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931.
以广州环城高速包括的区域作为研究对象,基于1966、1979、1988、1999、2002、2005年中心城区地图数据和GIS技术,研究人工廊道效应与城市建成区景观演变的关系。结果表明:①人工廊道与建成区景观在数量上呈二次曲线关系;②人工廊道与建成区景观的变化具有非同步性和一致性;③人工廊道效应明显影响着建成区景观的梯度分异,且常常呈定向扩展。  相似文献   
932.
建立了开放性露天堆场周围空气流动的三维数学物理模型,选择应用标准k-ε紊流模型进行了静态流场的数值模拟;分析了典型棱形堆迎风面、平顶面和背风面周围空气的湍流结构和表面受力特性;基于流场数据揭示了防风抑尘网不同孔隙率下空气动力学结构的分布规律.结果显示:物料堆平顶面剪切力随孔隙率增大而增大;料堆迎风面在孔隙率较小时出现局部涡流,表面剪切力方向向下,孔隙率较大时,网后空气垂直方向压差作用显著,表面剪切力方向向上;背风面始终处于回流区,表面剪切力和回流点数随孔隙率大小变化不显著.综合流场结构和受力分布可得最佳孔隙率为0.2~0.4.该研究中对物料堆逐个表面进行空气动力学模拟可以避免由于剪切力方向不同产生矢量抵消而带来的计算失真.  相似文献   
933.
开放性露天堆场的散尘是大气颗粒物的重要来源. 来流空气在棱形物料堆的上部绕流,使其表面的空气流动结构逐点不同,而料堆表面的空气动力学结构又决定着堆场的散尘机理及散尘量. 分析了典型单一棱形料堆周围空气湍流结构,并应用三维标准k-ε紊流模型对其流场进行了数值模拟;计算了来流方向抑尘网前后不同断面处风速的垂直分布;分析了不同孔隙率(0、0.2、0.3、0.4、0.5、0.6和1.0)抑尘网后料堆迎风面和背风面沿高度方向、平顶面沿水平方向的剪切应力特性和分布规律. 结果表明:抑尘网前3倍网高距离处的风速较无网工况(孔隙率为1.0)略有减小,降幅随孔隙率增大而减小, 孔隙率为0时最大降幅为5.1%;网前2倍网高距离处与抑尘网之间区域的风速廓线与无网工况相差甚远,孔隙率为0时近网区域风速最高降幅达92.8%. 抑尘网和料堆迎风面之间区域,从地面至网顶高度,不同孔隙率抑尘网工况下的风速均较无网工况小,最小处为无网工况风速的18.5%;抑尘网以上区域的风速较无网工况的大,最大处为无网工况风速的128.0%,并且差距随抑尘网孔隙率的减小而增大. 料堆剪切力分布显示,其迎风面和平顶面为主要散尘面,背风面被涡旋卷起的扬尘量较前两者小得多. 防风抑尘网的设置改变了料堆周围空气的流动结构和受力分布,对不同孔隙率的抑尘网数值模拟结果可知,0.2和0.3为最佳孔隙率.   相似文献   
934.
二(口恶)英类物质是公众熟知和敏感的环境有毒污染物,检测分析该类物质的实验室须采取严格的安全保障措施,确保检测过程对分析人员和周围环境不产生危害。对环境二(口恶)英类检测分析实验室的设计建设、运行维护和样品检测分析等环节存在的安全风险及应采取的安全保障措施进行了简要说明,为二(口恶)英类实验室的建设及日常管理提供参考。  相似文献   
935.
恶臭污染分析及防治技术   总被引:7,自引:0,他引:7  
恶臭是一种感觉公害,其产生的嗅觉危害人的身体健康和生活的安宁舒适。阐述了恶臭来源、分类,提出了分析和防治方法,重点介绍了适于自动化控制的光、电化学技术。  相似文献   
936.
运用实时无标记细胞分析系统(RTCA)和Cell Counting Kit-8(CCK-8)法分别检测柴油废气颗粒物(DEP)致支气管上皮细胞(HBE)细胞毒性,从而对2种方法进行比较研究.分别以浓度为0、3.5、7、14、28和56 mg·L-1 2种柴油废气标准参考颗粒物(Standard Reference Material 1650b,SRM 1650b;Standard Reference Material 2975,SRM 2975)对 HBE 细胞进行暴露处理,分别暴露6、12、24和48 h后,检测不同DEP致HBE细胞毒性,比较各组之间细胞存活率或标准化细胞指数(normalized cell index,NCI)值的差异,考察2种方法的优缺点.并用细胞凋亡实验检测各差异组之间的凋亡率.在相同染毒浓度及暴露时间,与SRM 1650b相比,SRM 2975对HBE细胞的毒性更强.在RTCA检测DEP致HBE细胞毒性时,低浓度DEP组的NCI值已经表现出与对照组有统计学差异(P<0.05),而相同时间条件下,CCK-8法在更高浓度的DEP组才检测出显著的细胞活性下降(P<0.05).且由细胞凋亡实验证实,与对照组相比,低浓度DEP组的细胞凋亡率已经有统计学差异.相对于CCK-8法,RTCA更适用于检测DEP致贴壁HBE细胞毒性.CCK-8法更适用于检测DEP致悬浮细胞的细胞毒性或与气液暴露装置联用时的贴壁/悬浮细胞毒性.  相似文献   
937.
