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991.
对利用矿化垃圾构建生物覆盖层以削减填埋场温室气体的释放问题进行了深入研究,分析了环境因素对CH4释放的作用,考察了作为生物覆盖层材料的矿化垃圾的厚度变化对CH4氧化的影响.结果表明,温度为5~45℃时,矿化垃圾对CH4的氧化速率平均值分别约为黏性土和砂性土的2.35和4.71倍,CH4氧化速率随温度的升高而增加,并在35℃时达到最大值.当含水率w为16% ~ 24%时,纯矿化垃圾覆盖层、半矿化垃圾覆盖层和砂性土覆盖层CH4氧化能力均达到最大.砂性土覆盖层和半矿化垃圾覆盖层CH4释放通量平均值分别为纯矿化垃圾覆盖层的329.8倍(P<0.05)和91.7倍(P<0.05),添加矿化垃圾填料会增加覆盖层N2O释放通量,纯矿化垃圾覆盖层N2O(以N计)释放通量平均值分别为半矿化垃圾覆盖层和砂性土覆盖层的2.1倍(P<0.05)和3.5倍(P<0.05).  相似文献   
992.
选取南方某典型电子垃圾拆解区不同作业区为研究对象,重点研究了拆解地大气中二噁英的污染特征、气相-颗粒相分配及呼吸暴露风险。通过对5个采样点(包括1个背景点)的研究发现,电子垃圾拆解作业区颗粒相ΣPCDD/Fs的质量浓度为:20.64-56.14 pg·m^-3,毒性当量为:I-TEQ 0.293-1.490 pg·m^-3;气相ΣPCDD/Fs的质量浓度为:3.861-19.29 pg·m^-3,毒性当量为:I-TEQ 0.384-2.150 pg·m^-3。背景点大气中二噁英浓度相对较低,颗粒相和气相样品中质量浓度值分别为:3.734 pg·m^-3和2.637 pg·m^-3,毒性当量仅为I-TEQ 0.176-0.267 pg·m^-3;要明显低于电子垃圾拆解区。基于污染物气相-颗粒相分配系数与蒸汽压的关系对二噁英的气-固分配行为研究显示,除了拆解混合作业区有较好的分配系数(-0.64)外,其它监测点位二噁英的气-固平衡状态较弱(-0.27--0.03),更多的是以低分子量的单体化合物赋存于气相样品中。对拆解区二噁英呼吸暴露风险研究结果表明,儿童呼吸暴露风险要高于成年人;同时无论是儿童还是成年人,其二噁英的呼吸暴露量均要高于国内外城市报道的二噁英人体呼吸暴露量,说明本次监测的电子垃圾拆解区存在的潜在健康风险不容忽视。  相似文献   
993.
互花米草入侵盐沼湿地CH4和N2O排放日变化特征研究   总被引:1,自引:0,他引:1  
甲烷(CH4)和氧化亚氮(N2O)是导致全球气候变暖的2种重要温室气体,探索其源汇及地域排放特征一直是全球变化研究领域的核心内容。CH4和N2O通量的日变化研究是正确估算大时间尺度下CH4和N2O排放量的基础。利用静态箱法原位观测了江苏沿海芦苇(Phragmites australis)、盐蒿(Suada salsa)、光滩、水面以及互花米草(Spartina alterniflora)入侵湿地CH4和N2O排放的日变化特征。结果表明,1)互花米草湿地地上部生物量为1.70 kg·m^-2,土壤有机碳质量分数为13.55 g·kg^-1;分别是芦苇和盐蒿湿地的2.50-3.43和2.15-4.15倍。2)互花米草和芦苇湿地土壤10 cm处氧化还原电位(Eh)有明显日变化,最低值出现在3:00,最高值出现在12:00;光滩和盐蒿湿地没有明显的日变化。3)互花米草湿地 CH4日平均排放通量为0.52 mg·m^-2·h^-1,是其他湿地的2.12-6.40倍;N2O日平均通量为-3.24μg·m^-2·h^-1,显著低于盐蒿湿地、光滩和水面(P<0.05)。互花米草和芦苇湿地CH4排放通量最高值(0.73 mg·m^-2·h^-1和0.30 mg·m^-2·h^-1)出现在15:00,最低值(0.37 mg·m^-2·h^-1和0.17 mg·m^-2·h^-1)出现在3:00,均与土壤孔隙水中CH4浓度呈显著负相关(P<0.05)。互花米草湿地CH4排放通量与10 cm土温、Eh和生态系统CO2净交换量(NEE)显著正相关(P<0.05)。互花米草和芦苇湿地N2O通量9:00-18:00为负值,21:00—6:00为正值,均与NEE呈显著负相关(P<0.05)。盐蒿湿地、光滩和水面CH4和N2O排放通量没有明显日变化特征。互花米草入侵提高了沿海湿地CH4排放,但降低了N2O排放,植物对CH4传输作用以及向根际传输O2和易分解有机物是导致互花米草和芦苇湿地CH4和N2O排放表现出日变化特征的原因。  相似文献   
994.
