人工去除
- Manual removal;【生态】artificial removal
-
接触氧化-人工湿地去除印染废水中的COD
COD removal in dyeing wastewater with contact oxidation and artificial wetland
-
因此,当采用人工湿地去除微污染源水中PAEs、PCBs污染物时,在试验进水浓度下,停留时间为2d时可以达到净化目的。
Therefore , when using artificial wetland for the removal of PAE and PCB contaminants in Micro-polluted source water , the purification purposes can be achieved at the condition of test influent concentration , residence time for two days .
-
负荷及温度对人工湿地去除有机物的影响
Influence of Load and Temperature on Contamination Removal in Constructed Wetland
-
两级逆向垂直潜流人工湿地去除营养物的效能
Performance of Nutrients Removal of Two-stage Inverse Vertical Subsurface Flow Constructed Wetlands
-
人工介质去除源水中多氯联苯和多环芳烃研究
Study on Artificial Medium for Removing PCBs and PAHs in Source Water
-
复合流式与推流式人工湿地去除效果的比较
Comparison of Removal Efficiency for Compound Flow and Pushing Flow in Constructing Wetland
-
复合微生物制剂对芦苇人工湿地去除污染物的影响
Effect of compound microorganism preparation on pollutant removal in the reed constructed wetlands
-
利用ABR酸化预处理和人工湿地联合去除污染物,在冬季运行条件下,探讨了污染物的降解效能与湿地内微生物活性关系。
The relationship between pollutant degradation efficiency and the microorganism activity inside wetland was investigated by using ABR processing and artificial wetland to treat pollutant in winter .
-
人工湿地污染物去除动力学模型研究进展
Progress of Development of Kinetic Models for Pollutants Removal with Constructed Wetlands
-
提高垂直潜流人工湿地氨氮去除效果的技术研究
Technical Research on Improving Ammonial Nitrogen Remove Effect of Subsurface Flow Constructed Wetland
-
介绍了人工湿地污染物去除机理、人工湿地去除效果影响因素和人工湿地组合工艺的研究进展,并提出了今后需要深入开展的工作。
In the article the research advance in the the removal mechanism , factors and combinational technique of the construction of the artificial wetland was introduced .
-
生物滤塔能有效完成对有机物的降解和硝化作用,人工湿地进一步去除氮、磷等污染物。
The biofilter can effectively complete the organic substance degradation and nitrification , and the constructed wetland system could further remove the nutriments , such as nitrogen and phosphorus .
-
人工湿地具有去除污染效果好、运行费用低和易维护等特点,已被广泛用于污水处理中。
Constructed wetland is often employed for treating various wastewaters because of its many advantages : low overall cost , high efficiencies for pollutant removal , simple operation and stable performance .
-
对耗氧率和污染物去除率相关性分析发现,对于微污染水来说,溶氧并不是人工湿地污染物去除率的限制性因素。
From the relative analysis between oxygen consumption rate and removal rate of pollutants , we found that the DO is not the limited factor for wetland to remove pollutants of slightly polluted water .
-
LAS对人工快滤系统去除TP的影响
Effect of LAS on Removing TP in Artificial Rapid Infiltration Land Treatment System
-
湖滨带人工湿地营养物去除效果观测及模拟
Observation and Simulation of Nutrients Removal for Constructed Lake-side Wetlands
-
垂直潜流人工湿地中污染物去除机理研究
Research on Removal Mechanism for Pollutant in Vertical-Flow Constructed Wetland
-
潜流型人工湿地对污染物去除效果的研究
Study on the purification efficiency of subsurface constructed wetlands
-
水平潜流人工湿地有机物去除模型研究
Modelling organic matter removal in horizontal subsurface constructed wetland
-
人工湿地中污染物去除的数学模型
Mathematic Model of Pollutant Removal in Artificial Wetland
-
人工湿地的磷去除机理
Phosphorus removal mechanism of constructed wetland
-
人工湿地的氮去除机理
Nitrogen removal mechanism of constructed wetland
-
NH4+-N在人工湿地中的去除规律与总氮具有较高的一致性。
Removal of NH4 + - N in the artificial wetland has high consistency with the removal of total nitrogen .
-
实验证明藻类的打捞是一种人工延长食物链去除氮磷等污染物的有效方法。
It was proved that algae salvage was an effective way to prolong the food chain and remove nitrogen and phosphor .
-
人工湿地污染物的去除率受很多因素的影响,运用回归分析理论建立数学模型模拟人工湿地的去污过程,确定污染物去除率与进水浓度、水温、进水流量间以及去除率与湿地面积间的相关关系。
Artificial wetland pollutant removal rate is affected by many factors , Using regression analysis theory model to simulate the process of artificial wetland decontamination , to determine the relationship between the pollutant concentration and temperature , water inflow , the removal rate and wetland area .
-
兔眼人工晶体与小鼠腹膜腔人工晶体(去除茧样膜后)均可见到反应性膜,但兔眼人工晶体反应性膜较厚。
Reactive membranes can be seen on the lens removed from either rabbit eye or mouse peritoneal space .
-
为确定钢渣作为垂直潜流人工湿地基质的可行性,开展了静态吸附和钢渣人工湿地去除生活污水中磷的试验研究。
In order to analyze the removal efficiency of phosphorus from wastewater by using steel slag as the substrate materials of the vertical-flow constructed wetland systems , the phosphorus adsorption time , velocity , capacities and mode were examined .