• High hydrogen yield is recovered from thermal-alkaline pretreated sludge. • Separating SFL by centrifugation is better than filtration for hydrogen recovery. • The cascaded bioconversion of complex substrates in MECs are studied. • Energy and electron efficiency related to substrate conversion are evaluated. The aim of this study was to investigate the biohydrogen production from thermal (T), alkaline (A) or thermal-alkaline (TA) pretreated sludge fermentation liquid (SFL) in a microbial electrolysis cells (MECs) without buffer addition. Highest hydrogen yield of 36.87±4.36 mgH2/gVSS (0.026 m3/kg COD) was achieved in TA pretreated SFL separated by centrifugation, which was 5.12, 2.35 and 43.25 times higher than that of individual alkaline, thermal pretreatment and raw sludge, respectively. Separating SFL from sludge by centrifugation eliminated the negative effects of particulate matters, was more conducive for hydrogen production than filtration. The accumulated short chain fatty acid (SCFAs) after pretreatments were the main substrates for MEC hydrogen production. The maximum utilization ratio of acetic acid, propionic acid and n-butyric acid was 93.69%, 90.72% and 91.85%, respectively. These results revealed that pretreated WAS was highly efficient to stimulate the accumulation of SCFAs. And the characteristics and cascade bioconversion of complex substrates were the main factor that determined the energy efficiency and hydrogen conversion rate of MECs.  相似文献   
938.
Aquaculture in many countries around the world has become the biggest source of seafood for human consumption. While it alleviates the pressure on wild capture fisheries, the long-term impacts of large-scale, intensive aquaculture on natural coastal systems need to be better understood. In particular, aquaculture may alter habitat and exceed the carrying capacity of coastal marine ecosystems. In this paper, we develop a high-resolution numerical model for Sanggou Bay, one of the largest kelp and shellfish aquaculture sites in Northern China, to investigate the effects of aquaculture on nutrient transport and residence time in the bay. Drag from aquaculture is parameterized for surface infrastructure, kelp canopies, and bivalve cages. A model for dissolved inorganic nitrogen (DIN) includes transport, vertical turbulent mixing, sediment and bivalve sources, and a sink due to kelp uptake. Test cases show that, due to drag from the dense aquaculture and thus a reduction of horizontal transport, kelp production is limited because DIN from the Yellow Sea is consumed before reaching the interior of the kelp farms. Aquaculture drag also causes an increase in the nutrient residence time from an average of 5 to 10 days in the middle of Sanggou Bay, and from 25 to 40 days in the shallow inner bay. Low exchange rates and a lack of DIN uptake by kelp make these regions more susceptible to phytoplankton blooms due to high nutrient retention. The risk is further increased when DIN concentrations rise due to river inflows.  相似文献   
939.
This paper proposes a new high-resolution finite volume method for solving the two-dimensional (2D) solute transport equation using an unstructured mesh. A new simple r-factor algorithm is introduced into the Total Variation Diminishing flux limiter to achieve a more efficient yet accurate high-resolution scheme for solving the advection term. To avoid the physically-meaningless negative solutions resulted from using the Green–Gauss theorem, a nonlinear two-point flux approximation scheme is adopted to deal with the anisotropic diffusion term. The developed method can be readily coupled with a two-dimensional finite-volume-based flow models under unstructured triangular mesh. By integrating with the ELCIRC flow model, the proposed method was verified using three idealized benchmark cases (i.e., advection of a circle-shaped solute field, advection in a cyclogenesis flow field and transport of a initially square-shaped solute plume), and further applied to simulate the non-reactive solute transport process driven by irregular tides in the Deep Bay, eastern Pearl River Estuary of China. These cases are also simulated by models using other existing methods, including different r-factor for advection term and the Green–Gauss theorem for diffusion term. The comparison between the results from the new method and those from other existing methods demonstrated the new method could describe advection induced concentration shock and discontinuities, and anisotropic diffusion at high resolution without providing spurious oscillations and negative values.  相似文献   
940.
Various pretreatments methods including sonication and grinding were performed on red seaweed Gelidium amansii for the subsequent extraction of agarose. The agarose products are usually extracted from agar powder products from seaweeds. In this study, the agarose was extracted using a direct polyethylene glycol (PEG) method without the need to first process the agar from seaweed. The agar extract was frozen then thawed and mixed directly with PEG solution to precipitate the agarose. The quality of agarose obtained was evaluated through physico-chemical properties analysis which includes spectral technique (FTIR), melting and boiling point, gel strength and sulfate content. These properties were compared with a non-pretreated sample and it was found that the addition of pretreatment steps improved the quality of agarose but gave a slightly lower yield. The gel strength of pretreated samples was much higher and the sulfate content was lower compared to non-pretreated samples. The best pretreatment method was sonication which gave gel strength of 742 g cm-2 and sulfate content of 0.63%. The extraction of agarose can be further improved with the use of different neutralizing agents. Pretreating the seaweed shows potential in improving the quality of agarose from seaweed and can be applied for future extraction of the agarose.
  相似文献   
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