Nitrous oxide (N2O) is a greenhouse gas that can be released during biological nitrogen removal from wastewater. N2O emission from a sequencing batch reactor (SBR) for biological nitrogen and phosphorus removal from wastewater was investigated, and the aims were to examine which process, nitrification or denitrification, would contribute more to N2Oemission and to study the effects of heterotrophic activities on N2O emission during nitrification. The results showed that N2O emission was mainly attributed to nitrification rather than to denitrification. N2O emission during denitrification mainly occurred with stored organic carbon as the electron donor. During nitrification, NaO emission was increased with increasing initial ammonium or nitrite concentrations. The ratio of N2O emission to the removed ammonium nitrogen (N2O- N/NH4-N) was 2.5% in the SBR system with high heterotrophic activities, while this ratio was in the range from 0.14% to 1.06% in batch nitrification experiments with limited heterotrophic activities.  相似文献   
995.
Many substances react with water in such a way that flammable gases are formed. For transport issues this reaction may possess a considerable hazard especially if the cargo is wetted by rain or by water from other sources. In the UN Recommendations on the Transport of Dangerous Goods these kinds of problems are addressed. The UN test N.5 “Test method for substances which in contact with water emit flammable gases” corresponds to this hazard. Classification according to the test method is done by measurement of the gas evolution rate of the flammable gas by any suitable procedure. At BAM a gravimetric approach is used to measure the gas evolution rate. In this paper we present the evaluation of the apparatus by means of an absolute calibration routine utilizing a reaction where a known amount of gas is produced as well as the evaluation of important parameters influencing the gas evolution rate using different substances. It can be shown that the apparatus is capable of measuring absolute gas volumes as low as 6 mL with an acceptable error of about 17% as determined from the reaction of Mg with demineralized water.  相似文献   
996.
Carbon capture and storage (CCS) techniques are considered as one of the promising approaches to reduce carbon dioxide (CO2) emissions from fossil fuel based power generation, which still accounts for a significant portion of greenhouse gas emissions in the world. CCS technology can be used to mitigate greenhouse gas emissions, with the additional advantage that it allows continuing use reliable and inexpensive fossil fuels. However, CCS retrofit entails major capital costs as well as a reduction of overall thermal efficiency and power output. Thus, it is essential for planning purposes to implement the minimal extent of CCS retrofit while meeting the specified carbon emission limits for the power sector. At the same time, it is necessary to plan for compensatory power generation capacity to offset energy losses resulting from CCS retrofit. In this paper, an algebraic targeting technique is presented for planning of grid-wide CCS retrofits in the power generation sector with compensatory power. The targeting technique is developed based on pinch analysis. In addition, the proposed methodologies are illustrated through case studies based on grid data in India and the Philippines. Sensitivity analysis is carried out to determine the suitable CCS technology and compensatory power source which satisfy emission limits.  相似文献   
997.
