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1.
在总结国内外企业层面温室气体核算指南的现状和发展趋势的基础上,指出了确定正确的核算边界、选取合适的排放核算范围以及选择准确的排放活动水平和排放因子数据,是中国编制企业温室气体核算指南面临的关键问题,并提出了完善中国企业层面温室气体核算体系的对策建议:一是完善中国企业温室气体排放管理的相关制度安排;二是现阶段选择企业作为核算边界,建立并完善重点企业和设施的温室气体直报系统;三是将外购电力和热力消费引起的间接排放也纳入核算体系中,并根据行业具体情况及未来发展趋势确定所包括的温室气体种类;四是完善数据计量及收集工作,加强统计工作能力建设;五是统一排放因子的选择规则,逐步建立中国的排放因子数据库;六是建议设定企业温室气体报告门槛。  相似文献   

2.
英国温室气体排放贸易制度的实践与评价   总被引:1,自引:0,他引:1  
温室气体排放贸易作为一种经济激励型的环境管理手段,对企业减少温室气体排放有成本效率作用。详细介绍了英国温室气体排放贸易制度框架,并对其政策的效果及存在的问题进行了评价。  相似文献   

3.
美国加州温室气体清单编制经验及其启示   总被引:1,自引:0,他引:1  
分析阐述了美国加州温室气体清单编制历程、清单边界界定原则、清单采用的方法、活动水平和排放因子数据来源、清单报告格式和最新的强制性温室气体报告制度。结合中国省级温室气体清单编制现状,提出了尽早确定电力转移排放归属地、改善统计数据基础、做好我国国民经济行业分类与IPCC部门分类对应工作、研究重点排放源温室气体报告制度等方面的建议。  相似文献   

4.
度量不同参与者已使用的温室气体排放空间是温室气体排放核算的重要问题。从人际公平视角,基于人年均温室气体排放,本文提出了温室气体排放空间使用比率及其计算公式,利用142 个国家1950-2013 年温室气体排放和人口数据进行了具体计算,并根据计算结果对这些国家进行了排序和分类。计算结果表明,美国温室气体排放空间使用比率在3.33以上,占用的排放空间远高于142 个国家的平均水平;中国处于0.50~0.70,明显低于平均水平;印度在0.30 以下,远低于平均水平。本研究表明,温室气体排放空间使用比率可支持决策者和社会各方了解参与者使用温室气体排放空间的程度,也有助于提高排放信息的透明度。  相似文献   

5.
交通运输行业是温室气体排放的主要来源之一。“双碳”目标对交通领域碳减排工作提出了更高的要求。我国交通运输行业能源消耗统计和温室气体排放测算的统计数据基础较为薄弱,目前国家层面尚未公布统一的交通运输温室气体核算方法,温室气体排放存在底数不清的问题,其核算边界、范围、方法都有待进一步明确。文中通过梳理国内外交通运输领域温室气体核算边界及测算方法,提出了适用于我国交通运输不同子领域温室气体的测算研究思路。并针对我国交通运输温室气体核算工作现存问题,从健全行业能耗与排放核算方法体系、建立交通运输能耗与碳排放数据共享机制、加强交通能耗与碳排放核算方法培训、强化数据质量管理等方面提出相应的政策建议,为我国交通运输行业温室气体排放核算工作的持续开展提供参考。  相似文献   

6.
简要概括了“十三五”规划实施以来,江西省开展温室气体浓度监测及关键领域排放核算相关工作及研究进展。1) 阐述了江西省温室气体观测站网建设现状,分析了各监测站浓度变化特征,对监测数据质量进行了评估,规范了业务服务产品;2) 基于景德镇站温室气体观测数据,开展了大气CO2和CH4浓度变化及其源汇特征相关研究,摸清其区域输送影响及源汇特征;3) 通过对卫星资料的分析研究,揭示了江西省大气温室气体浓度时空分布特征;4) 通过连续多年重点企业碳排放核查,促进了碳排放权交易市场的建立;5) 完成江西全省及11个设区市农业温室气体清单的编制,掌握了农业温室气体排放动态变化,编制发布了相关技术规范。江西省温室气体监测起步较晚,相较于山西、广东、江苏等省仍存在一定差距,亟待配备充足的资金和人员,规范台站观测业务运行,加强数据质控和技术队伍建设;此外,有必要加强各类排放过程排放因子本地测算,进一步规范碳核查工作流程,为江西省生态文明建设、绿色低碳发展及应对气候变化提供支撑。  相似文献   

