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1.
生物能源是一种绿色可再生能源,可缓解石化能源短缺危机和环境污染,在巴西、欧美已经得到广泛应用。我国生物能源还处于发展阶段,有燃料乙醇的生产但需要国家补贴,食用油每年大量进口,非食用油类植物种植加工尚无大规模形成。我国生物能源主要面临的问题是:与人争粮食,与粮食争地。我国生物能源主要发展方向是:利用第三代生物能源技术开发林业下脚料,农业秸秆、粪,以及在荒漠,水域,边缘性地区栽种油料植物,水藻,第三代生物能源技术没有大规模在我国实现,需加大研发力度和政策支持。  相似文献   

2.
发展可再生生物质能源是解决人类能源危机和环境污染的重要途径。利用边际土地发展油脂类生物质能是生物质能的重要组成部分。蓖麻因为适应性强和油脂成份独特被誉为"理想的生物柴油植物"。蓖麻是我国优势油脂类能源植物,利用边际土地,发展蓖麻产业为我国生物柴油产业化提供原料,是我国现阶段生物柴油产业化发展的相对理想而又现实的选择,而且具有重要的发展前景和巨大的发掘潜力。立足我国现阶段生物柴油产业化的瓶颈问题,着重阐述了蓖麻种质资源发掘的现状、优良品种培育的途径和发展前景,以及利用蓖麻种子油生产商业化生物柴油的现状,以期推动我国利用边际土地发展蓖麻产业以及生物柴油商业化生产。  相似文献   

3.
能源植物研究现状和展望   总被引:51,自引:0,他引:51  
综述了常见生物能源如燃料酒精和生物柴油所涉及高等能源植物的种类、特征和应用开发现状,并展望了将来的发展趋势。  相似文献   

4.
生物能源专刊序言   总被引:1,自引:0,他引:1  
生物能源作为可再生能源,有望减少能源供给中对石油的依赖程度。近年来,我国生物能源的发展非常迅速,已经成为继巴西和美国后的第三大燃料乙醇生产国和消费国。为促进生物能源相关技术研究的发展,本期“生物能源”专刊收录了我国生物能源专家学者在燃料乙醇、生物柴油、微生物油脂、生物燃料系统分析等领域的最新研究进展。  相似文献   

5.
油菜作为优势能源作物的发展潜力与展望   总被引:12,自引:0,他引:12  
介绍了生物能源的发展趋势、国内外油菜生产、用途与发展潜力,应用油菜作为生物能源的现状、趋势与生物柴油加工技术,提出了我国加快优势能源作物发展的建议。  相似文献   

6.
中国如何突破生物柴油产业的原料瓶颈   总被引:76,自引:4,他引:72  
因应我国日益严峻的能源资源、能源环境和能源安全形势,国家大力倡导发展可再生能源。生物柴油是最重要的液体可再生燃料之一,在能源性质方面可以完全替代化石柴油,而且还具有安全环保等其它优良特性。当前利用动植物油脂生产生物柴油,原料成本偏高,而且稳定、充足的油脂原料供应体系尚未形成。我国是油脂资源短缺国家,近年来植物油进口量逐年增加。同时,我国耕地资源匮乏,粮食供应形势不容乐观,扩大油料作物种植的潜力非常有限。但是,我国宜林地丰富,农林废弃生物质资源量巨大。综合以上因素,我国应重点发展木本油料植物规模化种植和推广,加快微生物油脂发酵技术创新和产业化进程;同时,利用植物遗传育种技术提高油料作物产量以及选择性发展不与粮争地的油料作物。依靠各方面的进步,发展创新的油脂生产技术,保障我国生物柴油产业和油脂化工行业健康发展。  相似文献   

7.
利用基因工程技术改良能源植物,对降低能源植物向生物燃料(生物乙醇、生物柴油)的转化成本、提高能源转化效率有着非常重要的意义。目前,基因工程技术已被广泛应用于提高植物总的生物产量、降低或改变植物木质素的含量与成分、在植物体中大量表达纤维素降解酶、提高油料植物的产油量以及改变植物油酯的组成成分等方面的研究。概述了利用基因工程技术在以上方面对能源植物进行改良已取得的进展,讨论了现存问题及未来的发展前景。  相似文献   

8.
生物能源的研究和利用现状   总被引:5,自引:0,他引:5  
戎茜 《生物学通报》2006,41(12):24-25
能源危机和生态危机是当今世界面临的两大难题,开发可再生的、清洁的生物能源具有重要的战略意义。生物能源是指通过植物光合作用,把太阳能变成有机物而储藏的能量,包括各种植物、人畜粪便及有机废物转化成的能源,如薪柴、沼气、生物柴油、燃料  相似文献   

