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901.
普光气田天然气净化厂是中国石化集团公司"川气东送工程"的关键组成部分,在投料试车期间,富含高浓度H2S的原料气决定了净化过程中的泄漏中毒高风险,尤其在投料试车过程中,实时监测现场H2S气体浓度是试车安全管理的关键。介绍了天然气净化厂净化工艺,分析了试车安全风险;利用安全监测系统、GasFindIR红外成像仪、有毒挥发气体分析仪等先进仪器设备建立了实时安全管理监测方法,实时监测现场H2S气体浓度。结果表明,该方法在天然气净化厂投料试车阶段发现H2S气体泄漏及时,泄漏点定位准确,泄漏量检测精确,保证了普光气田天然气净化厂投料试车作业安全的顺利进行,为高含H2S气田投料试车作业的安全管理提供了参考。  相似文献   
902.
旋转切向流聚丙烯管式膜微滤能耗分析   总被引:1,自引:0,他引:1  
设计了一种新型旋转切向流聚丙烯管式膜器,实验研究了聚丙烯PA管式膜器的能耗通过建立的旋转切向流强化微滤实验装置系统,测定了聚丙烯PA管式膜器在旋转切向流和轴向流下的膜通量与能量有效利用率.实验结果表明,旋转切向流管式膜微滤比一般轴向流膜微滤的有效利用率要高得多,是一种非常有效的强化膜分离技术在实验条件下,直线切向流膜微滤和圆弧切向流膜微滤的稳态能量有效利用率比轴向流稳态能量有效利用率分别高11.185倍和14.591倍.  相似文献   
903.
SO2对Ag/Al2O3催化剂上CH3OH还原NO性能的影响   总被引:1,自引:0,他引:1  
用溶胶-凝胶混合法制备了Ag负载量为5%的Ag/A12O3催化剂.研究了富氧条件下,SO2对CH3OH在催化剂上还原NO性能的影响.结果表明,反应气不含SO2和H2O时,NO还原活性温度较低,有显著量N2O生成,这被归因为反应过程中,部分氧化态Ag被还原为金属Ag.添加SO2或同时添加SO2和H2相似文献   
904.
产酸脱硫反应器中碳硫比对群落生态特征的影响   总被引:10,自引:1,他引:9  
通过产酸脱硫反应器处理高浓度含硫酸盐废水的连续流试验,从群落动态的角度研究碳硫比(COD/SO42-)从4.2降低到2.0的过程中,pH值、氧化还原电位(ORP)、碱度(ALK)和末端产物(VFAs)组成、优势种群分布等群落生态特征的变化规律试验证明,在此过程中ORP和ALK提高,而pH值和VFAs中乙酸的分布比例降低,群落类型由高碳硫比稳定型转化为低碳硫比亚稳定型,但仍未改变乙酸型顶极群落的典型特征.  相似文献   
905.
产酸脱硫反应器中COD/SO42-比制约的群落生态演替规律   总被引:3,自引:2,他引:1  
通过产酸脱硫反应器的动态试验和配套的静态试验,考察致变因子 COD/SO42-比制约的乙酸型顶极群落的结构、优势种群的组成和生态演替的规律; 阐明乙酸型代谢和乙酸型顶极群落是产酸脱硫生态系统的典型特征;揭示乙酸型顶极群落内平衡与反馈调节的生理代谢机制,并以因变因子**pH值、氧化还原电位和碱度来表征生态演替过程中优势种群的三维实现生态位.  相似文献   
906.
This paper documents the effect of primary forest cover loss on increased incidence of malaria. The evidence is consistent with an ecological response. I show that land use change, anti-malarial programs or migration cannot explain the effect of primary forest cover loss on increased malarial incidence. Falsification tests reveal that the effect is specific to malaria, with forest cover having no discernible effect on other diseases with a disease ecology different from that of malaria. Back-of-the-envelope calculations indicate that the morbidity-related malaria-reducing local benefits of primary forests are at least $1-$2 per hectare.  相似文献   
907.
