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1.
CO2捕集回收技术研究   总被引:3,自引:0,他引:3  
主要介绍了常用的胺化合物吸收法、钙基吸收剂法、金属氧化物法等CO2捕集回收技术的最新研究进展及存在的问题,综合对比了各种方法的优缺点:胺化合物吸收法吸收速率快,但再生能耗较高,因此开发"高效低耗"的复合吸收剂成为研究的重点;钙基吸收剂法在高温环境下对CO2的吸收有较好的效果,但吸收剂的碳酸化转化率及热稳定性是有待解决的关键问题;金属氧化物法具有高的CO2吸收效率,但成本较高.在此基础上,探索了CO2捕集回收技术改进工艺,提出改善吸收剂性能、开发高效低耗的CO2选择性吸收剂将成为今后CO2捕集回收技术的研究方向.  相似文献   

2.
钙基吸附剂捕集生物质燃气中的二氧化碳   总被引:2,自引:0,他引:2  
生物质热解燃气中CO2的捕集,是提高燃气热值和实现碳减排的关键问题之一。为利用生物质热解燃气温度偏高的特点,拟通过化学吸附方法,捕集燃气中高浓度的CO2。为此,利用不同钙基前驱物制备了系列钙基固体吸附剂,系列钙基固体吸附剂对CO2的单次吸附和循环吸附实验结果表明,含钙和镁氧化物混合物的吸附剂具有较稳定的循环吸附特性以及较大的吸附负荷。孔结构特性分析表明,适宜于CO2吸附的有效孔径范围可能为小于4 nm。因此,可以通过对天然白云石的改性获得合适孔径的钙镁基固体吸附剂,达到有效捕集生物质燃气中CO2的目的。  相似文献   

3.
深入分析碳捕集、利用与封存(CCUS)项目捕集、运输、利用与封存等环节的主要环境问题,并借鉴现行环境影响评价(简称环评)体系,提出中国CCUS项目环评技术建议,包括CCUS项目工程分析、区域环境现状调查与评价、项目环境影响预测与评价、跟踪监测方案制定等方面。最后分析了中国目前推行CCUS项目环评制度存在的障碍:超临界CO2管道运输泄漏的风险评价模型尚未建立、封存导致的CO2渗漏的概率和规模尚不清楚以及温室气体排放影响评价所需的基本数据缺乏等,旨在为环境管理部门决策提供参考。  相似文献   

4.
新型重金属捕集剂NBMIPA处理含铜汞废水   总被引:4,自引:1,他引:3  
研究了以间苯二甲酰氯和巯基乙胺盐酸盐为原料合成的重金属捕集剂NBMIPA对单一Cu2+、Hg2+电镀废水的捕集性能。结果研究表明,NBMIPA对Cu2+和Hg2+的捕集性能优良,NBMIPA投加量越大,捕集性能越高;NBMIPA对pH具有较宽适应性。NBMIPA对于单一含铜废水可无需调pH,投加捕集剂量为废水中含量的4~5倍(摩尔比),静置后其上层清夜中所含Cu2+为0.38 mg/L,Cu2+的去除率可达99.5%以上;当NBMIPA的投加量(摩尔比)是Hg2+的3.5~4.5倍时,Hg2+的去除率达到99.83%,残余Hg2+浓度为0.032 mg/L。  相似文献   

5.
详细介绍了电除尘技术研究现状、现存问题及其发展趋势.论述了烟尘荷电凝聚机制及其输运特性等,以便解决除尘电场中的电离占空比、输运项甚低等问题;又着重研究了烟尘的荷电、凝聚的物理过程,将有助于解决电除尘器存在的捕集微细烟尘效率低的问题.  相似文献   

6.
微藻在生物减排CO2中的应用   总被引:1,自引:0,他引:1  
微藻是一类单细胞或简单多细胞的微生物,其生长快速,并能够高效地固定各种来源的CO2,包括大气和工厂排放废气中所含的CO2及溶解性的碳酸盐.CO2的固定、生物能源的制备及污水的处理相结合为目前CO2的减排提供了一种前景非常好的技术选择.论述了热化学转化法(湿式碳化、热解及直接液化)等微藻生物质制备生物能源方法的研究状况,并分析了利用微藻生物减排CO2与污水处理相结合的可能性及目前的研究进展.  相似文献   