9.
随着传统化石能源的日益枯竭、环境污染的日益加重,世界各国都在积极寻求发展可再生能源。生物能源,尤其是包括生物乙醇和生物柴油在内的生物燃料,因其原料的可再生性和燃料使用的环境友好性,  相似文献   

10.
生物可再生能源是最有前景的石油替代品之一.生物能源的生产原料包括:植物、有机废弃物和微生物.微生物在生物能源生产上有着广泛的应用,利用微生物制备的主要生物能源包括:生物柴油、生物乙醇、生物甲烷等.某些微生物如微藻和真菌可以生产大量油脂,这些油脂可以转化为生物柴油;有些微生物如酵母可以将糖类、淀粉以及纤维素转化为燃料乙醇,添加乙醇的汽油或柴油燃烧排放明显降低;还有些厌氧微生物可以将有机废弃物转化为甲烷,可用做家用燃气、车用燃气或发电.除此之外微生物还具有在生产能源的同时治理环境污染的优势.总之研究开发微生物在生物能源生产中的应用有利于世界可持续发展.  相似文献   

11.
This review attempted to follow the establishment of a novel branch of biology arisen at the interfaces between plant physiology, biochemistry, and molecular biology—plant anaerobic stress. Most attention was given to the early period of these investigations, the activity of the members of International Society for Plant Anaerobiosis in particular, and the contribution of Russian scientists, who played a significant role at that time in the establishment and international recognition of this new trend. In this connection, the following points are considered: (1) Crawford's metabolic theory, which could not withstand experimental verification but induced an active discussion, thus stimulating further investigations in this field; (2) a concept of two main strategies of plant adaptation to anaerobic stress (true and apparent adaptation), which was put forward based on the following experimental data: (a) a discovery of a paradoxical phenomenon of hyper-sensitivity, but not hyper-resistance to anoxia, of the flood-tolerant plant roots (“apparent” tolerance); (b) the elucidation of the physiological role of oxygen transported from aerated organs of flood-tolerant plants to the roots inhabiting anaerobic environment; (c) demonstration of the key role of both energy metabolism, and (d) substrate providing for glycolysis and ethanolic fermentation in plants manifesting “true” tolerance to oxygen deprivation; (3) the discovery of plant stress proteins; and finally (4) pH-stat theory put forward by Davies.  相似文献   

12.
Bioenergy from Fallopia japonica and cow dung This article investigates whether Fallopia japonica, a rampant neophyte in Germany, is a suitable alternative to maize as an energy crop. To this end, parts of the plant which had been harvested overground were shredded, fermented in a Hohenheim Biogas Yield Test and the amount of methane produced thereby was determined. The results indicate that Fallopia japonica yields values which are comparable to the results obtained for maize and thus represents a possible alternative as an energy crop. Thus a weed could be controlled and put to an ecologically and economically efficient use. This study was carried out within student the competition by the Siemens Foundation and awarded a prize.  相似文献   

13.
A continuously operated, thermophilic, municipal biogas plant was observed over 26 months (sampling twice per month) in regard to a number of physicochemical parameters and the biogas production. Biogas yields were put in correlation to parameters such as the volatile fatty acid concentration, the pH and the ammonium concentration. When the residing microbiota was classified via analysis of the 16S rRNA genes, most bacterial sequences matched with unidentified or uncultured bacteria from similar habitats. Of the archaeal sequences, 78.4% were identified as belonging to the genus Methanoculleus, which has not previously been reported for biogas plants, but is known to efficiently use H2 and CO2 produced by the degradation of fatty acids by syntrophic microorganisms. In order to further investigate the influence of varied amounts of ammonia (2–8 g/L) and volatile fatty acids on biogas production and composition (methane/CO2), laboratory scale satellite experiments were performed in parallel to the technical plant. Finally, ammonia stripping of the process water of the technical plant was accomplished, a measure through which the ammonia entering the biogas reactor via the mash could be nearly halved, which increased the energy output of the biogas plant by almost 20%.  相似文献   

14.
城市森林建设中的植源性污染   总被引:25,自引:1,他引:24  
王成 《生态学杂志》2003,22(3):32-37
提出了植源性污染的概念,它是指由于绿色植物本身产生的物质达到某种程度,而对人体和环境产生不利的影响。重点分析了花粉、飞毛飞絮、气味等几种常见的植源性污染,介绍了产生植源性污染的植物种类,总结分析了植源性污染的防治对策。  相似文献   

