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151.
固定化小球藻对海水养殖废水氮磷的处理   总被引:1,自引:0,他引:1  
本研究利用海藻酸钠(SA)作为载体、以氯化钙(CaCl2)为交联剂,探究小球藻最佳固定化条件及其对海水养殖废水氨氮和磷酸盐的处理效果.通过对比不同浓度SA和CaCl2对小球藻生长的影响及不同固定化条件的藻球对氨氮、磷酸盐处理效果,确定最佳固定化条件为2.0% SA和2.0% CaCl2.对比固定化藻球和悬浮小球藻对模拟海水养殖废水氨氮、磷酸盐去除效果,结果表明固定化藻球比悬浮藻液对氮、磷处理效果更好.其中低接种率(1:10)固定化藻球的最大氨氮、磷酸盐去除率分别为63.26%和62.76%.固定化小球藻浓度越高,其净化能力越强,高接种率(1:1)固定化藻球的最大氨氮、磷酸盐去除率分别是85.16%和75.94%.连续流运行下固定化藻球对海水养殖废水氨氮、磷酸盐的平均去除率分别为84.49%和72.17%.小球藻固定化态保留并延长了悬浮态生长活性,提高了对海水养殖废水脱氮除磷效果.  相似文献   
152.
河流硝酸盐(NO-3)浓度及氮和氧同位素组成(δ15N-NO-3和δ18O-NO-3)可以辨识河水NO-3受自然过程和人为输入的影响,但流域不同土地利用方式对河水NO-3来源及转化过程的影响尚不明确,特别是山区人为输入对河水NO-3的影响仍不清楚.选择土地利用空间异质性显著的伊河和洛河作为研究对象,借助水体水化学组成,氢氧同位素(δD-H2O和δ18O-H2O)、δ15N-NO-3和δ18O-NO-3,辨识不同土地利用方式影响下河水NO-3来源及...  相似文献   
153.
为认识西安市大气降水主要化学组分的现状,对2019年西安市市区和郊区大气降水样品的pH值、电导率、水溶性离子和重金属的质量浓度、湿沉降通量和来源进行了研究.结果表明,西安市冬季大气降水pH、电导率、水溶性离子和重金属浓度均高于其它季节.降水中主要的水溶性离子为Ca2+、 NH+4、 SO■和NO-3,其之和占总离子浓度的(88.5±2.8)%;市区和郊区主要重金属是Zn和Fe、 Zn和Mn,其之和分别占总金属浓度的(54.0%±3)%和(47.0%±8)%.市区和郊区降水中水溶性离子的湿沉降通量分别为(253.2±58.4)mg·(m2·month)-1和(241.9±61.1)mg·(m2·month)-1,呈现出冬季高于其他季节的特点;重金属的湿沉降通量分别为(86.2±37.5)mg·(m2·month)-1和(88.1±37.4)mg·(m...  相似文献   
154.
研究特色农产品产区土壤重金属来源及其潜在风险,对科学管理、安全利用土壤和作物资源具有重要意义.以菏泽油用牡丹种植区为研究对象,采集并测定了254件表层土壤样品As、Cd、Cr、Cu、Hg、Ni、Pb和Zn等8种重金属的含量.采用多元统计法分析了重金属的含量特征及相关性,利用地累积指数(Igeo)、正定矩阵因子分解法(PMF)和主成分分析/绝对主成分分数法(PCA/APCS)相结合的手段解析了表层土壤中重金属的来源,借助潜在生态风险指数(PERI)对该8种重金属的生态风险进行了评估.结果表明,土壤中除Cd元素的平均值高于菏泽市背景值1.44倍之外,其余7种重金属的平均含量均与菏泽市土壤元素背景值基本一致;经相关分析和聚类分析,土壤中Pb、Hg和Cd元素受后期人为活动的干扰影响较大;研究区8种重金属的来源为自然源、农业化肥源、工业燃煤源和生活交通源,贡献率分别为81.31%、15.45%、2.74%和0.50%;研究区84.25%的点位处于轻微生态风险,而中度风险和强风险点位占比分别为14.96%和0.79%,其中Cd和Hg是研究区生态风险主导元素.  相似文献   
155.
本文以长江三角洲城市群为例。研究了我国沿海城市的生态危机、剖析了生态危机的根源并提出了调控机制。由于沿海城市的生态问题存在着较大的共性。本文提出的措施对其他沿海城市解决生态危机也有一定借鉴作用。  相似文献   
156.
