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1.
Underground coal gasification (UCG) is an advancing technology that is receiving considerable global attention as an economic and environmentally friendly alternative for exploitation of coal deposits. UCG has the potential to decrease greenhouse gas emissions (GHG) during the development and utilization of coal resources. In this paper, the life cycle of UCG from in situ coal gasification to utilization for electricity generation is analyzed and compared with coal extraction through conventional coal mining and utilization in power plants. Four life cycle assessment models have been developed and analyzed to compare (greenhouse gas) GHG emissions of coal mining, coal gasification and power generation through conventional pulverized coal fired power plants (PCC), supercritical coal fired (SCPC) power plants, integrated gasification combined cycle plants for coal (Coal-IGCC), and combined cycle gas turbine plants for UCG (UCG-CCGT). The analysis shows that UCG is comparable to these latest technologies and in fact, the GHG emissions from UCG are about 28 % less than the conventional PCC plant. When combined with the economic superiority, UCG has a clear advantage over competing technologies. The comparison also shows that there is considerable reduction in the GHG emissions with the development of technology and improvements in generation efficiencies.  相似文献   

2.
垃圾填埋场填埋气回收处理与利用   总被引:4,自引:3,他引:1       下载免费PDF全文
简单介绍了阿苏卫垃圾卫生填埋场的建设和运行情况,并对填埋场的垃圾成分和垃圾量进行了分析,得到该填埋场填埋气的实测组分.依据经典EPA产气模型对填埋场潜在填埋气产量进行了预测.结果表明,在2005-2039年的运行期间,预计该填埋场填埋气的平均产量约为33.7×106 m3/a.比较研究了填埋场填埋气的回收利用技术,指出并网发电是该填埋场填埋气的最佳利用方式.通过对填埋场填埋气发电项目进行的技术经济分析表明,该工程总投资为3 394×104元,项目年直接经济效益达230×104元.   相似文献   

3.
煤层气区域开发环境影响和管理研究   总被引:1,自引:0,他引:1  
煤层气开发激励政策和规划的实施,使其区域化和商业化开发将逐步展开。煤层气区域开发有别于常规天然气,主要表现为井网密度大、疏水降压排采和加压集输。大量煤层排水可能污染地表水、降低地下水位、影响水生态、土壤侵蚀等;井网密度大意味着要建设更多的井场、道路、管线、集气压缩站等,则单位面积地表扰动大,导致景观生态破碎化和生态退化等;煤层气压缩机增压集输、其它油气田重型机械、增加的交通流量影响区域声环境质量;压缩机燃气废气、煤层气放空、扬尘对区域大气环境质量产生影响。针对煤层气开发环境问题的特殊性,提出煤层气开发应以水平井为主减少地表扰动。我国水资源极度缺乏,对煤层排水应合理处置,淡水应考虑综合利用,高矿化度水应考虑回注地下。  相似文献   

4.
煤层瓦斯压力探测新技术在寺河煤矿瓦斯防治中的应用   总被引:1,自引:0,他引:1  
寺河矿属于高瓦斯矿井,是煤层气综合开发的主要矿井之一,其煤层气开发主要分两部分,即地面煤层气井抽采与井下煤层钻孔抽采.抽采环节中对煤矿瓦斯的防治是煤矿安全生产的重要前提.本文探讨了煤层瓦斯压力探测新技术--煤层瓦斯原位探测仪在该煤矿瓦斯防治中的具体运用,该探测技术可以高效地检验瓦斯抽放效果,从而为预防瓦斯突出提供科学依...  相似文献   

