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1.
Environmental Science and Pollution Research - In this study, the degradation performance of nutrients in zeolite trickling filter (ZTF) with different influent C/N ratios and aeration conditions...  相似文献   
2.
人为干扰对小兴安岭森林湿地土壤碳组分和酶活性的影响   总被引:3,自引:0,他引:3  
以小兴安岭落叶林沼泽湿地为研究对象,对比研究皆伐地、火烧地和落叶松湿地土壤碳组分和酶活性.结果表明:(1)3种湿地类型土壤SOC含量表现为对照地显著高于皆伐地和火烧地(p0.05),在0~10 cm土层中皆伐地与对照地相比降低了58.38%,火烧地与对照地相比降低了61.96%.皆伐地与火烧地在不同土层的土壤中SOC含量差异不显著(p0.05);DOC含量对照地显著高于皆伐地和火烧地(p0.05).在0~10cm土层中火烧地DOC含量是皆伐地的1.99倍,两者差异不显著(p0.05);不同干扰方式对土壤MBC含量影响的差异主要表现在0~10 cm的土层土壤,对照地分别比皆伐地和火烧地高23.13%和95.79%(p0.05).在不同的土层中皆伐地MBC含量均大于火烧地,与SOC含量的变化趋势一致.(2)与对照地相比,皆伐地与火烧地0~10 cm土层的土壤蔗糖酶活性分别降低了45.59%和36.76%,脲酶活性显著降低了18.22%和55.69%(p0.05),蛋白酶活性降低了19.65%和17.34%,淀粉酶活性降低了6.29%和10.69%.土壤碳组分和酶活性在垂直方向上均表现为随着土层深度增加而减小.皆伐和火烧造成森林湿地土壤碳组分和酶活性降低.  相似文献   
3.
本文以排污权交易的核心业务排放跟踪管理为出发点,选择电厂二氧化硫指标进行排放跟踪数据过程校核体系研究,探索进一步提高排污权交易体系中排放数据准确性的机制。  相似文献   
4.
Based on the observation by a Regional Air Quality Monitoring Network including 16 monitoring stations, temporal and spatial variations of ozone(O3), NO2and total oxidant(Ox) were analyzed by both linear regression and cluster analysis. A fast increase of regional O3concentrations of 0.86 ppbV/yr was found for the annual averaged values from 2006 to 2011 in Guangdong, China. Such fast O3increase is accompanied by a correspondingly fast NOx reduction as indicated by a fast NO2 reduction rate of 0.61 ppbV/yr. Based on a cluster analysis, the monitoring stations were classified into two major categories – rural stations(non-urban) and suburban/urban stations. The O3concentrations at rural stations were relatively conserved while those at suburban/urban stations showed a fast increase rate of 2.0 ppbV/yr accompanied by a NO2 reduction rate of 1.2 ppbV/yr. Moreover, a rapid increase of the averaged O3 concentrations in springtime(13%/yr referred to 2006 level) was observed, which may result from the increase of solar duration, reduction of precipitation in Guangdong and transport from Eastern Central China. Application of smog production algorithm showed that the photochemical O3production is mainly volatile organic compounds(VOC)-controlled. However, the photochemical O3production is sensitive to both NOx and VOC for O3pollution episode. Accordingly, it is expected that a combined NOx and VOC reduction will be helpful for the reduction of the O3 pollution episodes in Pearl River Delta while stringent VOC emission control is in general required for the regional O3 pollution control.  相似文献   
5.
杨帆  鲁义  施式亮  王金鹏  王禹博 《安全》2020,(1):68-70,75
为了减少火焰环境对消防员的伤害,基于消防服隔热层对消防员生命安全保障的重要性,运用对比描述的方法对现有隔热层进行了分析比较,探究了其优缺点和性能,提出了轻质且具有优异隔热性能是隔热层的发展趋势,通过对气凝胶性能的理论分析和服用性能分析,研究了利用气凝胶材料研制消防服的隔热层,结果表明气凝胶在服装领域应用已经比较广泛,在消防服领域中也已有初步应用,但用气凝胶研制消防服隔热层仍存在着一定的挑战。  相似文献   
6.
