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1.
微生物燃料电池中产电微生物电子传递研究进展   总被引:3,自引:0,他引:3  
微生物燃料电池集产电和污水净化为一体,作为一种新型的能源回收技术得到人们的广泛关注。从微生物燃料电池工作原理来看,电子能否顺利地传递到阳极表面对于电流的产生起着关键作用。因此,本文重点阐述了电子在产电微生物体内产生的途径、电子从微生物体内向阳极传递的不同方式以及阳极材料对产电微生物附着和电子传递的影响。从生物化学、电化学和材料学上对产电微生物体内的电子到阳极整个过程进行全面的综述。明确电子传递的关键环节,为新型高效阳极材料的开发提供思路。  相似文献   
2.
考察了高温条件下(70℃)牛粪堆肥、土壤、厌氧污泥、腐烂秸秆种接种物利用玉米秸秆水解液的产氢行为。结果表明:牛粪堆肥接种时达到最大的产气量(1355.7mL/L)和氢气产量(608.4mL/L),随后依次为腐烂秸秆、厌氧污泥和土壤。修改的Gompertz方程可以较好描述产氢量随时间变化趋势(R2>0.99)。牛粪堆肥接种时达到最大的产氢潜力(676.0mL/L),而土壤接种时的迟滞时间最小(9.8h)。DGGE图谱显示:不同接种物对应不同的微生物群落结构。Bacillus thermozeamaize,Enterobacter sp.JDM-19和Thermoanaerobacterium polysaccharolyticum strain,KMTHCJT和可能分别是牛粪堆肥,厌氧污泥和腐烂秸秆接种条件下的关键产氢微生物。  相似文献   
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 This paper deals with the present scenario of hazardous waste management practices in Thailand, and gives some insights into future prospects. Industrialization in Thailand has systematically increased the generation of hazardous waste. The total hazardous waste generated in 2001 was 1.65 million tons. It is estimated that over 300 million kg/year of hazardous waste is generated from nonindustrial, community sources (e.g., batteries, fluorescent lamps, cleansing chemicals, pesticides). No special facilities are available for handling these wastes. There are neither well-established systems for separation, storage, collection, and transportation, nor the effective enforcement of regulations related to hazardous wastes management generated from industrial or nonindustrial sectors. Therefore, because of a lack of treatment and disposal facilities, these wastes find their way into municipal wastewaters, public landfills, nearby dump sites, or waterways, raising serious environmental concern. Furthermore, Thailand does not have an integrated regulatory framework regarding the monitoring and management of hazardous materials and wastes. In addition to the absence of a national definition of hazardous wastes, limited funding has caused significant impediments to the effective management of hazardous waste. Thus, current waste management practices in Thailand present significant potential hazards to humans and the environment. The challenging issues of hazardous waste management in Thailand are not only related to a scarcity of financial resources (required for treatment and disposal facilities), but also to the fact that there has been no development of appropriate technology following the principles of waste minimization and sustainable development. A holistic approach to achieving effective hazardous waste management that integrates the efforts of all sectors, government, private, and community, is needed for the betterment of human health and the environment. Received: February 26, 2001 / Accepted: October 11, 2002  相似文献   
5.
重庆市基于排放绩效的火电行业二氧化硫总量控制研究   总被引:1,自引:0,他引:1  
唐燕秋  陈佳  熊强  唐敏  雷波 《四川环境》2006,25(4):22-24
本文介绍了排放绩效及排放绩效方法在火电行业二氧化硫总量控制方面的应用,并对重庆市火电机组及其二氧化硫排放状况进行了全面调查,根据重庆市二氧化硫污染防治的需要制定了各时段机组“十一五”期间的排放绩效控制标准,利用排放绩效方法测算了重庆市火电行业二氧化硫总量控制目标,提出了总量配额分配方法。  相似文献   
6.
风力发电场的主要环境问题   总被引:24,自引:0,他引:24  
本文介绍了风电场建设时周边环境的有利、不利影响及风力发电场选址的气象、社会自然条件,并就此提出建议。  相似文献   
7.
In age-classified population models where all parameters are known, the generation time and growth rate are calculated in a straightforward manner. For many populations, some parameters, such as juvenile survival, are difficult to estimate accurately. In a simplified population model where fecundity and survival are constant from the onset of breeding, it is known that generation time may be calculated given only adult survival, age at first reproduction, and the population growth rate. However, the assumption of constant fecundity from the onset of breeding does not hold for many populations. An extended population model allows calculation of generation time with the additional knowledge of the ratio of age-specific fecundities compared to a maximum fecundity rate. When these relative fecundities are unknown, an ad hoc adjustment to the simplified model performs well.When the study population is in an ideal environment, the optimal generation time and maximum growth rate are linked, and both may be approximated knowing only adult survival, age at first reproduction, and the relative fecundities. The maximum growth rate has important conservation implications, and calculating it correctly is therefore important. Improper use of the simplified population model to calculate the maximum growth rate, combined with a simple decision rule, leads to an average overharvest of 36%, and >60% for three of six bird species studied, compared to the full population model. By comparison, using the approximation from the extended or adjusted models results in average overharvests of only 8% (extended model) and 5% (adjusted model), and <50% for all six species (either model).  相似文献   
8.
In order to figure out the principles of acoustic leak detection for natural gas pipelines, a study on the leak-acoustics generation mechanism is carried out. The aero-acoustics generation mechanism is analyzed and when leakage occurs the wave equations of sonic sources are developed. The leak-acoustics generated by the quadrupole and dipole sonic sources are then simulated to obtain the laws of the acoustic characteristics. The simulation data are compared with the experimental data to verify the simulation accuracy under variable operating conditions. The results show that the quadrupoles and the dipoles generated by turbulent fluctuations cause leak-acoustics; the main component of pressure perturbations acquired by the dynamic pressure sensor is acoustic perturbations; both the simulation method and the experimental method can be applied to study the leak-acoustics generation mechanism of natural gas pipelines.  相似文献   
9.
以敦煌市城市生活垃圾处理场为例,分别用Scholl Canyon模型、Mgmemcon模型和IPCC推荐的一阶衰减模型(FOD)估算填埋垃圾在运营期及封场后的产气量,对比分析3种模型估算出填埋气在不同时期的产气规律,并据此进行大气环境影响评价,探讨不同产气模型的估算结果在大气环境评价等级、评价内容、大气环境质量现状监测要求和环境影响的范围及程度等方面的差异。结果表明Mgmemcon模型估算的年最大产气量最小,与其它两种方法差异较大;Scholl Canyon模型和FOD模型预测年最大产气量及相应年份一致。合理选择填埋气预测模型,是客观评价垃圾填埋场建设项目大气环境影响的基础,也是项目建设具备环境可行性的重要依据。  相似文献   
10.
风力发电项目主要环境问题及可能的解决对策   总被引:2,自引:0,他引:2  
风力发电项目环境影响集中反应在噪声和生态方面,噪声源主要是空气动力噪声、机械噪声及结构噪声。空气动力噪声是主要噪声并呈现明显的低频特征;生态环境影响体现在项目占地带来的地表植被破坏、生物量损失、地表扰动、水土流失等问题,减少项目占地是减缓生态影响的重要措施。  相似文献   
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