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91.
还原法修复六价铬污染土壤的研究   总被引:1,自引:0,他引:1  
摘要:铬渣中含有毒性较强的六价铬化合物,其严重污染环境。本文通过实验室模拟试验,研究了硫代硫酸钠、亚硫酸钠、抗坏血酸和硫酸亚铁等还原剂对铬渣污染土壤中六价铬的解毒效果。探讨了还原剂的浓度、pH和反应时间对六价铬还原效果的影响。结果表明:亚硫酸钠浓度为1mol/L、pH9.5和反应时间为15min时对六价铬的还原效果最佳。  相似文献   
92.
农村环境连片整治工作自2010年开展以来,连云港市取得了显著的成效,但对农村环境连片整治工作的监控工作仍停留在《全国农村环境监测工作指导意见》(环办[2009]150号)和《江苏省农村地表水环境质量监测实施方案》(苏环然[2007]25号)的要求上,即对连片整治示范区内的农村地表水环境、乡镇和村庄生活污水处理设施进行例行监测,对连片整治示范工程进行验收监测和例行监测工作的层面上。为了加强农村环境连片整治工作的监控,保护农村生态环境,从农村环境连片整治系统架构入手,深入细致地研究了基于WEBGIS的数字监控系统,提出系统所要达到的功能要求。  相似文献   
93.
铬污染土壤的微生物修复技术研究进展   总被引:6,自引:0,他引:6  
介绍了土壤中铬的来源,存在形态,迁移转化及其对生物的危害,并重点阐述铬污染土壤的微生物修复机理:土壤中的Cr(VI)可以在微生物生物吸附、还原作用等作用下降低其生物可利用性和毒性,从而达到铬污染土壤修复的目的。针对微生物修复过程中存在的问题,提出了提高微生物修复铬污染土壤效果的措施,并对铬土壤污染微生物修复的发展趋势进行了展望。  相似文献   
94.
为了选择适合小城镇潜流人工湿地的填料,选取小城镇较为常见的材料(废砖、卵石、碎石),结合物化性质,研究25℃下填料对磷的吸附效果,并分析了填料种类对野外潜流人工湿地运行的影响。结果表明:(1)25℃时,3种填料对磷的吸附量随着溶液中初始磷浓度的增加而增加,吸附能力依次为废砖>碎石>卵石;(2)野外潜流人工湿地运行过程中,随HRT的延长,组合填料湿地WL1和废砖填料WL2湿地对总磷的净化效果有所提高,且WL2湿地对总磷的去除效果略优于WL1。因此,可以选择废砖作为小城镇潜流人工湿地系统的填料。  相似文献   
95.
电动力学修复铜污染土壤的研究   总被引:1,自引:0,他引:1  
采用电动力学方法修复重金属污染土壤。研究中采用高岭土模拟铜污染土壤,电化学装置的电压强度为0.5 V/cm,通过在阴阳极室加入不同的缓冲液来确定铜的迁移效果。结果表明在阴极室加入乙酸作为缓冲液可以有效提高铜的迁移效果,在阳极加入柠檬酸能够有效的与铜形成络合物达到更好的迁移效果。  相似文献   
96.
酒石酸淋洗过程中土壤重金属解吸动力学特征   总被引:1,自引:0,他引:1  
采用批处理淋洗的方法,研究了酒石酸淋洗修复张士污灌区土壤过程中镉、铅、铜、锌4种重金属离子解吸动力学特征。结果表明,酒石酸在12h条件下,达到对污染土壤中镉离子的最大去除率,铅、铜、锌3种重金属离子达到最大去除率则需要24h。4种重金属离子的解吸动力学过程可以用Elovich方程很好的描述,说明酒石酸去除重金属离子的过程是一种非均相扩散过程。此外,解吸速率曲线显示,反应初期相同时刻上酒石酸对铅离子的解吸速率最快,其次是铜和锌,最后是镉离子;反应后期同一时刻上铜和锌的解吸速率大于铅和镉。  相似文献   
97.
The nitrogen (N) distribution and cycling of atmosphere-plant-soil system in the typical meadow Calamagrostis angustifolia wetland (TMCW) and marsh meadow Calamagrostis angustifolia wetland (MMCW) in the Sanjiang plain were studied by a compartment model. The results showed that the N wet deposition amount was 0.757 gN/(m2·a), and total inorganic N (TIN) was the main body (0.640 gN/(m2·a)). The ammonia volatilization amounts of TMCW and MMCW soils in growing season were 0.635 and 0.687 gN/m2, and the denitrification gaseous lost amounts were 0.617 and 0.405 gN/m2, respectively. In plant subsystem, the N was mainly stored in root and litter. Soil organic N was the main N storage of the two plant-soil systems and the proportions of it were 93.98% and 92.16%, respectively. The calculation results of N turnovers among compartments of TMCW and MMCW showed that the uptake amounts of root were 23.02 and 28.18 gN/(m2·a) and the values of aboveground were 11.31 and 6.08 gN/(m2·a), the re-translocation amounts from aboveground to root were 5.96 and 2.70 gN/(m2·a), the translocation amounts from aboveground living body to litter were 5.35 and 3.38 gN/(m2·a), the translocation amounts from litter to soil were larger than 1.55 and 3.01 gN/(m2·a), the translocation amounts from root to soil were 14.90 and 13.17 gN/(m2·a), and the soil (0-15cm) N net mineralization amounts were 1.94 and 0.55 gN/(m2·a), respectively. The study of N balance indicated that the two plant-soil systems might be situated in the status of lacking N, and the status might induce the degradation of C. angustifolia wetland.  相似文献   
98.
