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41.
膜生物反应器运行中的膜污染问题 总被引:9,自引:0,他引:9
这了各国研究者针对膜生物反应器中的膜污染问题所作的工作,认为膜本身的性质以及废水组成和工艺条件都是造成膜污染的主要原因,利用反冲洗和清洗手段,可以有效地改善膜的性能,以提高膜的寿命,膜生物反应器技术的改进是避免膜污染的新思路。 相似文献
42.
在活动流场模型的基础上建立了新的溶质运移控制方程,研究了流场分形特征参数的计算方法;采用4组染色示踪试验资料,分析了活动流场模型模拟土壤水流运动和溶质运移宏观非均匀特征的适用性.模拟分析表明,活动流场模型能较准确地捕捉到土壤中的优先流特别是不稳定流的宏观运动特征;土壤存在大孔隙结构的情况下,水流和溶质将更快的迁移到深层土壤,活动流场模型模拟计算的入渗深度偏小,但大于连续性模型的模拟计算结果;当土壤中的大孔隙结构较少时,活动流场模型模拟预测的土壤含水率分布和溶质浓度分布与实测结果比较一致. 相似文献
43.
Distribution of heavy metals in sediments of the Pearl River Estuary, Southern China: Implications for sources and historical changes 总被引:2,自引:0,他引:2
The distribution of heavy metals (Pb, Zn, Cd and As) in sediments of the Pearl River Estuary was investigated. The spatial distribution of heavy metals displayed a decreasing pattern from the turbidity maxima to both upstream and downstream of the estuary, which suggested that suspended sediments played an important role in the trace metal distribution in the Pearl River Estuary. In addition, metal concentrations were higher in the west part of the estuary which received most of the pollutants from the Pearl River. In the sediment cores, fluxes of heavy metals were consistent with a predominant anthropogenic input in the period 1970-1990. From the mid-1990s to the 2000s, there was a significant decline in heavy metal pollution. The observed decline has shown the result of pollution control in the Pearl River Delta. However, it is noteworthy that the metal concentrations in the most recent sediment still remained considerably high. Taken together, the enrichment of heavy metals in sediments was largely controlled by anthropogenic pollution. 相似文献
44.
The characteristics of Pb2+ adsorption on the surface of birnessites with different average oxidation states (AOS) of Mn, synthesized under acidic and alkali conditions, were investigated. The results indicated that the amount of adsorbed Pb2+ increased with the increase of Mn AOS in birnessites. The amount of Pb2+ adsorbed positively correlated with the amount of released Mn2+, H+, and K+ (r = 0.9962 > 0.6614, n = 14, α = 0.01). The released Mn2+, H+, and K+ were derived mostly from the corresponding catio... 相似文献
45.
解决室内污染——绿色家装和救济途径 总被引:4,自引:0,他引:4
我国室内环境污染严重,而装修污染是室内污染的主要源头之一,解决这一问题的关键是倡导“绿色家装”理念,绿化室内环境。文章还提出了处理室内环境污染损害的救济途径。 相似文献
46.
刘锋 《中国环境管理干部学院学报》2011,21(1):32-36
通过论述青海西藏两地环境质量总体向好的结论引证青藏高原生态盈余。用"生态足迹"和"人类发展指数"两种指标来衡量青藏高原的可持续发展能力,结果表明青藏高原有着较好的生态盈余,但人类发展指数值偏低,限制了青藏高原的可持续发展能力。应通过提高公共服务能力,加强生态系统管理,减少碳足迹来实现青藏高原的生态文明。 相似文献
47.
Bohan Liao Zhaohui Guo Qingru Zeng Anne Probst Jean-Luc Probst 《Water, Air, & Soil Pollution: Focus》2007,7(1-3):151-161
Leaching experiments of rebuilt soil columns with two simulated acid rain solutions (pH 4.6–3.8) were conducted for two natural
soils and two artificial contaminated soils from Hunan, south-central China, to study effects of acid rain on competitive
releases of soil Cd, Cu, and Zn. Distilled water was used in comparison. The results showed that the total releases were Zn>Cu>Cd
for the natural soils and Cd>Zn≫Cu for the contaminated soils, which reflected sensitivity of these metals to acid rain. Leached
with different acid rain, about 26–76% of external Cd and 11–68% external Zn were released, but more than 99% of external
Cu was adsorbed by the soils, and therefore Cu had a different sorption and desorption pattern from Cd and Zn. Metal releases
were obviously correlated with releases of TOC in the leachates, which could be described as an exponential equation. Compared
with the natural soils, acid rain not only led to changes in total metal contents, but also in metal fraction distributions
in the contaminated soils. More acidified soils had a lower sorption capacity to metals, mostly related to soil properties
such as pH, organic matter, soil particles, adsorbed SO4
2−, exchangeable Al3+ and H+, and contents of Fe2O3 and Al2O3. 相似文献
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50.
改性沸石(Na-Y型)对Ni2+的吸附行为 总被引:1,自引:0,他引:1
将天然沸石熔融制得新型改性沸石(Na-Y型),研究Na-Y型沸石对Ni2 的吸附行为.结果表明,对Ni2 的饱和吸附量,Na-Y型沸石为31.04mg·g-1,而天然斜发沸石和Na型沸石(NaCl改性)仅为3.60mg·g-1和7.64 mg·g-1.Na-Y型沸石对Ni2 的等温吸附行为符合Freundlich方程.对溶液中Ni2 的吸附量在初始阶段(0-5h)快速上升,而后趋于平缓.共存阳离子对Na-Y型沸石吸附Ni2 的影响为:Co2 》Ca2 》Fe3 》 K . 相似文献