5.
This paper employs a review of the technical literature to estimate the potential decrease in greenhouse gas (GHG) emissions that could be achieved by increasing the application of gas engines in China in three sectors: urban public transport vehicle; shipping; and thermal power plants. China’s gas engine development strategies and three types of gas resource are discussed in the study, which indicates that gas engines could decrease GHG emissions by 520 megatonnes (Mt) of carbon dioxide equivalent (CO2e) by 2020. This would account for 9.7 % of the government’s target for decreasing GHG emissions and is dominated by methane recovery from the use of coal mine gas (CMG) and landfill gas (LFG) for power generation. In the public urban transport vehicle and shipping sectors the low price of natural gas and the increasing demand for the control of harmful emissions could spur the rapid uptake of gas engine vehicles. However, the development of CMG- and LFG-fuelled power plants has been limited by the unwillingness of local enterprises to invest in high-performance gas engine generators and the associated infrastructure. Therefore, further compulsory policies that promote CMG use and LFG recovery should be implemented. Moreover, strict regulations on limiting methane leakage during the production and distribution of gas fuels are urgently needed in China to prevent leakage causing GHG emissions and largely negating the climate benefits of fuel substitution. Strategies for increasing the application of gas engines, promoting gas resources and recovering methane in China are instrumental in global GHG mitigation strategies.  相似文献   

6.
Currently, most developing countries have not set up municipal solid waste management systems with a view of recovering energy from waste or reducing greenhouse gas emissions. In this article, we have studied the possible effects of introducing three energy recovery processes either as a single or combination approach, refuse derived fuel production,incineration and waste power generation, and methane gas recovery from landfill and power generation in Ulaanbaatar, Mongolia, as a case study. We concluded that incineration process is the most suitable as first introduction of energy recovery. To operate it efficiently,3Rs strategies need to be promoted. And then, RDF production which is made of waste papers and plastics in high level of sorting may be considered as the second step of energy recovery.However, safety control and marketability of RDF will be required at that moment.  相似文献   

7.
Currently, most developing countries have not set up municipal solid waste management systems with a view of recovering energy from waste or reducing greenhouse gas emissions. In this article, we have studied the possible effects of introducing three energy recovery processes either as a single or combination approach, refuse derived fuel production, incineration and waste power generation, and methane gas recovery from landfill and power generation in Ulaanbaatar, Mongolia, as a case study. We concluded that incineration process is the most suitable as first introduction of energy recovery. To operate it efficiently, 3Rs strategies need to be promoted. And then, RDF production which is made of waste papers and plastics in high level of sorting may be considered as the second step of energy recovery. However, safety control and marketability of RDF will be required at that moment.  相似文献   

8.
欧盟于2020年10月出台了《欧盟甲烷减排战略》,以支撑其中长期温室气体减排目标。该战略共提出了五个领域的24个行动方案。欧盟将油气行业作为重点,设置了两个强制性的政策来完善能源部门的温室气体监测、报告和核查制度,并禁止天然气放空和燃烧。农业领域以加强全生命周期甲烷排放核算、减排技术等方面研究,编制最佳减排实践和技术清单为主要措施。在废弃物管理领域,欧盟将主要修订废弃物管理方面的立法和废水处理标准并加强监管。全球层面,欧盟提出希望联合包括中国在内的主要油气进口国家,推动建立全球性的监测、报告和核查标准,分享其甲烷超级排放源探测的卫星数据等措施。我国提出2060碳中和愿景后,下一阶段温室气体减排将会从能源相关二氧化碳减排为主扩展到全部温室气体减排。建议我国和欧盟在甲烷减排方面开展广泛合作,借鉴欧盟的经验,尽快制定我国甲烷减排近期、中期、远期目标和行动计划,推广甲烷减排技术,加强科学研究和技术研发,探索在国家碳市场交易体系中纳入甲烷等非二氧化碳气体的时机和方案,鼓励大型能源企业加入国际甲烷减排倡议以提高能力,逐步完善我国甲烷减排相关政策和制度环境,打造我国在低碳领域的经济和技术竞争力。  相似文献   