7.
生物质能利用技术控制污染物排放的作用   总被引:4,自引:0,他引:4  
化石燃料燃烧利用过程中排放的大量毒害气体和CO2对生态环境造成重大危害,由此产生的环境问题越来越引起世界各国的关注,相应的控制排放技术不断发展,其中生物质能利用由于其CO2零排放成为最有发展潜力的技术之一.采用LCA方法,选择生物质气化联合循环发电、生物质热裂解发电、生物质与煤混烧发电3种方案与燃煤发电进行了对比,分析生物质利用过程减排温室气体CO2、毒性气体(SOX、NOX)的作用.结果表明,在生产1 kW*h电能的生命周期中,3种生物质发电方案的CO2排放量远远小于燃煤发电,特别是生物质气化联合循环发电和生物质热裂解发电两种方案减排CO2达到了87%~94%.由于生物质低硫和低氮特性,该两种方案中NOX和SOX的减排量也非常显著,即使是生物质与煤按1∶9(质量比)混燃都可以达到25.2%和8.9%的减排效果.综合而言,生物质能的利用,不论是气化、热解或者共燃都是减排CO2、NOX和SOX有效措施.  相似文献   

8.
针对柴油机微粒捕集器中灰烬颗粒的沉积特征,设计了一种非对称孔道微粒捕集器,基于非对称孔道微粒捕集器对微粒捕集器再生模型进行修正,分析了非对称孔道对微粒捕集器再生特性的影响。研究结果表明,增大过滤体进出口截面比能减少微粒捕集器的压力损失,降低碳烟再生时过滤壁面的最大温度,且非对称孔道能减少灰烬沉积对再生时壁面最大温度的影响,因此根据过滤体壁面厚度适当增大进出口孔道截面比可以有效提升过滤体的碳烟承载量,延长微粒捕集器的车载使用寿命。  相似文献   

9.
本文分析探讨了柴油机排气颗粒物的组成、危害及后处理技术。介绍了颗粒捕集器及其消极和积极再生方法、采用氧化催化剂或四效催化剂的催化净化器和低温等离子体 -催化净化技术。  相似文献   

10.
分析探讨了柴油机排气颗粒物的组成及危害,介绍了一种燃油催化微粒捕集器的结构及原理,结合发动机台架试验数据分析了该微粒捕集器对柴油机排气颗粒物的改善效果,同时研究了该微粒捕集器的强制再生过程以及对柴油机动力性和燃油经济性的影响.试验结果表明,该微粒捕集器具有较大的应用前景.  相似文献   

11.
The decoupling of fossil-fueled electricity production from atmospheric CO2 emissions via CO2 capture and sequestration (CCS) is increasingly regarded as an important means of mitigating climate change at a reasonable cost. Engineering analyses of CO2 mitigation typically compare the cost of electricity for a base generation technology to that for a similar plant with CO2 capture and then compute the carbon emissions mitigated per unit of cost. It can be hard to interpret mitigation cost estimates from this plant-level approach when a consistent base technology cannot be identified. In addition, neither engineering analyses nor general equilibrium models can capture the economics of plant dispatch. A realistic assessment of the costs of carbon sequestration as an emissions abatement strategy in the electric sector therefore requires a systems-level analysis. We discuss various frameworks for computing mitigation costs and introduce a simplified model of electric sector planning. Results from a "bottom-up" engineering-economic analysis for a representative U.S. North American Electric Reliability Council (NERC) region illustrate how the penetration of CCS technologies and the dispatch of generating units vary with the price of carbon emissions and thereby determine the relationship between mitigation cost and emissions reduction.  相似文献   

12.
本文介绍了由于CO2 的排放而导致的地球温升问题的基本概念,分析了燃烧化石燃料排放的CO2 作为温室气体所表现的性质及其对地球环境的影响。介绍了国际上为削减CO2 排放所采取的各种措施,着重介绍了化学吸收法、物理吸附法和膜分离法的基本原理及系统构成。  相似文献   

