Page 142 - Materials Chemistry, Second Edition
P. 142
128 K. T. Lee and C. Ofori-Boateng
Henson IE (1999) Comparative ecophysiology of oil palm and tropical rain forest. In: Gurmit S,
Lim KH, Teo L, Lee K. (eds) Oil palm and the environment, Malaysian Oil Palm Growers’
Council, Kuala Lumpur, pp 9-39
Henson IE (2004) Modelling carbon sequestration and emissions related to oil palm cultivation
and associated land use change in Malaysia, MPOB technology, Malaysian Palm Oil Board,
Kuala Lumpur Malaysia. Available at http://www.mpob.gov.my
Hitchcock GS, Lewis CA, Moon DP et al (1998) Alternative road transport fuels—UK field trials,
Volume 1 analysis report, Energy Technology Support Unit, Harwell
Husain Z, Zainal ZA, Abdullah MZ (2003) Analysis of biomass-residue-based cogeneration
system in palm oil mills. Biomass Bioenergy 24:117–124
Kheok SC, Lim EE (1982) Mechanism of palm oil bleaching by montmorillonite clay activated at
various acid concentrations. J. Am. Oil Chem. Soc. 59:129–131
Edwards R, Larive, JF, Mahieu V, Rouveirolles P (2007) Well-to-wheel analysis of future
automotive fuels and powertrains in the European context, Version 2c. Report from Concawe,
EUcar and Joint Research Centre of the European Commission, Brussels
Mark A, Huijbregts J, Seppälä J (2001) Life cycle impact assessment of pollutants causing
aquatic eutrophication. LCA Methodol. doi:0.1065/Ica2001.08.060
Møller JR,Thøgersen AM, Kjeldsen MR et al. (2000) Feeding component table—Composition
and feeding value of feeding components for cattle), Report No. 91 National Committee for
Cattle, Denmark
MPOB (2006) Review of the Malaysian oil palm industry 2005. Economics and industry
development division, Malaysian Palm Oil Board, Kelana Jaya, Malaysia
MPOB (2010) Review of the Malaysian oil palm industry. Selangor, Malaysian Palm Oil Board
(MPOB), Malaysia
Ng SK, Thamboo S (1967) Nutrient contents of oil palms in Malaya. I. Nutrients required for
reproduction: fruit bunches and male inflorescence. Malay Agric J 46:3–45
Novizar N, Dwi S (2010) Life cycle assessment of biodiesel production from palm oil and
Jatropha oil in Indonesia. Biomass Asia workshop, Nov 29–Dec 01, 2010, Jakarta, Indonesia
Parish F, Sirin A, Charman D et al (2008) Assessment on peatlands, biodiversity and climate
change. Global Environment Centre, Kuala Lumpur and Wetlands, Wageningen
Pushparajah E (2002) Cultivation of oil palms in marginal areas—A revisit. In: Plantation
management: back to basics. Proceedings of national ISP Sem. 2002, Kuching, Sarawak, ISP,
Kuala Lumpur, pp 69–82
Ravigadevi S, Siti Nor AA, Ahmad Parveez GK (2002) Genetic manipulation of the oil palm-
challenges and prospects. Planter Kuala Lumpur 78:547–562
Reijnders L, Huijbregts MAJ (2008) Palm oil and the emission of carbon-based greenhouse gases.
J Cleaner Prod 16:477–482
Roger S, Jennifer C et al (2011) The role of life cycle assessment in identifying and reducing
environmental impacts of CCS. Lawrence Berkeley National Laboratory report, University of
California, CA
Román-Cuesta RM, Asbjornsen H, Salinas N et al (2011) Implications of fires on carbon budgets
in Andean cloud montane forest: The importance of peat soils and tree resprouting. For Ecol
Mngt 261:1987–1997
RSPO (The Roundtable on Sustainable Palm oil report) (2011) EU media market communica-
tions. Available via http://www.rspo.eu/. Cited 13 Nov 2011
Schmidt JH (2007) Life assessment of rapeseed oil and palm oil. Ph.D. Thesis, Part 3: lifecycle
inventory of rapeseed oil and palm oil, Dissertation. Department of Development and
Planning, Aalborg University, Aalborg
Stichnothe H, Schuchardt F (2011) Life cycle assessment of two palm oil production systems.
Biomass Bioenergy 35:3976–3984
Subramaniam V (2006) Life cycle inventory for palm kernel crushing. Unpublished data by
research officer, Vijaya Subramaniam, Engineering and processing division, energy and
environment Unit, Malaysian Palm Oil Board (MPOB), Kajang