9.
Coal production globally is projected to grow in the foreseeable future. Countries with heavy reliance on coal could reduce methane and other emissions through the capture and utilization of coal mine methane (CMM) in the short and medium term, while they pursue structural and long-term economic changes. Several countries have successfully implemented policies to promote CMM capture and utilization; however, some countries still struggle to implement projects. This paper outlines key factors to consider in adapting policies for CMM mitigation. The authors propose an approach for selecting adequate mechanisms for stimulating CMM mitigation that involves reviewing global best practices and categorizing them functionally either as mechanisms needed to improve the underlying conditions or as CMM-specific policies. It is important to understand local policy frameworks and to consider whether it is more feasible to improve underlying policy conditions or to provide targeted incentives as an interim measure.Using Kazakhstan as a case study, the authors demonstrate how policymakers could assess the overall policy framework to find the most promising options to facilitate CMM projects. Kazakhstan’s emissions from underground coal mines have been increasing both in total and per tonne of coal production, while overall production has been declining. CMM mitigation presents an opportunity for the country to reduce its greenhouse gas emissions in the near and medium term, while the government pursues sustainable development goals. Analysis shows that policymakers in Kazakhstan can leverage existing policies to stimulate utilization by extending feed-in tariffs to cover CMM and by developing working methodologies for companies to obtain emission reduction credits from CMM projects.  相似文献   

10.
强化煤层气采收率的深部煤层封存CO2技术(carbon dioxide sequestration in deep coal seams with en-hanced coalbed methane recovery,CO2-ECBM),既能减少主要人为温室气体CO2的排放,又能获得宝贵的煤层气(CH4)资源.作为重要的CO2地质封存技术,CO2-ECBM技术成为目前的研究热点.因此,针对CO2-ECBM技术开展评述工作具有重要的现实意义.针对CO2-ECBM主要研究结论包括:(1)CO2-ECBM技术优势及可行性;(2)煤储层条件下,煤体对CH4和CO2的吸附机理;(3)用于实施CO2-ECBM的备选煤层的选择标准;(4)CO2-ECBM后续研究展望.  相似文献   

11.
《Journal of Cleaner Production》2006,14(12-13):1071-1084
The South African economy is strongly based on coal as a mined resource, and various grades of coal are supplied to local and international customers. However, the environmental impacts associated with the preparation and production of different coal grades from Run of Mine (RoM) or raw coal are variable; specifically, the different mining methods used for coal extraction – opencast or underground mining – have different environmental impacts. The entire life cycles of the grades of coal must therefore be evaluated in order to compare environmental performances with supplied economic values. In this paper, a Life Cycle Impact Assessment (LCIA) methodology, based on the ISO 14040 standard, is applied for this purpose. Four cases are considered in South Africa: typical high-grade and low-grade coals from opencast and underground mines.  相似文献   

12.

China is among the largest emitters of carbon dioxide (CO2), worldwide Thus, its emissions mitigation is of global concern. The power generation sector is responsible for nearly half of China’s total CO2 emissions and plays a key role in emissions mitigation. This study is an integrated evaluation of abatement technologies, including both low-carbon power generation technologies and retrofitting options for coal power plants. We draw marginal abatement cost curves for these technologies using the conservation supply curve method. Using scenario analysis for the years 2015 to 2030, we discuss the potential performance of abatement technologies. Marginal costs for the analyzed abatement technologies range from RMB ? 357.41/ton CO2 to RMB 927.95/ton CO2. Furthermore, their cumulative mitigation potential relative to the baseline scenario could reach 35 billion tons of CO2 in 2015–2030, with low-carbon power generation technologies and coal power abatement technologies contributing 55% and 45% of the total mitigation, respectively. Our case study of China demonstrates the power generation sector’s great potential to mitigate global emissions, and we suggest nuclear power, hydropower, and the comprehensive retrofitting of coal power as key technology options for the low-carbon transition of the energy system and long-term emissions mitigation strategies.

