时间:2019-02-12 作者:英语课 分类:VOA标准英语2009年(九月)


英语课

Researchers around the world are trying to find alternative fuels to replace fossil fuels, which are finite and might not be available in sufficient quantities in coming decades to meet the growing world demand for energy. In addition, burning fossil fuels produces carbon dioxide, which is linked to climate change. One U.S. company may have found a partial solution to both problems by using carbon dioxide to grow algae 1, which can be used to produce fuel.
 
Sunlight from a solar collector on the roof of Utah State University's Energy Laboratory in Logan, Utah, is sent through fiber 2 optics to stimulate 3 the growth of algae, 11 Jun 2009


On a 9.6-hectare tract 4 of land on the Texas coast south of Houston, a start-up company from Florida called Algenol, in partnership 5 with the Dow Chemical company, plans to build more than 3,000 bioreactors, starting next year. The bioreactors will grow algae that can produce ethanol fuel through a special process that involves using carbon dioxide from nearby coal-burning power plants to promote faster growth of the algae.


Algenol is already testing the process with 40 bioreactors in Florida, but the partnership with Dow and the U.S. Department of Energy on the Texas project is a major leap forward.


"There are very significant capabilities 6 that Dow has that they are bringing to bear in this process," said Paul Woods, Algenol's Chief Executive Officer. "And I would say the same thing for the DOE [Department of Energy]. They will give us a financial ability to accelerate the process, to bring on more jobs, to have capabilities brought in from additional partners."


For Dow Chemical, the main focus will be producing material from algae that can be used to make plastics. The company currently uses natural gas for that purpose.


The Algenol bioreactors also produce oxygen as a byproduct and that can be fed into a power plant to burn coal more cleanly. Carbon dioxide produced by the power plant can be recycled back into the bioreactors to help promote more algae growth.


Once the site is developed, Paul Woods says the fuel it produces will be competitive with gasoline produced from petroleum 7 at nearby refineries 8.


"We do not, in any way, intend to come to market with fuel that is more expensive than gasoline," he said. "We, in fact, intend to come to market with fuel that is less expensive than gasoline."


Some energy experts and environmentalists have expressed skepticism about the benefits of biofuels, especially ethanol produced from corn. But Woods notes that algae, using Algenol's patented process, produces eight times more energy than the energy used to make it. Corn-based ethanol produces only slightly more energy than it takes to produce it. And unlike corn, algae is not grown for food.


The Alegnol process involves the long-term growth of algae with continual extraction of the ethanol rather than cooking material to produce alcohol, which is the most common way ethanol is made from corn, sugar cane 9 or waste material.


Many energy experts favor the development of electric vehicles rather than a heavy investment in biofuels. But Paul Woods says that idea is limited by the batteries used to store energy and that there is no battery currently available that can power long-haul trucks or heavy machinery 10.


"There will always be an advantage to a liquid transportation fuel. It has a lot more energy density 11 than batteries," he said. "It will for a long time, at least while I am alive. And it is not just trucks and heavy machinery. It is even for an average family taking a longer trip than just a work commute 12, you really are going to have to have transportation fuel."


Biofuels are also favored by U.S. federal energy policies. The Energy Independence and Security Act of 2007 calls for increased use of biofuels in coming decades, with a goal of producing more than 136 billion liters of renewable fuels by the 2022.