7.
碳捕集、利用与封存技术(CCUS)被认为是进行温室气体深度减排最重要的技术路径之一。为了促进CCUS技术的发展与应用,欧盟、英国、美国等国家和地区一直积极倡导CCUS实施的制度化和规范化。通过对与CCUS相关的国际公约、重点国家和地区的政策、法规进行系统的梳理,以及对中国的法律制度体系和CCUS政策法规现状的整理,中国CCUS立法和监管体系建立的关键在于解决CO2的定性、地表权和地下权的确定、保障健康、安全和环境、知识产权的转移和保护、项目审批制度以及激励政策体系的建立等,应有针对性地构建CCUS政策法规体系,逐步完善CCUS政策法规环境,从而推动CCUS在中国的健康发展。  相似文献   

8.
以高能耗为主要特征的工业部门是大气污染物和温室气体的重要排放源。为推动协同管控,文中结合生态环境部在重庆市组织开展的试点工作,对工业企业NOx污染治理协同控制温室气体的效应进行了量化分析。结果表明,以末端治理为手段的NOx治理措施协同控制温室气体的效果为负,即工业企业去除1 t NOx会直接或间接增加CO2排放1.811 t,采用SNCR技术且选择氨水等非尿素类脱硝剂有助于减少工艺过程和电力间接CO2排放。2017年工业企业NOx减排导致CO2排放增加52.57万t,占重庆市能源活动CO2排放总量的0.3%。电力碳排放因子降低1%和降低5%情景下,NOx减排的总协同度将分别提高0.9%和4.3%,尤以水泥制造业的协同效果改善最明显。减少尿素使用和提高电力低碳化程度有助于降低工业领域NOx减排对CO2排放的负协同效果。  相似文献   

9.
新书架     
《气象》2014,(3):388
正《金融危机前主要经济体温室气体减排路径研究》殷培红等著该书从排放总量、人均排放和排放强度三个方面概述了全球温室气体排放的国别差异和世界温室气体排放格局的变化,分析了人均排放国别差异的主要影响因素。同时从欧盟国家、伞形集团国家以及新兴经济体等三个利益集团中选择了17个典型国家,用大量的数据介绍了这些国家20年来  相似文献   

10.
陕西省温室气体排放清单研究   总被引:1,自引:0,他引:1       下载免费PDF全文
采用IPCC指南推荐的碳排放计算方法,将省级温室气体排放源分为能源活动、工业生产、农业、林业、废弃物等5个单元,全面测算了2005—2013年陕西省温室气体排放清单。结果表明:2005—2013年,陕西省温室气体排放总量和人均碳排放量逐年增长且有加速趋势,而温室气体吸收总量却增长缓慢,净温室气体排放量增长趋势显著,单位GDP碳排放量呈波动下降趋势;能源部门的温室气体排放量占总排放比例最大,为78.42%~83.36%;工业过程、农业、废弃物处理排放所占比例分别为9.57%~14.78%、3.11%~9.02%、1.25%~1.98%;林业部门表现为碳汇,约9%的CO2排放被森林吸收。  相似文献   

