BR100 Decreased By (-0.08%)
BR30 Increased By (0.08%)
KSE100 Decreased By (-0.11%)
KSE30 Decreased By (-0.2%)
AGHA 7.53 Decreased By ▼ -0.10 (-1.31%)
BECO 5.11 Decreased By ▼ -0.46 (-8.26%)
BML 58.30 Decreased By ▼ -1.44 (-2.41%)
BOP 34.58 Increased By ▲ 0.18 (0.52%)
CNERGY 13.68 Increased By ▲ 0.57 (4.35%)
CSIL 6.30 Decreased By ▼ -0.11 (-1.72%)
FCCL 57.55 Decreased By ▼ -0.51 (-0.88%)
FFL 16.50 Increased By ▲ 0.27 (1.66%)
FNEL 1.20 Decreased By ▼ -0.01 (-0.83%)
KEL 7.36 Decreased By ▼ -0.07 (-0.94%)
KOSM 5.98 Decreased By ▼ -0.05 (-0.83%)
LOTCHEM 27.51 Decreased By ▼ -0.16 (-0.58%)
MLCF 101.93 Decreased By ▼ -0.82 (-0.8%)
NBP 203.29 Decreased By ▼ -1.77 (-0.86%)
NCPL 60.47 Increased By ▲ 0.84 (1.41%)
NPL 69.80 Increased By ▲ 1.24 (1.81%)
OGDC 318.48 Decreased By ▼ -0.44 (-0.14%)
PACE 11.12 Increased By ▲ 0.07 (0.63%)
PAEL 42.86 Decreased By ▼ -0.24 (-0.56%)
PIBTL 16.72 Increased By ▲ 0.09 (0.54%)
PPL 230.62 Increased By ▲ 1.17 (0.51%)
PRL 76.73 Increased By ▲ 5.93 (8.38%)
PTC 71.18 Increased By ▲ 0.18 (0.25%)
SSGC 27.10 Decreased By ▼ -0.31 (-1.13%)
TBL 10.28 Decreased By ▼ -0.03 (-0.29%)
TELE 8.56 Increased By ▲ 0.03 (0.35%)
TPL 23.59 Increased By ▲ 0.53 (2.3%)
TPLP 15.45 Decreased By ▼ -0.31 (-1.97%)
TREET 24.51 Decreased By ▼ -0.20 (-0.81%)
TRG 60.09 Decreased By ▼ -0.20 (-0.33%)

Energy experts believe that seaweed holds enormous potential as a biofuel alternative to coal and oil, and US-based scientists said on January 19 they have unlocked the secret of turning its sugar into energy. A newly engineered microbe can do the work by metabolising all of the major sugars in brown seaweed, potentially making it a cost-competitive alternative to petroleum fuel, said the report in the US journal Science.
The team at the Berkeley, California-based Bio Architecture Lab engineered a form of E. coli bacteria that can digest the seaweed's sugars into ethanol, it said. Unlike other microbes before, researchers found it can attack the primary sugar constituent in seaweed, known as alginate.
"Our scientists have engineered an enzyme to degrade and a pathway to metabolise the alginate, allowing us to utilise all the major sugars in seaweed, said Daniel Trunfio, chief executive officer at Bio Architecture Lab. The advance "makes the biomass an economical feedstock for the production of renewable fuels and chemicals," he said.
A company spokesman told AFP that the lab currently has four aquafarming sites in Chile where it hopes to "scale up its microbe technology as the next step on the path to commercialisation" in the next three years. Seaweed is seen as an appealing option for biofuel because, unlike corn and sugar cane, it does not use
arable land and so does not compete with crops grown for food. Less than three percent of the world's coastal waters can produce enough seaweed to replace some 60 billion gallons of fossil fuel, according to background information in the article.
At peak production, seaweed could produce 19,000 liters per hectare annually, about twice the level of ethanol productivity from sugarcane and five times higher than the ethanol productivity from corn. Funding for the research came from the US Department of Energy's Advanced Research Projects Agency, a grant from InnovaChile, and Norwegian oil giant Statoil.

Copyright Agence France-Presse, 2012

Comments

Comments are closed for this article.