by utilizing the proper technology, large amounts of energy can be extracted from it. This study aimed to estimate the amounts of methane emissions from the municipal solid waste landfill in Yasuj city using LandGEM software. The LandGEM model which is used for this aim is based on input data of open landfill year, land closure year, methane production rate, potential methane production capacity, and waste acceptance rate. According to the results, methane gas production during the years 2009, 2010, 2011 and 2012 was obtained to be 250, 275, 303, and 330 m3/h respectively. The results also showed that maximum methane production rate occurred during the years 2010-2012 and then reduced with a soft slope from 2012. The method and results of this research can be used for design and execute of methane gas collection systems and also, control of greenhouse gases emission for the landfills.Entities:
Keywords: LandGEM; LandGEM model; MSW; Methane; Municipal solid waste; Yasuj
Year: 2019 PMID: 30906697 PMCID: PMC6411487 DOI: 10.1016/j.mex.2019.02.013
Source DB: PubMed Journal: MethodsX ISSN: 2215-0161
Components of Yasuj municipal solid waste [23].
| Waste components | Weight average (%) | Waste components | Weight average (%) |
|---|---|---|---|
| Food waste | 76.6 | Textiles | 1.4 |
| Paper and cardboard | 4.8 | Glass | 2.4 |
| Diaper | 3.8 | Iron metals | 1.1 |
| Plastics | 6.4 | Non-iron metals | 0.33 |
| PET | 1.5 | Bread waste | 0.63 |
| Rubber and leather | 0.2 | Others | 0.84 |
Determine model parameters to run the LandGEM [29].
| Parameters | Reference | Unit | Symbol | Rate |
|---|---|---|---|---|
| Methane production | CAA | year−1 | k | 0.05 |
| Potential methane production capacity | CAA | m3/Mg | L0 | 170 |
| NMOC concentration | CAA | ppmv as hexane | – | 4000 |
| Methane content | CAA | by volume | – | 50 |
Model parameters according to Clean Air (CAA) Regulations.
Input data sheet to the LandGEM software for Yasuj.
| Year | Waste Accepted | Waste-In-Place | Year | Waste Accepted | Waste-In-Place | ||||
|---|---|---|---|---|---|---|---|---|---|
| (Mg/year) | (short tons/year) | (Mg) | (short tons) | (Mg/year) | (short tons/year) | (Mg) | (short tons) | ||
| 1991 | 5,233 | 5756 | 0 | 0 | 2001 | 19,780 | 21,758 | 105,795 | 116,374 |
| 1992 | 5,899 | 6,489 | 5,233 | 5756 | 2002 | 23,394 | 25,734 | 125,574 | 138,131 |
| 1993 | 6,871 | 7,558 | 11,131 | 12,245 | 2003 | 25,076 | 27,583 | 148,968 | 163,865 |
| 1994 | 8,216 | 9,038 | 18,002 | 19,803 | 2004 | 28,769 | 31,646 | 174,044 | 191,449 |
| 1995 | 9,581 | 10,540 | 26,218 | 28,840 | 2005 | 31,196 | 34,316 | 202,814 | 223,095 |
| 1996 | 10,887 | 11,975 | 35,800 | 39,380 | 2006 | 33,237 | 36,560 | 234,010 | 257,411 |
| 1997 | 12,068 | 13,275 | 46,687 | 51,355 | 2007 | 35,671 | 39,238 | 267,247 | 293,971 |
| 1998 | 13,643 | 15,008 | 58,755 | 64,630 | 2008 | 37,491 | 41,240 | 302,917 | 333,209 |
| 1999 | 15,798 | 17,378 | 72,398 | 79,638 | 2009 | 40,196 | 44,216 | 340,408 | 374,449 |
| 2000 | 17,598 | 19,358 | 88,196 | 97,016 | 2010 | 42,973 | 47,270 | 380,605 | 418,665 |
The number of production gases based on the LANDGEM software for Yasuj.
| Year | Total landfill gas | Methane | Carbon dioxide | Year | Total landfill gas | Methane | Carbon dioxide |
|---|---|---|---|---|---|---|---|
| (Mg/year) | (Mg/year) | (Mg/year) | (Mg/year) | (Mg/year) | (Mg/year) | ||
| 1991 | 0 | 0 | 0 | 2001 | 1.867E+03 | 4.988E+02 | 1.369E+03 |
| 1992 | 1.086E+02 | 2.902E+01 | 7.961E+01 | 2002 | 2.187E+03 | 5.842E+02 | 1.603E+03 |
| 1993 | 2.258E+02 | 6.031E+01 | 1.655E+02 | 2003 | 2.566E+03 | 6.854E+02 | 1.881E+03 |
| 1994 | 3.574E+02 | 9.547E+01 | 2.619E+02 | 2004 | 2.961E+03 | 7.910E+02 | 2.170E+03 |
| 1995 | 5.105E+02 | 1.364E+02 | 3.742E+02 | 2005 | 3.414E+03 | 9.120E+02 | 2.502E+03 |
| 1996 | 6.846E+02 | 1.829E+02 | 5.017E+02 | 2006 | 3.895E+03 | 1.040E+03 | 2.855E+03 |
| 1997 | 8.772E+02 | 2.343E+02 | 6.429E+02 | 2007 | 4.395E+03 | 1.174E+03 | 3.221E+03 |
| 1998 | 1.085E+03 | 2.898E+02 | 7.951E+02 | 2008 | 4.921E+03 | 1.315E+03 | 3.607E+03 |
| 1999 | 1.315E+03 | 3.513E+02 | 9.639E+02 | 2009 | 5.460E+03 | 1.458E+03 | 4.001E+03 |
| 2000 | 1.579E+03 | 4.218E+02 | 1.157E+03 | 2010 | 6.028E+03 | 1.610E+03 | 4.418E+03 |
Fig. 1The amount of gas emission from Yasuj landfill site from year 1991 to 2031.
Fig. 2The amount of gas production from Yasuj landfill site from 1991 to 2010.
| Subject area | Environmental Sciences. |
| More specific subject area | Landfill |
| Method name | LandGEM model |
| Name and reference of the original method | Talaiekhozani A, Bahrami S, Hashemi SMJ, Jorfi S. Evaluation and analysis of gaseous emission in landfill area and estimation of its pollutants dispersion, (case of Rodan in Hormozgan, Iran). Environmental Health Engineering and Management Journal. 2016;3(3):143-50. [ |
| Resource availability | Data is presented in this article. |