磷系阻燃剂对人体的潜在毒性作用引起了国内外研究者的广泛关注。肾脏是机体重要的排毒器官,若肾脏细胞受损,可能影响肾脏功能的正常发挥。本研究以人胚肾细胞HEK293为研究对象,结合传统毒理学实验,筛选出磷酸三苯酯(TPP)及磷酸三(2-氯异丙基)酯(TCPP)诱导人胚肾细胞HEK293凋亡的关键靶标基因p53。在此基础上采用分子对接模拟和光谱法分析发现,TPP和TCPP分别以嵌插方式和沟槽方式结合p53-DNA,改变基因片段的框架结构,启动分子起始事件,通过影响相关基因(Bax、Hrk、Bcl-2和Bad)的表达量,导致线粒体途径释放cyt c,最终激活Caspase 7实现细胞凋亡。研究结果阐明了此类污染物诱导凋亡的作用机制,为毒害化学品的污染防控提供理论依据。  相似文献   
908.
O3 increment is mainly caused by changes in meteorology rather than emissions. Emission reduction is effective to reduce O3 nationwide, especially in summer. Strengthened NOx controls are necessary to meet the ambient O3 standard. We have quantified the impacts of anthropogenic emissions reductions caused by the Air Pollution Control Action Plan and changes in meteorological fields between 2013 and 2017 on the warm-season O3 concentration in China using a regional 3D chemical transport model. We found that the impact on daily maximum eight-hour (MDA8) O3 concentration by the meteorological variation that mostly increased O3 was greater than that from emission reduction, which decreased O3. Specifically, the control measures implemented since 2013 in China have reduced SO2, NOx, PM2.5, and VOC emissions by 33%, 25%, 30%, and 4% in 2017, while NH3 emissions have increased by 7%. The changes in anthropogenic emissions lowered MDA8 O3 by 0.4–3.7 ppb (0.8%–7.6%, varying by region and month), although MDA8 O3 was increased slightly in some urban areas (i.e. North China) at the beginning/end of warm seasons. Relative to 2013, the average 2 m temperature in 2017 shows increments in North, North-east, East, and South China (0.34℃–0.83℃) and decreases in Central China (0.24℃). The average solar radiation shows increments in North, North-east, and South China (7.0–9.7 w/m2) and decreases in Central, South-west, and North-west China (4.7–10.3 w/m2). The meteorological differences significantly change MDA8 O3 by -3.5–8.5 ppb (-8.2%–18.8%) with large temporal variations. The average MDA8 O3 was slightly increased in North, North-east, East, and South China. The response surface model suggests that the O3 formation regime transfers from NOx-saturated in April to NOx-limited in July on average in China.  相似文献   
909.
CNT-TiO2 composite is used to activate PMS under UV-light assistance. Superior performance is due to the enhanced electron-transfer ability of CNT. SO4, •OH and 1O2 play key roles in the degradation of organic pollutants. In this work, a UV-light assisted peroxymonosulfate (PMS) activation system was constructed with the composite catalyst of multi-walled carbon nanotubes (CNT) - titanium dioxide (TiO2). Under the UV light irradiation, the photoinduced electrons generated from TiO2 could be continuously transferred to CNT for the activation of PMS to improve the catalytic performance of organic pollutant degradation. Meanwhile, the separation of photoinduced electron-hole pairs could enhance the photocatalysis efficiency. The electron spin resonance spectroscopy (EPR) and quenching experiments confirmed the generation of sulfate radical (SO4), hydroxyl radical (•OH) and singlet oxygen (1O2) in the UV/PMS/20%CNT-TiO2 system. Almost 100% phenol degradation was observed within 20 min UV-light irradiation. The kinetic reaction rate constant of the UV/PMS/20%CNT-TiO2 system (0.18 min1) was 23.7 times higher than that of the PMS/Co3O4 system (0.0076 min1). This higher catalytic performance was ascribed to the introduction of photoinduced electrons, which could enhance the activation of PMS by the transfer of electrons in the UV/PMS/CNT-TiO2 system.  相似文献   
910.
The present paper addresses two policy objectives: to implement a market for pollution permits and to make regulation acceptable for businesses. Profit-neutral permit allocations are defined as the number of permits that the regulator should give for free so that post-regulation profits (i.e. a firm's profits in the products market plus the value of the allowances granted for free) are equal to pre-regulation profits. The proposed model is developed by assuming that firms use polluting technologies and compete “à la Cournot”. The paper demonstrates that a low number of free allowances is sufficient to meet these two goals. Moreover, the regulator can fully offset losses, even when the reduction in emissions is high, provided that the sectors concerned are not monopolies, both for isoelastic and linear demand functions.  相似文献   
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