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481.
This paper considers selected efficiency rates and process data of aerobic and anaerobic procedures for the treatment of municipal solid waste and residual waste. Data are exclusively related to mechanical-biological treatment (MBT) procedures for generating waste appropriate for landfilling. The following aspects are regarded: general framework conditions for the application of MBT, efficiency of decomposition and of stabilisation, air and water emissions and energy balances. The presented data can be used for more efficient planning. In comparison to aerobic processes, anaerobic digestion can be ecologically advantageous, particularly with regard to exhaust emissions and energy balances. On the other hand, the wastewater emissions and the wastewater treatment required must be regarded as disadvantageous. Due to the relatively short period of operational history of most anaerobic processes for mechanical-biological waste treatment and thus limited experiences, operational reliability of anaerobic processes is slightly lower. Extensive biological stability of the treated waste for low-emission disposal cannot be reached by anaerobic digestion alone, but only in combination with additional aerobic post-treatment. In connection with the utilisation of renewable energies and the rising relevancy of climate protection, it can be affirmed that anaerobic digestion for the treatment of municipal solid waste has a high potential for further development. 相似文献
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The Science of Nature - 相似文献
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Klaus Eisenack Rebecca Stecker Diana Reckien Esther Hoffmann 《Mitigation and Adaptation Strategies for Global Change》2012,17(5):451-469
This paper identifies the literature that deals with adaptation to climate change in the transport sector. It presents a systematic
review of the adaptations suggested in the literature. Although it is frequently claimed that this socially and economically
important sector is particularly vulnerable to climate change, there is comparatively little research into its adaptation.
The 63 sources we found are analysed following an action framework of adaptation. This distinguishes different adaptational
functions and means of adaptation. By an open coding procedure, a total of 245 adaptations are found and classified. The paper
shows a broad diversity of interdependent actors to be relevant—ranging from transportation providers to public and private
actors and households. Crucial actors are hybrid in terms of being public or private. A substantial share of the identified
adaptations follows a top-down adaptation policy pattern where a public or hybrid operator initiates action that affects private
actors. Most of the exceptions from this pattern are technical or engineering measures. Identified adaptations mostly require
institutional means, followed by technical means, and knowledge. Generally, knowledge on adapting transport to climate change
is still in a stage of infancy. The existing literature either focuses on overly general adaptations, or on detailed technical
measures. Further research is needed on the actual implementation of adaptation, and on more precise institutional instruments
that fill the gap between too vague and too site-specific adaptations. 相似文献
488.
Müller Irene Althof Nadine Hoffmann Bernd Klaus Christine Schilling-Loeffler Katja Falkenhagen Alexander Johne Reimar 《Food and environmental virology》2023,15(1):32-42
Food and Environmental Virology - Infection with the tick-borne encephalitis virus (TBEV) can cause meningitis, meningoencephalitis and myelitis in humans. TBEV is an enveloped RNA virus of the... 相似文献
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碳底物含量对厌氧条件下水稻土N2、N2O、NO、CO2和CH4排放的影响 总被引:4,自引:3,他引:1
理解底物碳氮对厌氧条件下水稻土排放氮素气体——氮气(N2)、氧化亚氮(N2O)和一氧化氮(NO)以及二氧化碳(CO2)和甲烷(CH4)的影响,有助于制定合理的温室气体减排措施,定量了解反硝化产物组成对碳底物水平的依赖性,也有助于氮转化过程模型研发中制定正确的关键过程参数选取方法或参数化方案.本研究采用粉砂壤质水稻土为研究对象,设置对照(CK)和加碳(C+)两个处理,前者的初始硝态氮和可溶性有机碳(DOC)含量分别为~50 mg·kg-1和~28 mg·kg-1,后者的分别为~50 mg·kg-1和~300 mg·kg-1.采用氦环境培养-气体及碳氮底物直接同步测定系统,研究了完全厌氧条件下碳底物水平对上述气体排放的影响.结果表明,CK处理无CH4排放,而C+处理可观测到CH4排放;C+处理的综合增温潜势显著高于CK处理(P<0.01);NO、N2O和N2排放量占这3种氮素气体排放总量的比重,在CK处理分别约为9%、35%和56%,在C+处理分别约为31%、50%和19%,处理间差异显著(P<0.01).由此表明,碳底物水平可显著改变所排放氮素气体的组成;对于旱地阶段硝态氮比较丰富的水稻土,避免在淹水前或淹水期间施用有机肥,有利于削减温室气体排放. 相似文献