Land availability is a key consideration for evaluating the potential of biomass energy. This depends not only on how much land is physically suitable for growing the biomass crop, but also on the environmental implications of an energy farm and the extent to which land can be freed from competing uses. Energy planning should include inventories to realistically assess the amount of land potentially available for biomass production and the trade-offs involved in using such land for biomass farms.  相似文献   
157.
Food production has to be increased in a sustainable way to meet the future global demand. A key position is attributed to developing countries. A deepened understanding of their agricultural regions with specific resource endowments and constraints is therefore crucial. In this study we propose a methodology based on material flux analysis (MFA) to assess the resource potentials and limitations of a Nicaraguan agricultural region. We focus on current regional and farm resource management and explore them under two scenarios. Indicators are nitrogen and the degrees of self-sufficiency (DSS) for energy, and the staples maize and beans. As data is scarce, most information is based on interviews with farmers of four categories and key persons, and on literature. The results show that nitrogen management does not differ considerably among categories. Nitrogen is mined mostly from staple plots. Self-sufficiency for beans is given in an average year. Yet, landless and small farmers neither produce enough maize for autoconsumption, nor are they self-sufficient for firewood. Energy supply is also the core problem of the region, since the DSS is 70%. Soil nitrogen stocks last at most for three more generations. Analyses with the scenario technique show that: (a) Unlimited population growth has serious consequences in the near future e.g. severe shortage of energy and food. (b) Alternative farming systems are possible, but they require reducing the population by a factor 2, and thus the creation of jobs in a Hinterland. Readers should send their comments on this paper to: BhaskarNath@aol.com within 3 months of publication of this issue.  相似文献   
158.
An experimental village-scale catchment was selected for investigation of nitrogen (N) sources and exports. The mean N application rate over the catchment was 350.2 kg N ha−1, but this rate varied spatially and temporally. The N leaching loss rate varied from 8.1 to 52.7 kg N ha−1 under different land use regimes. The average N leaching loss rate was 13.4 kg N ha−1 over the whole catchment, representing about 3.8% of the total N inputs. The N export rate through stormflows was 28.8 kg N ha−1, about 8.2% of the total N inputs. Seasonal patterns showed that 95% of N exports through stormflows occurred during July to September in 2002. Overall, the maximum riverine N exports were 12.1% of total N inputs and 15.5% of the inorganic fertilizer N applied. Understanding N sources and exports in a village-scale catchment can provide a knowledge base for amelioration of diffuse agricultural pollution.  相似文献   
159.
Arsenic (As) contamination in groundwater has received significant attention recently. Natural and anthropogenic sources contribute to the worldwide occurrence of As contamination. As speciation is an important factor related to its toxic and mobile behavior. The release of As from soils and sediments into groundwater is governed by several geophysicochemical processes, of which, As sorption behavior is of principle significance. This review paper summarizes existing information regarding the effects of natural organic matter (NOM) on the fate and mobility of As species in the environment. NOM may enhance the release of As from soils and sediments into the soil solution, thereby facilitating As leaching into the groundwater. The main influencing mechanisms include competition for available adsorption sites, formation of aqueous complexes, and/or changes in the redox potential of site surfaces and As redox speciation. NOM may also serve as binding agents, thereby reducing As mobility. However, comparably little research has been performed on this aspect. Since most investigations have been done on purified minerals under laboratory conditions, further research involving various geological materials under natural environmental conditions is required. Development of proper geochemical conceptual models may provide means of predicting the role of NOM in arsenic leaching and/or immobilization.  相似文献   
160.
Oxidation of d-limonene, which is a common monoterpene, can lead to new aerosol particle formation in indoor environments. Thus, products containing d-limonene, such as citrus fruits, air refresheners, household cleaning agents, and waxes, can act as indoor air aerosol particle sources. We released d-limonene into the room air by peeling oranges and measured the concentration of aerosol particles of three different size ranges. In addition, we measured the concentration of d-limonene, the oxidant, and the concentration of ozone, the oxidizing gas. Based on the measurements we calculated the growth rate of the small aerosol particles, which were 3–10 nm in diameter, to be about , and the losses of the aerosol particles that were due to the coagulation and condensation processes. From these, we further approximated the concentration of the condensable vapour and its source rate and then calculated the formation rate of the small aerosol particles. For the final result, we calculated the nucleation rate and the maximum number of molecules in a critical cluster. The nucleation rate was in the order of and the number of molecules in a critical-sized cluster became 1.2. The results were in agreement with the activation theory.  相似文献   
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