首页
登录
职称英语
Biogas: a Solution to Many Problems In almost all developing
Biogas: a Solution to Many Problems In almost all developing
游客
2023-10-13
21
管理
问题
Biogas: a Solution to Many Problems
In almost all developing countries, the lack of adequate supplies of cheap, convenient and reliable fuel is a major problem. Rural communities depend largely on kerosene, wood and dung for their cooking and lighting needs. But kerosene is now priced out of reach of many people and wood, except in heavily forested areas, is in short supply. The search for firewood occupies a large part of the working day and has resulted in widespread deforestation.
Dung is in constant supply wherever there are farm animals and, when dried, it is convenient to store and use. But burning dung destroys its value as fertilizer, thus depriving the soil of a much needed source of humus and nitrogen.
Rural areas of developing countries are also plagued by a lack of adequate sanitation. Improper waste disposal spreads disease, contaminates water sources and provides breeding grounds for disease-carrying insect.
The problems of improving environmental hygiene, conserving resources and finding alternative sources of fuel may be unrelated. Their solutions, however, are not, as many countries experimenting with biogas technology are discovering. Biogas, a mixture of methane and carbon dioxide, is produced by the fermentation of organic matter. The process of anaerobic fermentation is a natural one occurring whenever living matter decomposes. By containing the matter—and the process—in a digester or biogas plant, the combustible gas can be trapped and used as fuel for household lighting and cooking. The digested slurry that remains can be used on the land as a soil conditioner and fertilizer.
Biogas plants have attracted much interest in recent years and they are in use in several Asian countries: 36,000 are reported in rural areas of India, 27,000 in Korea and more than 80,000 in China. In most countries the value of the gas has been the prime factor leading to their adoption: 70 per cent of India’s plants, for instance, were built during the energy and fertilizer crisis of 1975-1976—although their use in that country dates back to 1951. Similarly in Thailand and Korea, biogas is being investigated as an alternative to costly charcoal and to save compost materials from being burned.
In Japan and China, reducing pollution from animal wastes has been an important factor. Privies, hen houses and pigpens are built in proximity to the fermentation chamber in China. Examinations of the digested slurry have shown that the total number of parasite eggs was reduced by 93. 6 per cent, hookworms by 99 per cent and no schistosome flukes were found.
The greatest benefits from biogas systems, however, are probably to be derived from the ma-nurial value of the slurry, although it is not widely used outside of India and China. Vegetable farmers near Calcutta found that the digested slurry produced bigger and better tasting peas than did other fertilizers and the weight of root vegetables increased by nearly 300 per cent.
The production of biogas by fermentation of animal and vegetable wastes is a technology that has been largely developed and used in the【R1】______countries. Only very recently have scientists in the industrialized nations begun to show an interest—presumably because of the "energy【R2】______".
Family-sized-biogas【R3】______first came into widespread use in India in the 1950s in an effort to make a cleaner and more efficient use of cattle dung. The programme really expanded in the 1970s, and today there are as many as 100,000 plants throughout the world. Most are in domestic use to provide fuel for plants, but some larger units are operated in order to recycle wastes, supply fertilizer, control pollution and improve【R4】______One Chinese study has shown that digestion of animal【R5】______in the airtight digesters greatly reduces health hazards from parasitic diseases. One Indian study has estimated that the value of the fertilizer obtained is in itself greater than the cost of producing the biogas. Thus, the system is economically sound, in addition to other benefits such as a cleaner, healthier environment. [br] 【R1】
选项
答案
developing
解析
(这里要填的词应是industrialized nations的反义词,即developing countries,虽然文中并没有明确的概括。)
转载请注明原文地址:https://tihaiku.com/zcyy/3095134.html
相关试题推荐
ThomasMalthuspublishedhisEssayonthePrincipleofPopulationalmost200
ThomasMalthuspublishedhisEssayonthePrincipleofPopulationalmost200
ThomasMalthuspublishedhisEssayonthePrincipleofPopulationalmost200
ThomasMalthuspublishedhisEssayonthePrincipleofPopulationalmost200
ThomasMalthuspublishedhisEssayonthePrincipleofPopulationalmost200
ThomasMalthuspublishedhisEssayonthePrincipleofPopulationalmost200
ThomasMalthuspublishedhisEssayonthePrincipleofPopulationalmost200
ThomasMalthuspublishedhisEssayonthePrincipleofPopulationalmost200
ThomasMalthuspublishedhisEssayonthePrincipleofPopulationalmost200
ThomasMalthuspublishedhisEssayonthePrincipleofPopulationalmost200
随机试题
Readthefollowingpassageandfillineachblankwithoneword.Choosethecorr
Depression[A]Inbed,youtossandturn,unableto
水泥细度检验方法(筛析法),取试样置于清洁的负压筛中,负压应在()Pa范围
在处理极其松散、破碎、软弱底层,涌水的软弱地段及断层破碎带时,通常采用()
A.α-受体阻滞药 B.β-受体激动药 C.β-受体阻滞药 D.β、α-受
目前应用试带法测定尿液中pH,其检测范围为A.5.5~8.5B.5.0~8.5C
C第一步,本题考察非整数数列。 第二步,因后面的数字都有根号,因此考虑前面的整数也变为带根号的数字。观察到根号外面的数字有7和11,考虑构造质数数列。因此有,
含有橙皮苷的药材是A.紫杉 B.葛根 C.陈皮 D.麻黄 E.满山红
女性,29岁,结婚两年未育,现停经8周,感下腹隐痛伴阴道少许流血3天。妇科检查:
(2021年真题第2批)在项目管理中,定期进行项目目标的计划值和实际值的比较,属
最新回复
(
0
)