| 000 | 03836nas a2200421 a 4500 | ||
|---|---|---|---|
| 005 | 20260817172959.0 | ||
| 008 | 130313s2011 th uu|m rtt 0| a1eng d | ||
| 035 | _a.b12115915 | ||
| 099 | 9 | _aAIT Thesis no.ET-11-02 | |
| 100 | 0 | _aPipat Poopeerasupong | |
| 245 | 1 | 0 |
_aCO2 emission and mitigation strategies in a city: _ba case study of Bangkok |
| 260 |
_aPathum Thani, Thailand : _bAsian Institute of Technology, _c2011 |
||
| 300 |
_a210 p. : _bill. |
||
| 490 | 1 |
_aThesis ; _vno. ET-11-02 |
|
| 502 | _aThesis (M.Eng.) - Asian Institute of Technology, 2011 | ||
| 500 | _aA thesis submitted in partial fulfillment of the requirements for the degree of Master of Engineering in Energy. | ||
| 520 | _aThis thesis analyzes the change in C02 emission from energy sector in Bangkok during 2004-2009 to understand what are the factors effecting the change in C02 emission in Bangkok. In addition, this thesis forecasts C02 emission from energy sector in Bangkok during 2010-2035 based on business-as-usual scenario and suggests policy options to mitigate C02 emission by 15% from the BAU scenario in 2035. The Logarithmic Mean Divisia Index Decomposition (LMDI) is used to analyze the change in C02 emission, while the Long-range Energy Alternatives Planning System (LEAP) is used to forecast C02 emission. Given the close linkage between final energy consumption and C02 emission, this thesis also includes final energy consumption as part of the analysis. The analysis on time-series statistics during 2004-2009 confirms that C02 emission has close linkage with final energy consumption, which has been dominated by petroleum products, electricity, natural gas and coal respectively. The change in aggregate C02 emission has been mainly attributed to the change in level of energy consumption, with increasing role from the changes in energy mix and C02 intensity. The forecast on C02 emission during 2010-2035 by LEAP is based on four economic sectors; residential, industrial, transport and commercial sectors. Under business-as-usual scenario where there is no additional intervention on mitigation policy, C02 emission in 2035 would be almost twice of C02 emission in 2010. Eleven C02 mitigation measures are proposed under the mitigation policy scenario comprising of eight measures to reduce final energy consumption and three measures to switch fuel. Under the mitigation policy scenario, C02 emission in Bangkok would be reduced by 15.2% from business-as-usual scenario in 2035 in accordance with objective of the study. | ||
| 650 | 0 |
_aCarbon dioxide mitigation _zThailand _zBangkok |
|
| 700 | 1 |
_aMarpaung, Charles O.P., _eChairperson |
|
| 700 | 0 |
_aSivanappan Kumar, _eExamination committee |
|
| 700 | 0 |
_aRanjith Perera, _eExamination committee |
|
| 710 | 2 |
_aRoyal Thai Government Fellowship, _eScholarship donor |
|
| 810 | 2 |
_aAsian Institute of Technology. _tThesis ; _vno. ET-11-02 |
|
| 856 |
_3Full-Text _uhttp://203.159.5.9/ait-thesis/detail.php?q=B11578 |
||
| 907 |
_a.b12115915 _bmnait _cz |
||
| 902 | _a240403 | ||
| 998 |
_b0 _c130313 _dm _ea _fz _g0 |
||
| 962 |
_a000:001:PDF:b1211591:000887:0:0:0:0:0:0 _tAbstract _vn |
||
| 945 | _lmnait | ||
| 945 | _lmnait | ||
| 945 | _lmnarc | ||
| 942 | _c20 | ||
| 942 | _c40 | ||
| 909 |
_aBarcode : 30050120603567 _bCREATED : 2013-03-13 _cRECORD # : i12726424 _dLPATRON : 1011379 _eLCHKIN : 2014-02-27 _f# RENEWALS : 0 _g# OVERDUE : 0 _hIUSE3 : 0 _iTOT CHKOUT : 1 _jTOT RENEW : 0 |
||
| 909 |
_aBarcode : 30050120387070 _bCREATED : 2011-10-15 _cRECORD # : i12726436 _dLPATRON : 1027425 _eLCHKIN : 2018-01-10 _f# RENEWALS : 0 _g# OVERDUE : 0 _hIUSE3 : 1 _iTOT CHKOUT : 7 _jTOT RENEW : 5 |
||
| 909 |
_aBarcode : 30050120368310 _bCREATED : 2016-08-06 _cRECORD # : i13023019 _dLPATRON : 0 _eLCHKIN : - _f# RENEWALS : 0 _g# OVERDUE : 0 _hIUSE3 : 0 _iTOT CHKOUT : 0 _jTOT RENEW : 0 |
||
| 999 |
_c18244 _d18244 |
||