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81.
基于资源最优化回收的再制造工程 总被引:6,自引:0,他引:6
从对寿命末端产品的处理选择分析出发,建立了末端产品回收梯级模型,提出基于最优化产品末端回收选择的再制造工程回收的附加值最大,环境污染最小,综合效益最高,并分析了再制造在产品全寿命周期各阶段所发挥的重要作用。 相似文献
82.
土壤中水溶氟与总氟和土壤PH值的相关分析 总被引:4,自引:0,他引:4
使用实测资料,利用数理统计方法分析了土壤中水溶氟与总氟和土壤PH值三者间的相关关系,提出了在背景地区,土壤水溶氟与总氟、土壤PH值间无相关性;与土壤PH值间无相关性的结论。 相似文献
83.
Paula Muukkonen Helin Hartikainen Kirsti Lahti Asko Srkel Markku Puustinen Laura Alakukku 《Agriculture, ecosystems & environment》2007,120(2-4):299-306
No-tillage (NT) is a method adopted to reduce erosion and particulate phosphorus (P) load from arable land to watercourses. However, it has been found to increase the loss of dissolved P with surface runoff, but the reasons for that have rarely been examined in detail. The objective of the present study was to determine the chemical factors explaining this response by investigating the impact of NT on the type and distribution of P reserves as well as on organic carbon (C) in the 0–35 cm topsoil layer of clay soil profiles (Vertic Cambisols). Soil samples were taken from two experimental fields (Jokioinen and Aurajoki) at 0–5, 5–20 and 20–35 cm depths in conventionally tilled (CT) and non-tilled (for 4–5 years) plots. The plots had been cultivated and fertilized according to the common field practices in Finland (15–18 kg P and 100–128 kg N ha−1 year−1).Inorganic and organic P reserves characterized by a modified Chang and Jackson fractionation procedure were not significantly affected by the cultivation methods. However, in the uppermost soil layer (0–5 cm) in NT of the Jokioinen field, the labile P determined by water extraction (Pw) increased significantly, whereas the increase in P extracted with acid ammonium acetate (PAAC) remained statistically insignificant. The increase in labile P coincided with a significant increase in organic carbon (C), which supports the theory that competition between organic anions and phosphate for the same sorption sites on oxide surfaces will enhance the lability of soil P. In the Aurajoki field with distinct soil cracking, Pw and PAAC were not affected by NT in the uppermost soil layer, but they increased in the deepest soil layer (20–35 cm) concomitantly with an increase in Al-bound P and organic C. However, the increases were not statistically significant. In both fields, soil acidification due to the repeated application of N fertilizers at a shallow soil depth as well as the accumulation of organic C lowered pH of the uppermost soil layer in NT compared to the deeper soil layers. The results indicated that even short-term NT can increase the labile P in clay soil. However, further studies are needed to assess the long-term changes in lability of surface soil P and, consequently, the possible need for readjustment of the fertilization level in NT. 相似文献
84.
85.
全国土壤侵蚀量估算及其在吸附态氮磷流失量匡算中的应用 总被引:26,自引:7,他引:26
应用土壤流失方程(USLE),根据我国土壤水力侵蚀分类分级标准,建立了大尺度区域土壤侵蚀量的估算模型;基于GIS技术平台,利用土壤普查数据,构建了全国表层土壤氮磷含量数据库,完成了2000年全国境内水土流失影响下吸附态氮磷的流失量估算.经数据合理性分析验证后得出以下结论:(1)全国因水土流失引发的吸附态氮素和磷素的流失总量分别达到104.22×104t和34.65×104t;(2)长江、珠江和黄河三大流域的吸附态氮、磷流失量之和分别占全国总量的83%和89%,单位面积(1km2)吸附态氮、磷的流失量分别介于6.0×10-4~0.53t和2.1×10-4~0.13t之间;(3)吸附态氮的重点流失区主要分布在长江中上游水土易蚀区、黄河中游沟壑区、西辽河上游区、珠江流域红水河、西江等上游区以及怒江、澜沧江下游区. 相似文献
86.
稀土吸附剂对废水深度除磷研究 总被引:2,自引:0,他引:2
通过浸渍——干燥——焙烧法制备预载镧氧化物稀土吸附剂,探讨了该吸附剂对水中磷的吸附性能。研究表明在镧离子浓度为0.025mol/1、pH为10-11的溶液中浸渍,于500℃温度下焙烧制得的稀土吸附剂,其除磷效果可达95%。 相似文献
87.
A值法研究大气总量控制的环境质量达标保证率 总被引:5,自引:0,他引:5
在总量控制区用A值法实行总量控制后,总量控制区在符合污染物年允许排放总量限值时,污染物的日平均浓度和小时平均浓度不一定能达到国家或地区大气环境质量标准。为了反映总量控制区环境质量达标情况,本文提出了A值法研究大气总量控制的环境质量达标保证率的概念,通过总量控制A值法的基本原理,给出小时/日环境质量达标保征率的量化公式,经过分析得到;环境质量达标保证率与污染物种类有关,同一污染物的保证率与A值的年分布情况密切相关。同时利用长江下游某地的2000年气象资料分析该地区A值的变化趋势,求得该地区SO2和N02的小时保征率分别为97.4%、90.2%,日保征率分别为90.2%、79.5%。 相似文献
88.
89.
Matthew Pocernich David W. Litke 《Journal of the American Water Resources Association》1997,33(1):205-214
ABSTRACT: Accurate data about nutrient concentrations in wastewater treatment plant effluents are needed for river basin water-quality studies. As part of the U.S. Geological Survey's National Water-Quality Assessment Program in the South Platte River Basin, nutrient data were requested from 31 wastewater-treatment plants located in the basin. This article describes the types of nutrient data available from the plants, examines the variability of effluent nutrient concentrations, and discusses methods for estimation of nutrient concentrations where data are lacking. Ammonia was monitored at 88 percent of the plants, nitrite plus nitrate was monitored at 40 percent of the plants, and organic nitrogen and phosphorus were monitored at less than 25 percent of the plants. Median total nitrogen concentrations and median total phosphorus concentrations were small compared to typical literature estimates for wastewater-treatment plants with secondary treatment. Nutrient concentrations in effluent from wastewater-treatment plants varied widely between and within plants. For example, ammonia concentrations varied as much as 5 mg/L during a day, as much as 10 mg/L from day to day, and as much as 30 mg/L from summer to winter within a plant. In the South Platte River Basin, estimates of median annual ammonia and nitrite plus nitrate concentrations can be improved based on plant processes; and nitrite plus nitrate and organic nitrogen concentrations can be estimated based on ammonia concentrations. However, to avoid large estimation errors, more complete nutrient data from wastewater-treatment plants are needed for integration into river basin water quality studies. The paucity of data hinders attempts to evaluate the relative importance of point source and nonpoint source nutrient loadings to rivers. 相似文献
90.