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81.
对焦化厂蒸氨废水中的有机物进行了GC/MS分析,发现酚类,吲哚,喹啉和硫醇是主要污染物成分。对旨在降低蒸氨废水硫化物含量的各种处理方法进行了比较。采用CWZ-01吸附剂的吸附法能使废水中硫化物降至30mg/L以下。 相似文献
82.
William R. Krug 《Journal of the American Water Resources Association》1996,32(4):745-752
ABSTRACT: Streamflow for 67 years was simulated for Coon Creek at Coon Valley, Wisconsin, for three conditions in the drainage basin: (1) conditions in the 1930s; (2) conditions in the 1970s, excluding flood-detention reservoirs; and (3) conditions in the 1970s, including flood-detention reservoirs. These simulations showed that the changes in agricultural practices over 40 years (1940–80) reduced the 100-year flood by 53 percent (from 38,900 to 18,300 cubic feet per second). The flood-detention reservoirs reduced the 100-year flood by an additional 17 percent (to 15,100 cubic feet per second). The simulation was accomplished by calibrating a precipitation-runoff model to observed rainfall and runoff during two separate periods (1934–40 and 1978–81). Comparisons of model simulations showed that differences between the model calibrations for the two periods were statistically significant at the 95 percent confidence level. 相似文献
83.
ABSTRACT: There are a large number of conceptual hydrological models available today. It is not easy to immediately identify the similarities and differences between the different models. The Swedish HBV model and the Chinese Xinanjiang model are two examples of conceptual, semi-distributed, rainfall-runoff models. The Xinanjiang model was designed for use in humid and semi-humid regions, with no routine for the snowmelt runoff, whereas the snow routine is an important part of the HBV model in many applications. The model structures of the two models may be described in four routines, compared in this paper. The integral structures of them are similar, but there are some differences, especially in the runoff production routine. The physical significance and physical definitions of some model parameters were analyzed. Both models were tested in two basins. Both models gave similar results, and both models performed well in the application. The similarity of the results obtained by different model structures leads to the following two conclusions. First, more effort should probably be spent on the improvement of input data quality and coverage than on the development of more detailed model structures only. Second, inference about basin behavior and characteristics from the values of calibrated model parameters must be made with great caution. 相似文献
84.
抽出式通风煤巷掘进过程中粉尘浓度分布规律的数值模拟 总被引:4,自引:0,他引:4
根据气固两相流理论,针对矿井掘进工作面的特点,采用计算流体力学的离散相模型(DPM)对掘进工作面通风过程中粉尘浓度进行数值模拟,总结抽出式通风掘进巷道中粉尘浓度的沿程分布及变化规律。 相似文献
85.
系统评价天然蛭石吸附氨氮的效果 总被引:7,自引:1,他引:7
采用在人工配置含氨氮的污水中投加蛭石的方法,系统研究了天然蛭石吸附污水中氨氮的饱和吸附容量以及蛭石吸附氨氮的等温吸附曲线,探讨了污水的pH值、温度、浓度对氨氮去除率的影响及各影响因子的大小,结果表明,蛭石的饱和吸附量为20 8mg/g;蛭石吸附量在pH2 0~6 0范围内随着pH的增大而增大,最佳pH为4 0~6 0;温度在15~35℃范围内,吸附量随温度的升高减小,氨氮的去除率随着蛭石用量的增加而增加,影响因素的大小顺序为:pH>蛭石的用量>吸附时间>温度。这为蛭石作为一种新型氨氮吸附材料提供了基础参数。 相似文献
86.
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88.
Applying network theory to prioritize multispecies habitat networks that are robust to climate and land‐use change 下载免费PDF全文
Cécile H. Albert Bronwyn Rayfield Maria Dumitru Andrew Gonzalez 《Conservation biology》2017,31(6):1383-1396
Designing connected landscapes is among the most widespread strategies for achieving biodiversity conservation targets. The challenge lies in simultaneously satisfying the connectivity needs of multiple species at multiple spatial scales under uncertain climate and land‐use change. To evaluate the contribution of remnant habitat fragments to the connectivity of regional habitat networks, we developed a method to integrate uncertainty in climate and land‐use change projections with the latest developments in network‐connectivity research and spatial, multipurpose conservation prioritization. We used land‐use change simulations to explore robustness of species’ habitat networks to alternative development scenarios. We applied our method to 14 vertebrate focal species of periurban Montreal, Canada. Accounting for connectivity in spatial prioritization strongly modified conservation priorities and the modified priorities were robust to uncertain climate change. Setting conservation priorities based on habitat quality and connectivity maintained a large proportion of the region's connectivity, despite anticipated habitat loss due to climate and land‐use change. The application of connectivity criteria alongside habitat‐quality criteria for protected‐area design was efficient with respect to the amount of area that needs protection and did not necessarily amplify trade‐offs among conservation criteria. Our approach and results are being applied in and around Montreal and are well suited to the design of ecological networks and green infrastructure for the conservation of biodiversity and ecosystem services in other regions, in particular regions around large cities, where connectivity is critically low. 相似文献
89.
