Hierarchical prioritization of innovative treatment systems for sustainable dairy wastewater management

2016 ◽  
Vol 112 ◽  
pp. 4605-4617 ◽  
Author(s):  
Coskun Aydiner ◽  
Unal Sen ◽  
Derya Y. Koseoglu-Imer ◽  
Esra Can Dogan
2021 ◽  
pp. 1-4
Author(s):  
Basanti Ekka ◽  
Sandis Dejus ◽  
Talis Juhna

Abstract The objective of the research presented in this Research Communication was to access the environmental impact of the Latvian dairy industries. Site visits and interviews at Latvian dairy processing companies were done in order to collect site-specific data. This includes the turnover of the dairy industries, production, quality of water in various industrial processes, the flow and capacity of the sewage including their characteristic, existing practices and measures for wastewater management. The results showed that dairy industries in Latvia generated in total approximately 2263 × 103 m3 wastewater in the year 2019. The Latvian dairy effluents were characterized with high chemical oxygen demand (COD), biological oxygen demand (BOD) and total solids (TS). Few dairy plants had pre-treatment facilities for removal of contaminants, and many lacked onsite treatment technologies. Most facilities discharged dairy wastewater to municipal wastewater treatment plants. The current study gives insight into the Latvian dairy industries, their effluent management and pollution at Gulf of Riga due to wastewater discharge.


2012 ◽  
Vol 32 (S 01) ◽  
pp. 25-S28
Author(s):  
H. Rott ◽  
G. Kappert ◽  
S. Halimeh

SummaryA top quality, effective treatment of haemophilia requires an integrated therapeutical concept and an excellent cooperation of an interdisciplinary team. Since years different models are discussed in Germany in order to enlarge the offers for a suitable care of patients with hard to treat diseases. The healthpolitical targets are expressed in the changes of the Code of Social Law number V (SGB V) and in innovations in the statutory health insurance. This new legal basis provides opportunities to implement innovative treatment concepts outside university hospitals and paves the way for ambulant haemophilia centres to offer an integral care, all legally saved by a contract.The Coagulation Centre Rhine-Ruhr reveals as an example how haemophilia treatment in accordance with guidelines and with the latest results of international research can be realise in an ambulatory network.


2006 ◽  
Vol 14 (2) ◽  
pp. 525-531
Author(s):  
Jamie Robinson ◽  
Russell Thomas ◽  
Paddy Daly

2019 ◽  
Author(s):  
Bram Frohock ◽  
Jessica M. Gilbertie ◽  
Jennifer C. Daiker ◽  
Lauren V. Schnabel ◽  
Joshua Pierce

<div>The failure of frontline antibiotics in the clinic is one of the most serious threats to human health and requires a multitude of novel therapeutics and innovative treatment approaches to curtail the growing crisis. In addition to traditional resistance mechanisms resulting in the lack of efficacy of many antibiotics, most chronic and recurring infections are further made tolerant to antibiotic action by the presence of biofilms. Herein, we report an expanded set of 5-benzylidene-4-oxazolidinones that are able to inhibit the formation of Staphylococcus aureus biofilms, disperse preformed biofilms and in combination with common antibiotics are able to significantly reduce the bacterial load in a robust collagen-matrix model of biofilm infection.</div>


2018 ◽  
Vol 3 (1) ◽  
pp. 7-14
Author(s):  
J. Kenneth, R. S. Suglo

Sewage generated in Ghana is commonly discharged into the environment without any form of treatment to reduce the degree ofcontamination and mitigate potential public health and environmental issues. Although some attempts have been made in someparts of Ghana to utilize the waste stabilization pond (WSP) system to treat domestic sewage, the ponds often fail to achievetheir purpose due to lack of basic maintenance and supervision. To assess the utility of the WSP system for treating sewage,wastewater samples were collected from the raw sewage, anaerobic, facultative and maturation ponds of WSPs at Obuasi inGhana, and analyzed for physicochemical and microbiological contaminants. The results show that the final pond effluent meetsrecommended microbiological and chemical quality guidelines. The waste stabilization pond system demonstrates high removalefficiencies of wastewater contaminants. The biochemical oxygen demand, total suspended solids, nitrate and faecal coliformsreduction efficiencies of 97.3%, 97.6%, 83.3% and 99.94% respectively are highly significant, and compare well with reportedremoval efficiencies in the literature. Additionally, the ponds have high reduction efficiencies for heavy metals and pathogenicmicroorganisms. The wastewater treatment system complies with standard wastewater management practices, and provides auseful method for treating and disposing wastewater in Ghana.


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