scholarly journals Pollution Control for Nature Surface Water 

2020 ◽  
Author(s):  
Malik Fakron

Abstract The huge amounts of pollutants in nature surface water in. This contaminates due to different operations in surface water. During the past fifty years, increasing attention has centered on the discharge of sewage into coastal waters. This practice has been widely criticized on the grounds that sewage-polluted seawater is a health hazard to bathers. The pollution of the surface water is becoming more and more serious. The marine environment has undergone great changes. This research is presented two methods to control pollution and rehabilitation environment. First method by using temporary floating a waterfall for removing containment from the surface water and reducing concentration total suspended matter in surface water and reducing concentrations for phosphate, nitrogen, organic carbon. Second method by using towed rotating biological contactors to reducing concentrations for phosphate, nitrogen, and organic carbon. To control effects of algae bloom occurs. These two methods are converted to heterogeneous reactor with solid catalysts; this reactor is multi step treatment. First step is screening and second step is solid catalyst bed reactor. As waterfall or towed rotating biological contactor is multi bed reactor. The water quality assessment for selection best scheme for enhancement water quality for surface water is based on acceptable japan environmental ministry guidelines for surface water quality level for bathing.

2020 ◽  
Author(s):  
Malik Fakron

Abstract The huge amounts of pollutants in nature surface water in. This contaminates due to different operations in surface water. During the past fifty years, increasing attention has centered on the discharge of sewage into coastal waters. This practice has been widely criticized on the grounds that sewage-polluted seawater is a health hazard to bathers. The pollution of the surface water is becoming more and more serious. The marine environment has undergone great changes. This research is presented two methods to control pollution and rehabilitation environment. First method by using temporary floating a waterfall for removing containment from the surface water and reducing concentration total suspended matter in surface water and reducing concentrations for phosphate, nitrogen, organic carbon. Second method by using towed rotating biological contactors to reducing concentrations for phosphate, nitrogen, and organic carbon. To control effects of algae bloom occurs. These two methods are converted to heterogeneous reactor with solid catalysts; this reactor is multi step treatment. First step is screening and second step is solid catalyst bed reactor. As waterfall or towed rotating biological contactor is multi bed reactor. The water quality assessment for selection best scheme for enhancement water quality for surface water is based on acceptable japan environmental ministry guidelines for surface water quality level for bathing.


2011 ◽  
Vol 4 (5) ◽  
pp. 70-72
Author(s):  
Cristina Roşu ◽  
◽  
Ioana Piştea ◽  
Carmen Roba ◽  
Mihaela Mihu ◽  
...  

2019 ◽  
Vol 70 (10) ◽  
pp. 3678-3680
Author(s):  
Alina Cochiorca ◽  
Narcis Barsan ◽  
Florin Marian Nedeff ◽  
Ion Sandu ◽  
Emilian Florin Mosnegutu ◽  
...  

This paper presents a study on assessment of water quality. According to a study, mining activities have a significant impact on water quality (lakes, surface water and groundwater), which has become a major problem globally. Due to mining and exploitation processes, lakes can be formed around these mines. Also, these lakes have been formed around the world and are steadily increasing. The purpose of this study is to watch the quality of water from the area around mining activities. This study refers to the, Groapa Burlacu lake around the mining exploitation Targu Ocna, Romania. This lake was formed on the northern bottle of the massive salt, strongly affected by the underground activities. Sampling for the determination the concentrations of Cl- and NaCl from the studied area was made at different depths (0 m, -5 m, -10 m, -15 m, -20 m, -25 m, -30 m, -35 m -40 m). Besides these concentrations, physical parameters of the water (pH, turbidity, electrical conductivity, dissolved oxygen and temperature) were also measured. To determine the physical parameters in the monitored area, sampling was done from four different points of the area and then put together for analysis. These parameters were measured on site using portable equipment. The data on the analyzed concentrations indicate that at depths of less than 5.0 m, the NaCl concentration values are more than 250 g/L.


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