In the extremely arid (∼150 mm yr−1) eastern Canary Islands of Lanzarote, Fuerteventura and La Graciosa, agriculture has been sustained for decades by a traditional runoff-capture (RC) farming system known as “gavias”. Although the main goal of these systems is to increase water supply for crops, making unnecessary conventional irrigation, a secondary and equally important factor is that this system allows for sustainable agricultural production without addition of chemical or organic fertilizers. A field study was conducted to assess the impact of long-term agriculture (>50 yr) on soil fertility and to evaluate key factors affecting the nutrient sustainability of RC agricultural production. Soil fertility and nutrient dynamics were studied through chemical characterization of the arable layer (0-25 cm) of RC agricultural plots, adjacent natural soils (control) not affected by runoff and cultivation, and sediments contributed by a series of RC events. Results showed that RC soils have enhanced fertility status, particularly because they are less affected by salinity and sodicity (mean electrical conductivity = 1.8 dS m−1 vs. 51.0 dS m−1 in control soils; mean exchangeable sodium percentage = 11.1% vs. 30.6% in control soils), and have higher water and nutrient holding capacities (mean clay plus silt contents ≈87% vs. 69% in control soils). In general, sediments transported with the runoff and deposited in RC plots (average sediment yield ≈ 46 ton ha−1 yr−1), contain sufficient nutrients to prevent a progressive reduction of essential plant nutrients below natural levels in spite of nutrient uptake and removal by the harvested crop. Average additions of nitrogen, phosphorus and potassium with the runoff sediments were 33.6, 35.3 and 48.8 kg ha−1 yr−1, respectively. Results of this study show how a crop production system can be sustained in the long term by natural hydrological and biogeochemical catchment processes. This system maintains a nutrient balance that is not based on energy-intensive inputs of fertilizers, but is integrated in natural nutrient cycling processes, unlike other tropical farming agroecosystems.  相似文献   
99.
The coupled SWAP-WOFOST model was used to study the effects of increasing salinity of groundwater, drought and water excess on grass production in The Netherlands. WOFOST simulates crop growth and SWAP simulates transport of water, solutes and heat in the vadose zone. The model was tested using several datasets from field experiments. We applied the models at regional scale where we quantified the impact of various groundwater salinity levels on grass growth and production using historical weather data (1971-2000). The salt concentrations in the subsoil were derived from the National Hydrological Instrument. The results show that salinity effects on grass production are limited. In wet years the excess rainfall will infiltrate the soil and reduce salt water seepage. In a next step we used future weather data for the year 2050, derived from 3 Global Circulation Models. From each model we used data from two CO2 emission scenarios. As expected higher temperatures increased drought stress, however, the production reduction as a result of salt water in the root zone is limited. Salt stress mainly occurred when irrigation was applied with saline water. The increased CO2 concentration in combination with the limited drought stress resulted in increasing simulated actual and potential yields. Overall conclusion for grassland in The Netherlands: drought stress is stronger than stress caused by water excess which on its turn is stronger than salinity stress. Future water demand for irrigation may increase by 11-19% and result in water scarcity if water supply is insufficient.  相似文献   
100.
针对目前我国农业生产中的资源环境问题,指出粮食生产成本核算的不完整性,粮食生产造成的资源耗减和环境降级得不到补偿。运用环境经济学原理和可持续发展理论对粮食生产的完全成本进行分析,提出粮食生产的完全成本除包括直接生产成本外,还应包括粮食生产的资源环境成本。论文以南方红壤丘陵区的湖南省祁阳县为研究对象进行案例分析,研究表明,2008年该区域粮食生产的资源环境成本相当于当年农业总产值的36.55%;早、中、晚稻的完全成本分别达到4.27、3.84和4.40元·kg-1,其中资源环境成本分别为1.38、 1.65和1.64元·kg-1,直接生产成本分别为2.89、 2.19和2.76元·kg-1,而实际市场价格分别仅有1.76、 1.90和1.84元·kg-1。研究结果对有关部门制定相关农业政策、调整粮食生产布局、促进区域粮食生产和可持续发展具有一定的参考价值。  相似文献   
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