  相似文献   

13.
2005年中国燃煤大气砷排放清单   总被引:12,自引:3,他引:12  
田贺忠  曲益萍 《环境科学》2009,30(4):956-962
燃煤排放的砷是引起大气环境污染和经济损失的重要痕量元素之一.对燃煤大气砷排放进行估算可以为砷排放法规政策的制定和选择适宜的燃煤砷污染控制技术提供依据.采用基于燃料消耗的排放因子法,按照经济部门、燃烧方式和除尘设施将燃煤排放源进行分类,根据各省区不同排放类型的煤炭消耗量和燃煤平均砷含量,建立了2005年中国燃煤大气砷排放清单. 2005年中国燃煤生产和消耗量分别为2 119.8和2 099.8 Mt.燃煤导致的大气砷排放总量估算约为1 564.4 t,其中排放量最大的省区是山东(144.4 t),其次是湖南(141.1 t)、河北(108.5 t)、河南(77.7 t)、江苏(77.0 t)等,燃煤大气砷排放主要集中在中东部省区;绝大部分燃煤大气砷排放来自工业(818.8 t)和电力部门(303.4 t),分别占燃煤大气砷排放总量的52.3%和19.4%;2005年中国燃煤排放的砷大约有375.5 t是以气态形式排放到大气中,占排放总量的24%.总体上,在全国范围内燃煤大气砷污染排放控制的重点是电力和工业部门;而对于新疆、甘肃、青海、贵州等地区,还应关注生活消费燃煤引起的砷中毒事件.  相似文献   

14.
在当今能源紧缺和环境污染严重的前提下,煤层气作为一类非常规天然气,越来越受到人们的重视。传统观点认为煤层甲烷多由高温热解产生,但是根据甲烷的同位素特征来判断,世界很多地方(包括我国鄂尔多斯、淮南等地)的煤层气多属生物成因或者生物和热成因混合。同时,越来越多的生物学证据也表明种类多样的产甲烷相关微生物广泛存在于煤层伴生地层水中或者煤层样品中。这也说明生物成因的煤层气仍然在不断地产生,这也为利用生物方法促进煤层气产生和利用提供了良好的契机。本文将介绍产甲烷微生物种群构成与功能、产气途径、影响产气速率的因素,探讨我国微生物强化产煤层气并实现产业化的应用前景。  相似文献   

15.
氢燃料电池汽车动力系统生命周期评价及关键参数对比   总被引:1,自引:1,他引:0  
陈轶嵩  兰利波  郝卓  付佩 《环境科学》2022,43(8):4402-4412
发展氢燃料电池汽车被认为是解决能源安全和环境污染问题的理想解决方案之一,为量化探究氢燃料电池汽车动力系统的化石能源消耗和排放情况,运用GaBi软件建模,以新能源汽车相关技术路线为参考,构建我国氢燃料电池汽车动力系统的数据清单并对其全生命周期化石能源消耗和全球变暖潜值情况进行定量评价计算和预测分析,对不同类型的双极板、不同能量控制策略和不同制氢方式对环境的影响分别进行了对比研究,并对关键数据进行了不确定分析.结果表明,预计到2030年我国每台氢燃料电池汽车动力系统生命周期的化石能源消耗量(ADPf)、全球变暖潜值(GWP,以CO2 eq计)和酸化潜值(AP,以SO2 eq计)分别为1.35×105 MJ、9108 kg和15.79 kg.动力系统生产制造阶段的化石能源消耗和全球变暖潜值均高于使用阶段,主要原因是燃料电池堆栈和储氢罐的制造过程.金属双极板、石墨复合双极板和石墨双极板的制造工艺中石墨复合双极板的综合环境效益最好.能量控制策略的优化会使得氢能消耗降低,当氢能消耗降低22.8%时,动力系统的生命周期化石能源消耗和全球变暖潜值分别降低10.4%和8.3%.相比于甲烷蒸气重整制氢,基于混合电网电解水制氢的动力系统生命周期全球变暖潜值高出53.7%[KG-*6],而基于水电电解水制氢降低39.6%.降低动力系统生命周期化石能源消耗和全球变暖潜值的措施包括优化能量控制策略降低氢能消耗、规模化发展可再生能源发电电解水制氢产业和聚焦突破燃料电池堆栈关键技术实现性能提升.  相似文献   

16.
Currently, most developing countries have not set up municipal solid waste management systemswith a viewof recovering energy fromwaste or reducing greenhouse gasemissions. In this article, we have studied the possible effects of introducing three energy recovery processes either as a single or combination approach, refuse derived fuel production, incineration and waste power generation, and methane gas recovery from landfill and power generation in Ulaanbaatar, Mongolia, as a case study. We concluded that incineration process is the most suitable as first introduction of energy recovery. To operate it efficiently, 3Rs strategies need to be promoted. And then, RDF production which is made of waste papers and plastics in high level of sortingmay be considered as the second step of energy recovery. However, safety control and marketability of RDF will be required at that moment.  相似文献   

