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T P Curtis

Explore the profile of T P Curtis including associated specialties, affiliations and a list of published articles. Areas
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Articles 25
Citations 226
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Recent Articles
1.
Coello-Garcia T, Curtis T, Mrozik W, Davenport R
Water Res . 2019 Aug; 164:114905. PMID: 31394465
The removal of β-estradiol (E2) and α-ethinylestradiol (EE2) in biological wastewater treatment plants (WWTP) would need to be improved in order to comply with prospective Environmental Quality Standards (EQS) of...
2.
Brown M, Baptista J, Lunn M, Swan D, Smith S, Davenport R, et al.
Water Res . 2019 Jan; 152:264-273. PMID: 30682570
Viruses are thought to control bacterial abundance, affect community composition and influence ecosystem function in natural environments. Yet their dynamics have seldom been studied in engineered systems, or indeed in...
3.
How S, Lim S, Lim P, Aris A, Ngoh G, Curtis T, et al.
Water Sci Technol . 2018 May; 77(9-10):2274-2283. PMID: 29757179
Intensive aeration for nitrification is a major energy consumer in sewage treatment plants (STPs). Low-dissolved-oxygen (low-DO) nitrification has the potential to lower the aeration demand. However, the applicability of low-DO...
4.
Heidrich E, Dolfing J, Wade M, Sloan W, Quince C, Curtis T
Bioelectrochemistry . 2017 Sep; 119:43-50. PMID: 28910698
The factors that affect microbial community assembly and its effects on the performance of bioelectrochemical systems are poorly understood. Sixteen microbial fuel cell (MFC) reactors were set up to test...
5.
Brown M, Camezuli S, Davenport R, Petelenz-Kurdziel E, Ovreas L, Curtis T
Water Res . 2014 Dec; 68:414-22. PMID: 25462748
Viruses may play a critical role in the microbial dynamics of activated sludge systems; however the difficulty of their quantification makes long term and large scale studies costly, timely and...
6.
Baptista J, Lunn M, Davenport R, Swan D, Read L, Brown M, et al.
Appl Environ Microbiol . 2014 Jul; 80(19):5901-10. PMID: 25002435
Microbial abundance is central to most investigations in microbial ecology, and its accurate measurement is a challenging task that has been significantly facilitated by the advent of molecular techniques over...
7.
Bellucci M, Ofiteru I, Head I, Curtis T, Graham D
J Appl Microbiol . 2013 Apr; 115(2):621-30. PMID: 23611422
Aim: To provide deeper insights into nitrification process within aerobic bioreactors containing supplemental physical support media (hybrid bioreactors). Methods And Results: Three bench-scale hybrid bioreactors with different media size and...
8.
Heidrich E, Dolfing J, Scott K, Edwards S, Jones C, Curtis T
Appl Microbiol Biotechnol . 2012 Oct; 97(15):6979-89. PMID: 23053105
Addressing the need to recover energy from the treatment of domestic wastewater, a 120-L microbial electrolysis cell was operated on site in Northern England, using raw domestic wastewater to produce...
9.
Velasquez-Orta S, Head I, Curtis T, Scott K
Bioresour Technol . 2011 Feb; 102(8):5105-12. PMID: 21345669
This study evaluated how different types of industrial wastewaters (bakery, brewery, paper and dairy) affect the performance of identical microbial fuel cells (MFCs); and the microbial composition and electrochemistry of...
10.
Heidrich E, Curtis T, Dolfing J
Environ Sci Technol . 2010 Dec; 45(2):827-32. PMID: 21142001
The wastewater industry is facing a paradigm shift, learning to view domestic wastewater not as a waste stream which needs to be disposed of but as a resource from which...