锆-十六烷基三甲基氯化铵改性活性炭对水中硝酸盐和磷酸盐的吸附特性 总被引:3,自引:3,他引:0
采用锆(Zr)和阳离子表面活性剂十六烷基三甲基氯化铵(CTAC)对活性炭进行联合改性,考察了所制备的Zr-CTAC改性活性炭对水中硝酸盐和磷酸盐的吸附去除作用,并探讨了相关的吸附去除机制.结果表明,Zr-CTAC改性活性炭对水中硝酸盐和磷酸盐均具备较好的吸附去除能力.Zr-CTAC改性活性炭对硝酸盐和磷酸盐吸附动力学过程满足准二级动力学模型.Langmuir、Freundlich和Dubinin-Radushkevich(D-R)等温吸附模型可以较好地描述Zr-CTAC改性活性炭对水中硝酸盐的等温吸附过程,Langmuir和D-R等温吸附模型可以较好地描述Zr-CTAC改性活性炭对水中磷酸盐等温吸附过程,通过Langmuir模型计算得到吸附剂对硝酸盐和磷酸盐的最大单位吸附量分别为7.58 mg·g-1和10.9 mg·g-1.高的p H会抑制Zr-CTAC改性活性炭对水中硝酸盐和磷酸盐的吸附.水中共存的Cl-、HCO-3和SO2-4等阴离子均会抑制Zr-CTAC改性活性炭对硝酸盐和磷酸盐的吸附,且对吸附硝酸盐的抑制作用较强而对吸附磷酸盐的抑制作用较弱.水中共存的磷酸盐对Zr-CTAC改性活性炭吸附硝酸盐的抑制作用较强,而水中共存的硝酸盐对Zr-CTAC改性活性炭吸附磷酸盐的抑制作用较弱.1 mol·L-1Na Cl溶液可以使90%左右被吸附到Zr-CTAC改性活性炭表面上的硝酸盐解吸下来.1 mol·L-1的Na OH溶液可以使78%左右被吸附到Zr-CTAC改性活性炭表面上的磷酸盐解吸下来.Zr-CTAC改性活性炭对硝酸盐的吸附机制主要包括阴离子交换作用和静电吸引作用,对磷酸盐的吸附机制主要包括配位体交换作用、阴离子交换作用和静电吸引作用.上述结果说明Zr-CTAC改性活性炭适合作为一种吸附剂去除废水中的硝酸盐和磷酸盐. 相似文献
90.
水铁矿及其胶体对砷的吸附与吸附形态 总被引:13,自引:10,他引:3
采用吸附实验,通过吸附动力学和吸附等温模型,研究了水铁矿及其胶体对As(Ⅲ)和As(Ⅴ)的吸附能力.在此基础上,使用连续提取和As化学形态提取技术分别对水铁矿及其胶体固相上吸附As的结合形态和化学形态进行提取分析.吸附动力学研究以及Langmuir和Freundlich两种吸附等温模型拟合结果表明,水铁矿及其胶体对As的吸附为多层吸附,且易于进行.水铁矿胶体对As(Ⅲ)和As(Ⅴ)的吸附量分别为194.8 g·kg~(-1)和107.3 g·kg~(-1),而水铁矿对As(Ⅲ)和As(Ⅴ)的吸附能力分别为155.2 g·kg~(-1)和104.4 g·kg~(-1),均低于水铁矿胶体.水铁矿及其胶体吸附的As以专性吸附As、无定形铁氧化物结合As和晶型铁氧化物结合As形式存在,胶体上未形成残渣态As.因此,水铁矿胶体吸附As的牢固程度低于吸附As后形成残渣态As的水铁矿,且所吸附的As容易重新释放到环境中,增加环境风险.水铁矿单独存在时不具有将As(Ⅴ)还原为As(Ⅲ)的能力. 相似文献