Showing posts with label activated sludge. Show all posts
Showing posts with label activated sludge. Show all posts

Thursday, 19 January 2023

Study on Calibration of ASM1 for Carbon and Nitrogen Removals of Riqqa Activated Sludge System, Kuwait| Chapter 7 | Recent Progress in Science and Technology Vol. 1

 The second-best wastewater treatment convenience in Kuwait, the Riqqa plant, has recently displayed signs of operating in shaky conditions. A study was currently carried out by Kuwait Institute for Scientific Research to assess plant efficiency and identify ultimate likely sources of the issue. The plant's stimulated sludge system was shaped using ASM1 in the SIMBA imitation package to carry out these goals. In Kuwait, ASM1 was being used for the first occasion to simulate a total activated sludge arrangement.  This study uses routinely calculated wastewater quality dossier over a long period of time to measure ASM1 to the carbon and nitrogen removals of the Riqqa stimulated sludge system. COD fractionation and early estimations of the measurement parameters were two together aided by respirometer study.  Validation results showed agreement 'tween the measured and fake effluent COD, NH4-N and NO3-N long-term dynamic simulation. The grown model can be secondhand in the evaluation and diagnosis of bureaucracy performance. Also, got values of ASM1 limits will be useful in modelling different activated mud systems in the country and the region.

Author(s) Details:

A. Abusam,
Innovative Technologies for Wastewater Treatment and Reclamation Program, Water Research Center, Kuwait Institute for Scientific Research, Kuwait.

Please see the link here: https://stm.bookpi.org/RPST-V1/article/view/9093


Thursday, 16 December 2021

Studies and Investigations on Various Aspects of Aerobic and Anaerobic Treatments for Sewage and Industrial Effluent | Chapter 1 | New Innovations in Chemistry and Biochemistry Vol. 5

 Aerobic and anaerobic treatments can reduce wastewater's oxygen consumption. Activated sludge, trickling filters, and advanced oxidation processes are examples of aerobic treatments. Aerobic systems have higher initial expenses for aeration equipment, as well as higher operational and maintenance costs. For sewage treatment, anaerobic treatments have a number of advantages. Up flow anaerobic sludge blanket reactors are one of the most essential treatment technologies. This approach has high conversion rates and is cost-effective. In addition, a high percentage of methane in the generated gas adds value. Anaerobic technologies have the advantage of a smaller reactor size and less biomass output. Anaerobic treatment is harmed by the presence of oil and grease. Anaerobic therapies are best for very high organic loading, while aerobic treatments are best for modest organic loading. This chapter delves into the research and studies that have been conducted on these treatments.


Author(S) Details

Sunil Jayant Kulkarni
Gharda Institute of Technology, Lavel, Maharashtra, India.

Ajaygiri Kamalgiri Goswami
University Institute of Chemical Technology KBC North Maharashtra University, Jalgaon, Maharashtra, India.

View Book:- https://stm.bookpi.org/NICB-V5/article/view/5142