13.
ABSTRACT

The decoupling of fossil-fueled electricity production from atmospheric CO2 emissions via CO2 capture and sequestration (CCS) is increasingly regarded as an important means of mitigating climate change at a reasonable cost. Engineering analyses of CO2 mitigation typically compare the cost of electricity for a base generation technology to that for a similar plant with CO2 capture and then compute the carbon emissions mitigated per unit of cost. It can be hard to interpret mitigation cost estimates from this plant-level approach when a consistent base technology cannot be identified. In addition, neither engineering analyses nor general equilibrium models can capture the economics of plant dispatch. A realistic assessment of the costs of carbon sequestration as an emissions abatement strategy in the electric sector therefore requires a systems-level analysis. We discuss various frameworks for computing mitigation costs and introduce a simplified model of electric sector planning. Results from a “bottom-up” engineering-economic analysis for a representative U.S. North American Electric Reliability Council (NERC) region illustrate how the penetration of CCS technologies and the dispatch of generating units vary with the price of carbon emissions and thereby determine the relationship between mitigation cost and emissions reduction.  相似文献   

14.
The conceptual design and evaluation of a fine particle sizing and counting instrument are introduced in this paper. A corresponding laboratory prototype was developed by coupling aerodynamic particle focusing with corona charging techniques that could detect particle sizes down to 25 nm in diameter. Comparison between the prototype and a condensation particle counter (CPC) using identical monodisperse particles showed that the measurements agreed well for the particle sizes in the range of 60–300 nm.  相似文献   

15.
This study presents surface ozone (O3) and carbon monoxide (CO) measurements conducted at Bhubaneswar from December 2010 to November 2012 and attempts for the very first time a health risk assessment of the atmospheric trace gases. Seasonal variation in average 24 h O3 and CO shows a distinct winter (December to February) maxima of 38.98?±?9.32 and 604.51?±?145.91 ppbv, respectively. O3 and CO characteristics and their distribution were studied in the form of seasonal/diurnal variations, air flow patterns, inversion conditions, and meteorological parameters. The observed winter high is likely due to higher regional emissions, the presence of a shallower boundary layer, and long-range transport of pollutants from the Indo-Gangetic Plain (IGP). Large differences between daytime and nighttime O3 values during winter compared to other seasons suggest that photochemistry is much more active on this site during winter. O3 and CO observations are classified in continental and marine air masses, and continental influence is estimated to increase O3 and CO by up to 20 and 120 ppbv, respectively. Correlation studies between O3 and CO in various seasons indicated the role of CO as one of the O3 precursors. Health risk estimates predict 48 cases of total premature mortality in adults due to ambient tropospheric O3 during the study period. Comparatively low CO concentrations at the site do not lead to any health effects even during winter. This study highlights the possible health risks associated with O3 and CO pollution in Bhubaneswar, but these results are derived from point measurements and should be complemented either with regional scale observations or chemical transport models for use in design of mitigation policies.  相似文献   

16.
There is concern about the hazard of acute residential CO exposures from portable gasoline-powered generators, which can result in death or serious adverse health effects in exposed individuals. To address this hazard, the U.S. Consumer Product Safety Commission has developed low CO emission prototype generators by adapting off-the-shelf emission control technologies onto commercially available generators. A series of tests was conducted to characterize the indoor CO concentrations resulting from portable generators operating in the attached garage of a research house under seven different test house/garage configurations. The tested generators include both unmodified and modified low CO emission prototypes. It was found that CO concentrations varied widely, with peak house CO concentrations ranging from under 10 ppm to over 10,000 ppm. The highest concentrations in the house resulted from operation of the unmodified generator in the garage with the garage bay door closed and the house access door open. The lowest concentrations resulted from operation of a modified low CO emission prototype in the garage with the garage bay door open and the house access door closed. These tests documented reductions of up to 98% in CO concentrations due to emissions from two low CO emission portable generators compared to a stock generator.

Implications: Improper portable generator use has caused 800 U.S. deaths in the past 14 years. Generators operated in attached garages can cause CO to quickly reach deadly levels. Two low-emission prototypes generators were tested and had CO emissions reduced by up to 98%. Low-emission generators can reduce the risk of consumer poisonings and deaths.  相似文献   