11.
省级土地利用变化和林业(LUCF)温室气体清单主要评估“森林和其他木质生物质生物量碳储量的变化”和“森林转化温室气体排放”两类主要温室气体的排放源或吸收汇。省级LUCF温室气体清单编制方法以政府间气候变化专门委员会(IPCC)有关国家温室气体清单指南为基础,结合中国LUCF活动的实际情况,特别是在考虑核心关键数据的可获得性与可靠性的基础上制订完成。同时还建立了适用于不同省的关键排放因子和参数数据库,旨在为科学合理地编制中国省级LUCF温室气体清单提供方法学依据。  相似文献   

12.
The main assumptions and findings are presented on a comparative analysis of three GHG long-term emissions scenarios for Brazil. Since 1990, land-use change has been the most important source of GHG emissions in the country. The voluntary goals to limit Brazilian GHG emissions pledged a reduction in between 36.1% and 38.9% of GHG emissions projected to 2020, to be 6–10% lower than in 2005. Brazil is in a good position to meet the voluntary mitigation goals pledged to the United Nations Framework Convention on Climate Change (UNFCCC) up to 2020: recent efforts to reduce deforestation have been successful and avoided deforestation will form the bulk of the emissions reduction commitment. In 2020, if governmental mitigation goals are met, then GHG emissions from the energy system would become the largest in the country. After 2020, if no additional mitigation actions are implemented, GHG emissions will increase again in the period 2020–2030, due to population and economic growth driving energy demand, supply and GHG emissions. However, Brazil is in a strong position to take a lead in low-carbon economic and social development due to its huge endowment of renewable energy resources allowing for additional mitigation actions to be adopted after 2020.

Policy relevance

The period beyond 2020 is now relevant in climate policy due to the Durban Platform agreeing a ‘protocol, legal instrument or agreed outcome with legal force’ that will have effect from 2020. After 2020, Brazil will be in a situation more similar to other industrialized countries, faced with a new challenge of economic development with low GHG energy-related emissions, requiring the adoption of mitigation policies and measures targeted at the energy system. Unlike the mitigation actions in the land-use change sector, where most of the funding will come from the national budgets due to sovereignty concerns, the huge financial resources needed to develop low-carbon transport and energy infrastructure could benefit from soft loans channelled to the country through nationally appropriate mitigation actions (NAMAs).  相似文献   

13.
Achieving the international 2 °C limit climate policy requires stringent reductions in GHG emissions by mid-century, with some countries simultaneously facing development-related challenges. South Africa is a middle-income developing country with high rates of unemployment and high levels of poverty, as well as an emissions-intensive economy. South Africa takes into account an assessment of what a fair contribution to reducing global emissions might be, and is committed to a ‘peak, plateau and decline' emissions trajectory with absolute emissions specified for 2025 and 2030, while noting the need to address development imperatives. This work utilizes an economy-wide computable general equilibrium model (e-SAGE) linked to an energy-system optimization model (TIMES) to explore improving development metrics within a 14 GtCO2e cumulative energy sector carbon constraint through to 2050 for South Africa. The electricity sector decarbonizes by retiring coal-fired power plants or replacing with concentrated solar power, solar photovoltaics and wind generation. Industry and tertiary-sector growth remains strong throughout the time period, with reduced energy intensity via fuel-switching and efficiency improvements. From 2010 to 2050, the model results in the unemployment rate decreasing from 25% to 12%, and the percentage of people living below the poverty line decreasing from 49% to 18%. Total energy GHG emissions were reduced by 39% and per capita emissions decreased by 62%.

Policy relevance

Lower poverty and inequality are goals that cannot be subordinated to lower GHG emissions. Policy documents in South Africa outline objectives such as reducing poverty and inequality with a key focus on education and employment. In its climate policy and Intended Nationally Determined Contribution (INDC), South Africa is committed to a peak, plateau and decline GHG emissions trajectory. As in many developing countries, these policy goals require major transformations in the energy system while simultaneously increasing affordable access to safe and convenient energy services for those living in energy poverty. The modelled scenario in this work focuses on employment and poverty reduction under a carbon constraint, a novel combination with results that can provide information for a holistic climate and development policy framework. This study has focused on the long term, which is important in generating clear policy signals for the necessary large-scale investments.  相似文献   