15.
植物应答低温胁迫机制的研究进展   总被引:6,自引:0,他引:6  
计淑霞  戴绍军  刘炜 《生命科学》2010,(10):1013-1019
低温是植物生长过程中遇到的主要环境胁迫因子之一,而植物响应低温胁迫是一个多因素协同作用的过程,涉及到复杂的基因表达调控网络。尤其是低温下植物体内生理生化、细胞骨架结构及基因表达调控等方面的改变及相关机制,一直受到研究者的普遍关注。该文主要从细胞学及分子生物学等角度入手,将低温胁迫下植物对低温的响应及可能机制进行综述,着重对植物通过细胞内部细胞器结构与功能的改变来抵御或适应低温,尤其对细胞骨架,以及低温信号转导受体及中间体、下游胁迫相关基因的表达及其在细胞内部的调控及应答机制等方面的作用进行探讨,为耐低温植物新品种的培育及农业生产实践提供理论指导。  相似文献   

16.
An earlier experiment with the pink lady's slipper orchid demonstrated that plant leaf area was lowered only after successive years of increased fruit production. This result suggested that the cost of reproduction was small in relation to the energy budget of the plant. To test this idea, plants were subjected to experimental hand-pollination treatments to increase fruit set as well as leaf removal treatments to decrease the energy budget of plants. Changes in plant size in years 2 and 3 and, to some extent, rate of flowering, were determined by a combination of initial plant size, leaf removal treatments in year 1, fruit production in year 1, and damage from an unplanned fire in year 2. Plants that had both leaves removed and produced a fruit in 1987 decreased in size in the following 2 years in comparison with other treatment groups. The cost of fruit production was not apparent in plants that had only one or no leaves removed. Plants apparently have to be put into severe physiological stress in order for a cost of reproduction to appear in the following year. The cost of producing one fruit was a decline of plant size in the following year of 30 cm2, which is very similar to our previous experiment using a different design. An additional experiment failed to find evidence that these plants increase their photosynthetic rate to compensate for the loss of leaves or the cost of maturing fruit. Published experiments in both the greenhouse and the field that failed to find a cost of reproduction should be reevaluated in terms of the intensity of treatment imposed and the overall energy budget of the plant in field situations.  相似文献   

17.
植物过程对土壤有机碳含量的影响   总被引:8,自引:3,他引:5  
从全球和生态系统角度,综述了植物过程对土壤有机碳含量的影响和可能的作用机理,揭示了植物过程对土壤有机碳的源和汇的影响及对土壤有机碳的动态影响,讨论了植物过程对土壤有机碳影响研究的任务和发展前景,及减少土壤表层向空气呼出CO2的数量、维持现时的生态平衡的途径,指出了植物过程影响土壤有机碳的研究方向和有待解决的问题.增加植物生物量,可以增加土壤有机碳贮量.  相似文献   

18.
陆生植物体内酶系统对UV-B辐射增强的响应   总被引:1,自引:0,他引:1  
臭氧层减薄导致地表中波紫外线UV-B(280~320 nm)辐射的增强,UV-B辐射能量远高于可见光,且能被植物体内蛋白质和核酸等生物大分子吸收.酶是植物体内起催化作用的一类蛋白质,酶的数量和活性对UV-B辐射增强有强烈的响应.本文将近年来增强UV-B辐射对植物体内酶影响的研究工作进行了综述.主要包括抗氧化酶、核酮糖-1,5-二磷酸羧化酶、硝酸还原酶和谷氨酰胺合成酶.并就今后该方面的研究提出建议.  相似文献   

19.
叶面积指数的研究和应用进展   总被引:99,自引:6,他引:93  
对叶面积指数(LAI)提出50多年来,在植物光合作用、蒸腾作用、联系光合和蒸腾的关系和构成生产力基础的研究,在林分、景观以及地区尺度上对碳、能量、水分通量的研究,借助遥感技术建立森林生态系统的生长模型以及研究森林生态系统的能量和水分交换等方面的研究和应用进展进行了综述。LAI作为进行植物群体和群落生长分析的一个重要参数,已在农业、果树业、林业以及生物学、生态学等领域得到广泛应用。  相似文献   

20.
Tengyue Zou  Bing Wu  Wen Wu  Long Ge  Yong Xu 《Phyton》2020,89(2):275-289
Light is the major source of energy for plants and as such has a profound effect on plant growth and development. Red and blue lights have been considered to best drive photosynthetic metabolism and are beneficial for plant growth and development, and green light was seen as a signal to slow down or stop. In this study, Arabidopsis thaliana (Arabidopsis) was used to investigate the effects of red, blue and green lights on the growth and development of plants from seed germination to seeding. Results demonstrated that red light showed a promotion effect but blue light a prohibition one in most stages except for the flowering time in which the effect of each light was just reversed. When mixed with red or blue light, green light generally at least partially cancelled out the effects caused by each of them. Results also showed that the same number of photons the plant received could cause different effects and choosing the right combination of different color of lights is essential in both promoting the growth and development of plants and reducing the energy consumption of lighting in plant factory.  相似文献   

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