17.
The United Nations Framework Conventions on Climate Change (UNFCCC) asks their Parties to submit a National Inventory Report (NIR) for greenhouse gas (GHG) emissions on an annual basis. However, when many countries are quickly growing their economy, resulting in substantial GHG emissions, their inventory reporting systems either have not been established or been able to be linked to planning of mitigation measures at national administration levels. The present research was aimed to quantify the GHG emissions from an environmental sector in Taiwan and also to establish a linkage between the developed inventories and development of mitigation plans. The "environmental sector" consists of public service under jurisdiction of the Taiwan Environmental Protection Administration: landfilling, composting, waste transportation, wastewater treatment, night soil treatment, and solid waste incineration. The preliminary results were compared with that of the United States, Germany, Japan, United Kingdom, and Korea, considering the gaps in the scopes of the sectors. The GHG emissions from the Taiwanese environmental sector were mostly estimated by following the default methodology in the Intergovernmental Panel on Climate Change guideline, except that of night soil treatment and waste transportation that were modified or newly developed. The GHG emissions from the environmental sectors in 2004 were 10,225 kilotons of CO2 equivalent (kt CO2 Eq.). Landfilling (48.86%), solid waste incineration (27%), and wastewater treatment (21.5%) were the major contributors. Methane was the most significant GHG (70.6%), followed by carbon dioxide (27.8%) and nitrous oxide (1.6%). In summary, the GHG emissions estimated for the environmental sector in Taiwan provided reasonable preliminary results that were consistent and comparable with the existing authorized data. On the basis of the inventory results and the comparisons with the other countries, recommendations of mitigation plans were made, including wastewater and solid waste recycling, methane recovery for energy, and waste reduction/sorting.  相似文献   

18.
Pulsed bed treatment of acid mine drainage (AMD) uses CO2 to accelerate limestone dissolution and intermittent fluidization to abrade and carry away metal hydrolysis products. Tests conducted with a prototype of 60 L/min capacity showed effective removal of H+ acidity over the range 196-584 mg/L (CaCO3) while concurrently generating surplus acid neutralization capacity. Effluent alkalinity (mg/L CaCO3) rose with increases in CO2 (DC, mg/L) according to the model Alkalinity=31.22+2.97(DC)0.5, where DC was varied from 11-726 mg/L. Altering fluidization and contraction periods from 30s/30s to 10s/50s did not influence alkalinity but did increase energy dissipation and bed expansion ratios. Field trials with three AMD sources demonstrated the process is capable of raising AMD pH above that required for hydrolysis and precipitation of Fe3+ and Al3+ but not Fe2+ and Mn2+. Numerical modeling showed CO2 requirements are reduced as AMD acidity increases and when DC is recycled from system effluent.  相似文献   

19.
Agricultural opportunities to mitigate greenhouse gas emissions   总被引:15,自引:0,他引:15  
Agriculture is a source for three primary greenhouse gases (GHGs): CO(2), CH(4), and N(2)O. It can also be a sink for CO(2) through C sequestration into biomass products and soil organic matter. We summarized the literature on GHG emissions and C sequestration, providing a perspective on how agriculture can reduce its GHG burden and how it can help to mitigate GHG emissions through conservation measures. Impacts of agricultural practices and systems on GHG emission are reviewed and potential trade-offs among potential mitigation options are discussed. Conservation practices that help prevent soil erosion, may also sequester soil C and enhance CH(4) consumption. Managing N to match crop needs can reduce N(2)O emission and avoid adverse impacts on water quality. Manipulating animal diet and manure management can reduce CH(4) and N(2)O emission from animal agriculture. All segments of agriculture have management options that can reduce agriculture's environmental footprint.  相似文献   

20.
Biofiltration is an economical air pollution control (APC) technology, particularly suitable for the treatment of air-streams having high flow rates and low concentrations of volatile organic compounds (VOCs). This technology utilizes enzymatic catalysis at ambient conditions to mineralize such pollutants to CO2, H2O, and salts. A pilot-scale study conducted for more than 4 years investigated the development of a new biofiltration technology employing trickle bed air biofilters (TBABs). Following the completion of this experimental study, additional data analysis was performed to develop a simple lumped-parameter biofilter model, assuming first-order kinetics. This model related the observed biofilter performance to the principle independent physical, thermodynamic, and biochemical parameters. The initial model has subsequently been expanded to incorporate Monod kinetics. In this paper, the development and use of the final explicit lumped-parameter biofilter model and design equation, incorporating Monod kinetics, are presented. To facilitate the application of this model, practical procedures are also presented for the determination of VOC solubility, VOC biokinetic Monod parameters, and the maximum practical biofilter inlet VOC concentration.  相似文献   

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