Resource depletion is of concern to both present and future generations in terms of access to resources. It is a prominent impact category within life cycle assessment (LCA) and sustainability assessment. This paper examines existing resource depletion approaches and indicators in the context of natural gas depletion, and their limitations in modelling the wider environmental consequences of resource consumption. Some existing models assume substitution of scarce fossil fuels with an alternative fossil fuel or mix, but do not consider all of the subsequent change in impacts. An additional methodology is proposed to measure the impact changes when fossil fuel substitution occurs as a result of scarcity. The methodology will demonstrate the effect of resource scarcity for individual processes but also multiple processes which operate at different levels of resource consumption with varying degrees of impacts. The methodology is applied to a scarcity situation of natural gas in Australia, where black coal is substituted for gas. It is first applied to natural gas consumed for electricity generation only. In the second case, the methodology is applied to the substitution of natural gas for both electricity generation and hydrogen production. The varying impacts on emissions to air and water, together with solid waste generation and water depletion, as a result of the substitution are used to reflect the consequences of fossil fuel depletion. The indicators also provide information on the impacts of substitution in each product, thus enabling users to prioritise products based on the impacts produced during natural gas allocation.  相似文献   
998.
A thermodynamic procedure has been proposed which can be used to predict the gas pressure, temperature and flow rate through orifice upon chock flow condition, using equation of state (EOS). The procedure applied for emergency depressurization operation incorporating the Peng-Robinson EOS and validated by comparing flow rates of a multi-component hydrocarbon gas mixture for thirteen experimental cases. The average absolute deviations of the predicted flow rates for orifice discharge coefficients of 0.85 and 0.9, are 7.36% and 2.03%, respectively. The corresponding error for API 520 (American Petroleum Institute Recommendation Practice 520) method is 6.91%. In this work, the hydrate formation temperature and hydrate inhibitor type and its required weight fraction for preventing the hydrate formation upon orifice and its upstream conditions are evaluated by the EZ-Thermo software using the Moshfeghian–Maddox method. The results qualitatively show that the hydrate prevention is essential for the safety of the operation due to low temperature condition.  相似文献   
999.
通过测定不同SO2、NO以及不同烟尘浓度条件下,小球藻ZY-1的生长速率及其对CO2的固定速率,研究烟气中NO和SO2及烟尘等环境因子对小球藻ZY-1的生长及其CO2固定效果的影响.研究结果表明,烟气中的SO2是以增加培养液中的SO24-浓度及降低pH值的形式来影响ZY-1的生长及其对CO2的固定的.当SO2体积浓度大于50×10-6时,需要进行烟气脱硫或控制培养液pH值变化来消除其影响;烟气中NO的体积浓度不高于300×10-6时,不影响ZY-1的生长及其对CO2的固定,可作为氮源供ZY-1生长用;对经过一般除尘处理的烟气,在利用小球藻ZY-1固定CO2时可不考虑溶解性烟尘的影响.研究结果证明利用小球藻ZY-1固定烟气中的CO2是可行的.  相似文献   
1000.
Y形通风采空区自燃与有害气体排放的数值模拟   总被引:1,自引:0,他引:1  
基于非均质多孔介质漏风渗流方程、多相气体渗流-扩散方程和多孔介质渗流综合传热方程,建立了采空区瓦斯与自燃发火耦合数值模型,开发了用迎风格式有限元方法联立求解的计算机程序(简称G3).计算以图形方式给出各量的区域分布解,从理论上描绘了Y形通风采空区的漏风流态,动态描绘了瓦斯、氧和CO的体积分数以及温度分布状态及其变化过程,并证明了Y形通风形式能避免采空区瓦斯向工作面涌出.计算中采空区按冒落非均质介质处理,考虑了瓦斯涌出对自燃的耦合作用,给出了这种耦合作用关系和解决办法.Y形通风采煤的自燃,两者存在着顾此失彼的关系.  相似文献   
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