14.
How are large companies responding to the challenges of reducing their greenhouse gas (GHG) emissions? An analysis of the published climate change policies and performance of 125 large European companies is presented. The results suggest that most large European companies have now developed the management systems and processes necessary for them to effectively manage their GHG emissions and related business risks. However, there is a significant disconnect between the targets that companies set for themselves and the more ambitious targets being set by the European Union (which has committed to a 20% reduction in its emissions by 2020 against a 1990 baseline). Of the companies surveyed, just over one-third had stabilized or reduced their total GHG emissions over the period 2002–2007, and fewer than one-third expected their emissions to stabilize or reduce in the coming years. The relationship between the quality of corporate policies and performance outcomes (in terms of GHG emissions) suggests that while companies with stronger policies are likely to have relatively better performance, only a minority of those companies with the highest-quality policies are committing to absolute reductions in their GHG emissions.  相似文献   

15.
Designing effective mitigation policies for greenhouse gas (GHG) emissions from agriculture requires understanding the mechanisms by which management practices affect emissions in different agroclimatic conditions. Agricultural GHG emissions and carbon sequestration potentials have been extensively studied in the Mediterranean biome, which is a biodiversity hot spot that is highly vulnerable to environmental changes. However, the absolute magnitude of GHG emissions and the extent to which research efforts match these emissions in each production system, are unknown. Here, we estimated GHG emissions and potential carbon sinks associated with crop and livestock production systems in the Mediterranean biome, covering 31 countries and assessing approximately 10,000 emission items. The results were then combined with a bibliometric assessment of 797 research publications to compare emissions estimates obtained with research efforts for each of the studied items. Although the magnitude of GHG emissions from crop production and the associated carbon sequestration potential (261 Tg CO2eq yr−1) were nearly half of those from livestock production (367 Tg CO2eq yr−1), mitigation research efforts were largely focused on the former. As a result, the relative research intensity, which relates the number of publications to the magnitude of emissions, is nearly one order of magnitude higher for crop production than for livestock production (2.6 and 0.4 papers Tg CO2eq−1, respectively). Moreover, this mismatch is even higher when crop and livestock types are studied separately, which indicates major research gaps associated with grassland and many strategic crop types, such as fruit tree orchards, fiber crops, roots and tubers. Most life cycle assessment studies do not consider carbon sequestration, although this single process has the highest magnitude in terms of annual CO2eq. In addition, these studies employ Tier 1 IPCC factors, which are not suited for use in Mediterranean environments. Our analytical results show that a strategic plan is required to extend on-site field GHG measurements to the Mediterranean biome. Such a plan needs to be cocreated among stakeholders and should be based on refocusing research efforts to GHG balance components that have been afforded less attention. In addition, the outcomes of Mediterranean field studies should be integrated into life cycle assessment-based carbon footprint analyses in order to avoid misleading conclusions.  相似文献   

16.
The Agriculture, forestry and other land use (AFOLU) sector as a whole accounts for more than 80% of the total greenhouse gas (GHG) emission in Nepal. This study estimates the GHG emissions from the AFOLU sector in the business as usual (BAU) case during 2010–2050 and identifies the economically attractive countermeasures to abate GHG emissions from the sector at different carbon prices. It also estimates the carbon price elasticity of GHG abatement from the sector. The study finds that enteric fermentation processes in the livestock and emissions from agricultural soils are the two major contributors of GHG emission in AFOLU sector. It identifies no-regret abatement options in the AFOLU sector that could mitigate about 41.5% of the total GHG emission during 2016–2050 in the BAU scenario. There would be a net cumulative carbon sequestration of 16 million tonnes of carbon dioxide equivalent (MtCO2e) at $10 per tonne of carbon dioxide equivalent (tCO2e) during the period. Carbon price above $75/tCO2e is not found to be much effective in achieving significant additional reduction in GHG emissions from the AFOLU sector.  相似文献   