17.
本文对煤矿井下采煤和掘进工作面主要噪声源及其控制技术进行了系统的分析,并结合实例说明了其效果和煤矿噪声控制的发展趋势。  相似文献   

18.
陈春赐  吕永龙  贺桂珍 《环境科学》2022,43(11):4905-4913
为实现碳达峰碳中和目标,中国正致力于推动能源低碳化转型,这促进能源由煤炭向油气资源的转变.因此,中国石油和天然气系统(油气系统)的甲烷(CH4)排放日益受到关注.逸散排放包括设备泄漏、排空和火炬燃烧,涉及油气资源的开发、生产、运输、储存和分配等过程.但目前油气系统CH4逸散排放缺乏统一的核算方法,逸散排放量亦未被纳入国家温室气体清单统计之中.基于相关方法,评估了1980~2020年中国油气系统的CH4逸散排放.结果表明,油气系统的CH4逸散排放随着油气资源的生产和消费增长而快速增加,由1980年不足60万t增长至2020年的超过260万t.石油系统和天然气系统在2020年的CH4逸散排放分别达到约60万t和200万t,是1980年的1.38倍和16.6倍.油气系统的CH4逸散主要源于天然气生产、石油生产、天然气分配、天然气运输和储存,分别占总排放的41%、20%、18%和13%.天然气管道是主要的逸散设施.相比于常规油气资源开发,非常规油气资源开发的排放强度更高.研究完善了CH4逸散排放清单,可为CH4减排提供重要科学数据支持.  相似文献   

19.
Landfill gas (LFG) utilization which means a synergy between environmental protection and bioenergy recovery was investigated in this study. Pressure swing adsorption technology was used in LFG purification, and laboratory experiment, pilot-scale test, and on-site demonstration were carried out in Shenzhen, China. In the laboratory experiment, A-type carbon molecular sieve was selected as the adsorbent by comparison of several other adsorbents. The optimal adsorption pressure and adsorption time were 0.25 MPa and 2 min, respectively, under which the product generation rate was 4.5 m3/h and the methane concentration was above 90%. The process and optimization of the pilot-scale test were also reported in the paper. The product gas was of high quality compared with the National Standard of Compressed Natural Gas as Vehicle Fuel (GB18047-2000), when the air concentration in feed gas was under 10.96%. The demonstration project was composed of a collection system, production system, and utilization system. The drive performance, environmental protection performance, and economic feasibility of the product gas — as alternative fuel in passenger car, truck, and bulldozer—were tested, showing the feasibility technology for LFG utilization.  相似文献   

20.
Coal combustion and mercury pollution are closely linked, and this relationship is particularly relevant in China, the world's largest coal consumer. This paper begins with a summary of recent China-specific studies on mercury removal by air pollution control technologies and then provides an economic analysis of mercury abatement from these emission control technologies at coal-fired power plants in China. This includes a cost-effectiveness analysis at the enterprise and sector level in China using 2010 as a baseline and projecting out to 2020 and 2030. Of the control technologies evaluated, the most cost-effective is a fabric filter installed upstream of the wet flue gas desulfurization system (FF + WFGD). Halogen injection (HI) is also a cost-effective mercury-specific control strategy, although it has not yet reached commercial maturity. The sector-level analysis shows that 193 tons of mercury was removed in 2010 in China's coal-fired power sector, with annualized mercury emission control costs of 2.7 billion Chinese Yuan. Under a projected 2030 Emission Control (EC) scenario with stringent mercury limits compared to Business As Usual (BAU) scenario, the increase of selective catalytic reduction systems (SCR) and the use of HI could contribute to 39 tons of mercury removal at a cost of 3.8 billion CNY. The economic analysis presented in this paper offers insights on air pollution control technologies and practices for enhancing atmospheric mercury control that can aid decision-making in policy design and private-sector investments.  相似文献   

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