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71.
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Daniel Murdiyarso Erna S. Adiningsih 《Mitigation and Adaptation Strategies for Global Change》2007,12(1):101-112
There was a widespread misconception about the causes of vegetation and land fires in Indonesia. At a certain point, the public perceived that fires and the associated haze pollution were primarily caused by smallholders' agricultural activities. In fact, there was a variety of land-use activities including large-scale land clearing following deforestation for further land development. El Niño events and the associated dry weather were sometimes quoted by officials and the media as the cause of fires. The fire episodes from 1980 to 2000 were analysed in connection with climate anomalies and the implementation of land-use policies related to forest conversions. The analysis employs long-term climatic and sea surface temperature data to reconstruct climate distributions and anomalies including Southern Oscillation Index (SOI), Sea Surface Temperature (SST) and Outgoing Long-wave Radiation (OLR). In this study, the terrestrial carbon emissions from vegetation fires were estimated based on official statistical data on area burnt. The possible incentives for sustainable land management were discussed in the light of fire prevention. The underlying cause neglected in the discussion of Indonesian vegetation fires was forest and land development policy. Legitimated in the early 1980s, it drove massive forest conversions and the use of fires for land clearing. El Niño Southern Oscillation (ENSO) provided dry weather suitable for biomass burning and widespread fire, but it was hardly the cause of fires. The estimate of area burnt in the big fires in 1997 was about 11.6 Mha, resulting in carbon release of 1.45 Gt, equivalent to 0.73 ppmv of CO2, or almost half the annual global atmospheric CO2 growth. Based on the current carbon market price such emissions by the 1997 fire episode were worth around US$ 3.6 billion. 相似文献
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Carbon footprint of food - approaches from national input-output statistics and a LCA of a food portion 总被引:1,自引:0,他引:1
Yrjö Virtanen Sirpa KurppaMerja Saarinen Juha-Matti KatajajuuriKirsi Usva Ilmo MäenpääJohanna Mäkelä Juha GrönroosAri Nissinen 《Journal of Cleaner Production》2011,19(16):1849-1856
The aim of the study, on which this paper is based, was to provide guidance to consumers to make environmentally responsible choices in their food consumption, to assist food supply chain stakeholders to identify the key areas for environmental improvements, and to provide policy makers with a tool for monitoring the potential impacts on climate change resulting from developments within the food sector. At the macro level, the EIO-LCA model was developed specifically for the Finnish food chain; at the micro level, LCAs were performed on 30 lunch portions. The contribution of the Finnish food chain to climate change was 14%, which comprised 40% CO2 emissions, 25% CH4 emissions, and 34% N2O emissions. The share of impacts from domestic agricultural processes was the highest, at 69%. The impact of a single lunch portion ranged between 0.65 and 3.80 kg of equivalent CO2. According to the EIO-LCA model, the average impact was 7.7 kg CO2 eq/person daily. The consumer phase accounted for between 8 and 47% of the climate change impacts for homemade portions. In ready-to-eat portions industry and retail phases were emphasized, representing 25-38% of climate change impacts. We present an approach to steer the Finnish food sector onto an environmentally sustainable path; practical tools for consumers and farmers will especially need to be developed further. 相似文献
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Carbon source is a critical constraint on nutrient removal in domestic wastewater treatment. However, the functions of particulate organic matter (POM) and some organics with high molecular weight (HMW) are overlooked in the conventional process, as they cannot be directly assimilated into cells during microbial metabolism. This further aggravates the problem of carbon source shortage and thus affects the effluent quality. Therefore, to better characterize organic matter (OM) based MW distribution, microfiltration/ultrafiltration/nanofiltration (MF/UF/NF) membranes were used in parallel to fractionate OM, which obtained seven fractions. Hydrolysis acidification (HA) was adopted to manipulate the MW distribution of dissolved organic matter (DOM) and further explore the correlation between molecular size and biodegradability. Results showed that HA pretreatment of wastewater not only promoted transformation from POM to DOM, but also boosted biodegradability. After 8 hr of HA, the concentration of dissolved organic carbon (DOC) increased by 65%, from the initial value of 20.25 to 33.48 mg/L, and the biodegradability index (BOD5 (biochemical oxygen demand)/SCOD (soluble chemical oxygen demand)) increased from 0.52 to 0.74. Using MW distribution analysis and composition optimization, a new understanding on the characteristics of organics in wastewater was obtained, which is of importance to solving low C/N wastewater treatment in engineering practice. 相似文献
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尾矿高浓度排放技术的发展概况及展望 总被引:2,自引:0,他引:2
对于尾矿传统湿排技术来说,不仅坝体的稳定性差,对环境也有极大的影响,然而高浓度排放技术有效地缓解或解决了这些问题。文章从尾矿脱水、料浆输送和尾矿沉积等多方面,介绍了高浓度排放国内外发展情况,如多段式到一段式脱水和脱水设备的发展、泵压输送中泵送设备的类型,以及尾矿沉积中排放口的布置方式等。介绍了边坡角预测理论,主要包括Blight和Bentel边坡角预测模型、Kupper提出的边坡角经验公式,以及Sofra和Boger提出的边坡角经验公式。指出了高浓度排放技术存在的问题,如膏体的定义不清晰、高浓度排放的适用条件、沉积裂缝和边坡角预测模型不精确。最后总结了高浓度排放的发展趋势,如膏体排放模式、排放口的中央式布置和设备选型,如高浓度底流和处理量的脱水设备,以及高压高效率的泵送设备等。 相似文献
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利用电感耦合空气等离子体对涂覆法制备的CNT/TiO2复合电极进行射频放电改性处理.复合电极的表面形貌、润湿性及元素成分分别通过扫描电镜(SEM)、接触角测试仪、x射线光电子能谱(XPS)进行了表征.结果表明,改性后有利于苯酚吸附,电极比表面孔隙、亲水性、TiO2及含氧官能团均得以增加;循环伏安测试(CV)表明改性后电极比电容提高54%;改性后复合电极对苯酚的吸附量较改性前提高了45%.且等离子改性CNT/TiO2电极对苯酚的去除量随电压、苯酚初始浓度的增加而增加,吸附过程符合准二级动力学方程,吸附等温线符合Langmuir等温吸附模型. 相似文献