近几年来,雾霾污染已经发展成为一个区域性的环境问题.区域内城市间雾霾污染的相关性错综复杂,呈现出复杂网络的结构形态.从整个雾霾污染大网络中去除一些联系不紧密、重要性不高的城市节点,进而找出真正发挥关键作用的核心子网络,对于整个区域的联防联控都有着重要的现实意义.本文将京津冀地区13个城市作为节点,选取2013年10月28日至2017年10月17日,共1488 d内每个城市的日均PM_(2.5)浓度数据作为样本.首先,根据城市间PM_(2.5)日均浓度的相关系数作为是否连边的判别标准,并由相关系数与城市间距离的比值构造出边的权重,通过连边状况去除了张家口这个孤立节点.其次,通过计算节点的加权集群系数、网络效率与脆弱性和采用基于度和集群系数的节点重要性综合评价方法对节点的重要性进行评价.接着,综合3种节点重要性评价方法得到节点重要性排名,由高到低分别是保定、唐山、廊坊、石家庄、天津、北京、沧州、衡水、邢台、秦皇岛、邯郸、承德.并根据节点重要性评价结果,从整个京津冀区域的大网络中提取出联系最为紧密、相关性最强的一个雾霾污染子网络.最后,文章结合京津冀地区雾霾污染子网络的结构特点与现有大气污染防治的政策法规,提出了促进区域内雾霾污染防治一体化的3点建议.  相似文献   
7.
在研究分析葫芦岛有色金属集团近年来废气治理情况的基础上,根据葫芦岛市工业区环境空气质量监测数据,通过环境空气综合污染指数评价和Spearman秩相关系数评价,分析了废气治理对环境空气质量的影响.  相似文献   
8.
Environmental Chemistry Letters - Wastewater from the uranium mining industry contains toxic arsenate (AsO43–), selenate (SeO42–), and molybdate (MoO42–) that can be removed by...  相似文献   
9.
使用WRF/CAMx模型及化学过程分析(CPA)模块,系统研究了广东省夏、秋季的臭氧生成敏感性与生成速率。夏季,广州与东莞等珠三角中部地区臭氧生成主要对VOCs敏感,郊区的臭氧生成速率较大,珠江口地区是重要的臭氧生成源区,夏季白天(08:00-17:00)平均净臭氧生成速率可达37μg/(m^3·h),位于珠三角东北部的天湖白天平均净臭氧生成速率约为25μg/(m^3·h)。秋季,珠江口西岸臭氧生成主要对VOCs敏感,秋季臭氧生成速率显著低于夏季。夏、秋季珠三角大部分地区臭氧生成敏感性从早上对VOCs敏感逐步过渡到下午对NO_x敏感,广东其他大部分地区则全天均为NOx敏感,一般在VOCs敏感区中的臭氧生成速率与化学消耗速率均较大。中心城区的臭氧生成弱,臭氧净化学消耗强。  相似文献   
10.
ABSTRACT

Pig production systems in China are shifting from small to industrial scale. Significant variation in housing ammonia (NH3) emissions can exist due to differences in diet, housing design, and management practices. However, there is a knowledge gap regarding the impacts of farm-scale in China, which may be critical in identifying hotspots and mitigation targets. Here, continuous in-situ NH3 concentration measurements were made at pig farms of different scales for sows and fattening pigs over periods of 3–6 days during two different seasons (summer vs. winter). For the sow farms, NH3 emission rates were greater at the small farm (summer: 0.52 g pig?1 hr?1; winter: 0.21 g pig?1 hr?1) than at the large farm (summer: 0.34 g pig?1 hr?1; winter: 0.12 g pig?1 hr?1). For the fattening pig farms, NH3 emission rates were greater at the large farm (summer: 0.22 g pig?1 hr?1; winter: 0.16 g pig?1 hr?1) than at the small farm (summer: 0.19 g pig?1 hr?1; winter: 0.07 g pig?1 hr?1). Regardless of farm scale, the NH3 emission rates measured in summer were greater than those in winter; the NH3 emission rates were greater in the daytime than at the nighttime; a positive relationship (R2 = 0.06–0.68) was established between temperature and NH3 emission rate, whereas a negative relationship (R2 = 0.10–0.47) was found between relative humidity and NH3 emission rate. The effect of farm-scale on indoor NH3 concentration could mostly be explained by the differences in ventilation rates between farms. The diurnal variation in NH3 concentration could be partly explained by ventilation rate (R2 = 0.48–0.78) in the small traditional farms and by emission rate (R2 = 0.26–0.85) in the large industrial farms, except for the large fattening pig farm in summer. Overall, mitigation of NH3 emissions from sow farms should be a top priority in the North China Plain.

Implications: The present study firstly examined the farm-scale effect of ammonia emissions in the North China Plain. Of all farms, the sow farm was identified as the greatest source of ammonia emission. Regardless of farm scale, ammonia emission rates were observed to be higher in summer. Ammonia concentrations were mostly higher in the large industrial farms partly due to lower ventilation rates than in the small traditional farms.  相似文献   
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