The Econometric Model of Ship-generated Operational Waste: The Underlying Tool for Waste Management in Container Port

Marine pollution prevention through adequate provision of garbage reception facility (GRF) is a legal obligation of every port. According to MARPOL 73/78, each port authority should explore ways to increase its ability to prevent marine pollution from ship-generated waste. The paper supports this l...

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Bibliographic Details
Main Author: Chalermpong Senarak
Format: Article
Language:English
Published: Environmental Research Institute, Chulalongkorn University 2016-03-01
Series:Applied Environmental Research
Subjects:
Online Access:https://ph01.tci-thaijo.org/index.php/aer/article/view/43548
Description
Summary:Marine pollution prevention through adequate provision of garbage reception facility (GRF) is a legal obligation of every port. According to MARPOL 73/78, each port authority should explore ways to increase its ability to prevent marine pollution from ship-generated waste. The paper supports this legal requirement by developing an econometric model for estimating the amount of operational waste delivered at GRF. The multiple regression with ordinary least squares technique was used to analyze the relationship between the amount of operational waste per month and two explanatory variables – size of ship and travelling distance from the last port of discharge. Data from 2008 to 2014 were obtained from the Port Authority of Thailand. Overall, the adjusted model fits reasonably well with the dataset and all assumptions are satisfied, implying that the estimated coefficients are more practicable to be used by port authority. It is found that, over the past decades, GRF has been provided sufficiently in comparison with the demand. However, the physical adequacy of GRF should be paid special attention during the consideration of phase-3 construction of Laem Chabang Port due to the dramatic growth of the amount of operational waste resulting from an expected rapid increase in maritime traffic.
ISSN:2287-075X