Title: ????(Biomass energy) ???(Bio-energy) ????(Biofuels) ????(Biogas)
1????(Biomass energy)???(Bio-energy)????(Biofuel
s)????(Biogas)
2? (?)?????
- ???????????????,?????????????,?????????
- ??????????????????,???????????????????????,???????
???,??????????????????????? - Biomass residues can be converted into various
non-solid fuel forms referred as biogas and
liquid biofuels.
3What is Biogas?
- Biogas is a mixture of methane (CH4), carbon
dioxide (CO2), and depending on the feedstock
used, trace gases such as nitrogen (N2), ammonia
(NH3), sulfur dioxide (SO2), hydrogen sulfide
(H2S), and hydrogen (H2). - Biogas is produced when certain bacteria
decompose biological matter in an anaerobic (no
oxygen is present, ??) environment. - This process is referred to as anaerobic
digestion (AD). - AD is a proven technology for effectively
treating the organic fraction of waste. - The treatment of waste through AD has many
benefits it leads not only to a cleaner and
healthier environment, but also produces a
renewable energy source, methane.
4A Feasibility Study on Anaerobic Digestion
Technology for Humboldt County Dairy Farms
- In the spring of 2002 SERC began a yearlong
biogas study funded by the State of California
Community Development Block Grant 01-EDBG-782. - The purpose of the study was to consider the
feasibility of implementing anaerobic digestion
(AD) technology as a means of dairy manure
(?????) management on Humboldt County dairy
farms. - Dairy cows at pasture on a Humboldt County dairy
farm
5Executive Summary
- Current trends in milk production have forced
dairies to intensify their operations. - The larger herd numbers required by today's dairy
operators in order to stay in business have led
directly to an increase in manure production. - The volume of manure has become a social and
environmental issue. Dairies also consume
significant amounts of energy in their daily
operation. - Anaerobic digestion of manure is a promising
technology that has been shown to effectively
address many of the problems associated with
manure management while providing a reliable
energy resource. - AD technology has the ability to offer
substantial benefits to dairy operators. In many
cases, without the implementation of AD
technology on U.S. farms, many farmers would have
been forced to cease their operation.
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- http//www.biogas.com.cn/news/subnews.asp?ID424k
ey
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27- Biogas Name for any flammable biologically
created gas.
28Biogas Engines
29Gobar Gas
30Dung power
31French Biogas
During both world wars, many farmers set up
biogas plants. In 1852, there were over 1,000
plants in France, but most have now been
abandoned.
32Methane CH4(??, ??)
- Sewage all vegetable matter will decompose,
giving off biogas, if it has no access to oxgen. - Biogas is about 70 methane and 30 carbon
dioxide (natural gas is almost 100 methane)
33Public Biogas
- There London sewage works use anaerobk digestion
(without air) to decompose the sewage of 6
million people. - The biogas produced (equivalent to 250,000 Galls
of petrol per day) is used to heat the incoming
sewage (this speeds up the process), or is simple
flared off (burnt) on a tall chimney.
34Indian Biogas
35Perpetual Biogas
36Marsh Gas
- The bubbles of gas rising to the surface of
stagnant ponds marshes are biogas or mash
gas. They can ignite spontaneously a phenomenon
known as will O the wisp.
37Two popular simple designs of digester
- The two digesters have been developed the
digestion process is the same in both digesters
but the gas collection method is different in
each. - Chinese fixed dome digester has a lower gas
storage capacity and requires good sealing if gas
leakage is to be prevented. - Indian floating cover biogas digester the water
sealed cover of the digester is capable of rising
as gas is produced and acting as a storage
chamber - Both have been designed for use with animal waste
or dung.
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- ????1888??
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?,??????????510.7???
40Fixed Dome Digester
http//www.biogas.nl/
41Fixed Dome Digester
http//www.biogas.nl/
42- The waste is fed into the digester via the inlet
pipe and undergoes digestion in the digestion
chamber. - The temperature of the process is quite critical
- methane producing bacteria operate most
efficiently at temperatures between 30 - 40C or
50 - 60C - and in colder - climates heat may have to be added to the chamber
to encourage the bacteria to carry out - their function. The product is a combination of
methane and carbon dioxide, typically in the - ratio of 64. Digestion time ranges from a couple
of weeks to a couple of months depending on - the feedstock and the digestion temperature. The
residual slurry is removed at the outlet and - can be used as a fertiliser.
43Floating Cover Digester
Biogas has a variety of applications. Table 1
below shows some typical applications and for
one cubic metre of biogas. Small-scale
biogas digesters usually provide fuel for
domestic lighting and cooking.
44A variety of applications for Biogas
- The table below shows some typical applications
and for one cubic metre of biogas. - Small-scale biogas digesters usually provide fuel
for domestic lighting and cooking.
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U Strategy for Biofuels)??,???????????
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?95.04.06http//stn.nsc.gov.tw/view_detail.asp?d
oc_uid0950331005kind_noA01 - http//europa.eu.int/comm/agriculture/biomass/biof
uel/com2006_34_en.pdf - http//europa.eu.int/comm/agriculture/biomass/biof
uel/index_en.htm - http//www.r-p-a.org.uk/article_default_view.fcm?a
rticleid1673subsite1