17.
基于国际碳市场建设的初始决策环境,从政治诉求、决策环境、经济基础、市场根基等4个维度的32个子指标构建了碳市场建立背景与条件指标体系,据此深入挖掘了欧盟碳排放权交易体系(EU ETS)、美国区域温室气体减排行动(RGGI)、美国西部行动倡议(WCI)等国际典型碳市场建立的背景与基础条件,并归纳出各国建立不同类型碳市场的必要条件,进而判断中国建立各类碳市场所具备的条件和不足之处。研究发现:跨界联盟型碳市场建立通常具备经济联系紧密、单个地区减排成本过高和地理位置临近等3个要点;国家型碳市场建立通常考虑到了国家强制减排责任、能源结构转型需求强烈和稳固的国家立法保障等方面;地区型碳市场的建立需满足地区减排诉求强烈与国家层面排放权立法缺失等条件;行业型碳市场建立的基础条件则包括温室气体排放集中度高、行业竞争力保护、重点行业排放需求增长和行业排放数据基础稳固等4个特征。当前,中国碳市场应重点考虑行业型与跨界联盟型碳市场并行的建设模式,进一步完善碳市场监管法律体系,加快各省市排放数据清单制作,加强地方碳市场能力建设培训,尽快完善国家型碳市场建立的基本条件,进而实现温室气体减排与产业结构升级的双重目标。  相似文献   

18.
Uncertainty analysis facilitates identification of the most important categories affecting greenhouse gas (GHG) inventory uncertainty and helps in prioritisation of the efforts needed for development of the inventory. This paper presents an uncertainty analysis of GHG emissions of all Kyoto sectors and gases for Finland consolidated with estimates of emissions/removals from LULUCF categories. In Finland, net GHG emissions in 2003 were around 69 Tg (±15 Tg) CO2 equivalents. The uncertainties in forest carbon sink estimates in 2003 were larger than in most other emission categories, but of the same order of magnitude as in carbon stock change estimates in other land use, land-use change and forestry (LULUCF) categories, and in N2O emissions from agricultural soils. Uncertainties in sink estimates of 1990 were lower, due to better availability of data. Results of this study indicate that inclusion of the forest carbon sink to GHG inventories reported to the UNFCCC increases uncertainties in net emissions notably. However, the decrease in precision is accompanied by an increase in the accuracy of the overall net GHG emissions due to improved completeness of the inventory. The results of this study can be utilised when planning future GHG mitigation protocols and emission trading schemes and when analysing environmental benefits of climate conventions.  相似文献   

19.
Over the last three decades, socio-economic, demographic and technological transitions have been witnessed throughout the world, modifying both sectorial and geographical distributions of greenhouse gas (GHG) emissions. Understanding these trends is central to the design of current and future climate change mitigation policies, requiring up-to-date methodologically robust emission inventories such as the Emissions Database for Global Atmospheric Research (EDGAR), the European Commission’s in-house, independent global emission inventory. EDGAR is a key tool to track the evolution of GHG emissions and contributes to quantifying the global carbon budget, providing independent and systematically calculated emissions for all countries.According to the results of the EDGAR v.5.0 release, total anthropogenic global greenhouse gas emissions (excluding land use, land use change and forestry) were estimated at 49.1 Gt CO2eq in 2015, 50 % higher than in 1990, despite a monotonic decrease in GHG emissions per unit of economic output. Between 1990 and 2015, emissions from developed countries fell by 9%, while emissions from low to medium income countries increased by 130%, predominantly from 2000 onwards. The 27 Member States of the European Union and the United Kingdom led the pathway for emission reductions in industrialised economies whilst, in developing countries, the rise in emissions was driven by higher emissions in China, India, Brazil and nations in the South-East Asian region. This diversity of patterns shows how different patterns for GHG emissions are and the need for identifying regionally tailored emission reduction measures.  相似文献   

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