n.水藻,海藻
  • Most algae live in water.多数藻类生长在水中。
  • Algae grow and spread quickly in the lake.湖中水藻滋蔓。
n.纤维,纤维质
  • The basic structural unit of yarn is the fiber.纤维是纱的基本结构单元。
  • The material must be free of fiber clumps.这种材料必须无纤维块。
vt.刺激,使兴奋;激励,使…振奋
  • Your encouragement will stimulate me to further efforts.你的鼓励会激发我进一步努力。
  • Success will stimulate the people for fresh efforts.成功能鼓舞人们去作新的努力。
n.传单,小册子,大片(土地或森林)
  • He owns a large tract of forest.他拥有一大片森林。
  • He wrote a tract on this subject.他曾对此写了一篇短文。
n.合作关系,伙伴关系
  • The company has gone into partnership with Swiss Bank Corporation.这家公司已经和瑞士银行公司建立合作关系。
  • Martin has taken him into general partnership in his company.马丁已让他成为公司的普通合伙人。
n.能力( capability的名词复数 );可能;容量;[复数]潜在能力
  • He was somewhat pompous and had a high opinion of his own capabilities. 他有点自大,自视甚高。 来自辞典例句
  • Some programmers use tabs to break complex product capabilities into smaller chunks. 一些程序员认为,标签可以将复杂的功能分为每个窗格一组简单的功能。 来自About Face 3交互设计精髓
n.原油,石油
  • The Government of Iran advanced the price of petroleum last week.上星期伊朗政府提高了石油价格。
  • The purpose of oil refinery is to refine crude petroleum.炼油厂的主要工作是提炼原油。
精炼厂( refinery的名词复数 )
  • The efforts on closedown and suspension of small sugar refineries, small saccharin refineries and small paper mills are also being carried out in steps. 关停小糖厂、小糖精厂、小造纸厂的工作也已逐步展开。
  • Hence the sitting of refineries is at a distance from population centres. 所以,炼油厂的厂址总在远离人口集中的地方。
n.手杖,细长的茎,藤条;v.以杖击,以藤编制的
  • This sugar cane is quite a sweet and juicy.这甘蔗既甜又多汁。
  • English schoolmasters used to cane the boys as a punishment.英国小学老师过去常用教鞭打男学生作为惩罚。
n.(总称)机械,机器;机构
  • Has the machinery been put up ready for the broadcast?广播器材安装完毕了吗?
  • Machinery ought to be well maintained all the time.机器应该随时注意维护。
n.密集,密度,浓度
  • The population density of that country is 685 per square mile.那个国家的人口密度为每平方英里685人。
  • The region has a very high population density.该地区的人口密度很高。
vi.乘车上下班;vt.减(刑);折合;n.上下班交通
  • I spend much less time on my commute to work now.我现在工作的往返时间要节省好多。
  • Most office workers commute from the suburbs.很多公司的职员都是从郊外来上班的。
学英语单词
adrenaline-like
aminolipin
angle paint brush
atem
average expenditure pattern
avonleas
bartly
bashin'
be sprung
Birmingham wire gauge
bringing into
cameraless
Capnometer/capnograph
Caragana korshinskii
casts up
Cheurfas, Barrage des
coffin joint
como
cross-clamp
crossings over
cunniff
dammed
diphenacyl
disinflaming
electric conduction phenomenon
electroacoustomagnetic effect
enlaid
epaulet
error data
fracture of ischium
g-locs
genital system
grandinetti
gylcerol
had no concern with
handwound
heterocycles
high voltage radiography
horizontal motor
ideal tooth alignment
impulse sealee
in the full conviction that
independent peer review
kyphoscoliorachitis
land revision survey
level filling
linseed substitute
local post offices
lyds
main railway line
Malaba
man machine integration
mesnality
Midland Bank PLC
Mikulicz's angle
mindas
Mlicrococcus pemphigi neonatorium
monkey forecastle vessel
multiple error correcting code
newton's first law (of motion)
nonsalesmen
nonstimulation
nutramins
nystaxis
overtricks
pedalion mirum
Phlebotomus iyengari var. hainanensis
Photinia lasiogyna
practice of law
predetermincd tension
prefinals
prenubile
public-private key pair
quick change magazine
ready indicator
rebroken
Rembau
resentfluness
sclerocyclotomy
scrapbook
seafaring man
seeding plough
setches
shared routine
she'll be apples
skugry
smear me
snake gods
step faulting
supercompiler
swansboroughs
switching tubes
tandem cold strip mill
terminal-state manifold
tipping points
transverse metacarpal interosseous ligament
TURRITELLOIDEA
unavoidable stoppage
us postal services
Vierzon-Village
warm climate
wool cloth