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Clement A Cid

Explore the profile of Clement A Cid including associated specialties, affiliations and a list of published articles. Areas
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Articles 9
Citations 106
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Recent Articles
1.
Cid C, Abiola F, Starkl M
Environ Sci Technol . 2022 Jan; 56(2):699-706. PMID: 34982549
To address one of the most severe global challenges affecting human health and the environment, two new voluntary product standards (ISO 30500 and ISO 31800) for nonsewered sanitation systems (NSSS)...
2.
Zhu Y, Wu X, Gu A, Dobelle L, Cid C, Li J, et al.
Environ Sci Technol . 2021 Dec; 56(2):862-873. PMID: 34967203
Since the COVID-19 pandemic is expected to become endemic, quantification of severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) in ambient waters is critical for environmental surveillance and for early detection of...
3.
Dobelle L, Kim S, LeVan A, Leandri H, Hoffmann M, Cid C
ACS ES T Eng . 2021 Dec; 1(12):1659-1667. PMID: 34918011
The efficacy of an uncoupled electro-peroxone (E-peroxone) prototype reactor system for the treatment of synthetic graywater is determined. The two-stage E-peroxone process integrates ozonation with the production of hydrogen peroxide...
4.
Cid C, Qu Y, Hoffmann M
Environ Sci (Camb) . 2020 Dec; 4(10):1439-1450. PMID: 33365135
Self-contained toilet wastewater treatment system prototypes based on electrochemical oxidation of feces and urine using bi-layered semiconductor anodes ([BiO] [TiO]/Ir Ta O/Ti) have been designed, constructed, and implemented in regions...
5.
Varigala S, Krishnaswamy S, Lohia C, Hegarty-Craver M, Grego S, Luettgen M, et al.
Water Environ Res . 2020 Jun; 93(1):148-158. PMID: 32516457
Electrolysis of blackwater for disinfection and nutrient removal is a portable and scalable technology that can lessen the need for cities to construct large-scale wastewater treatment infrastructure and enable the...
6.
Cid C, Stinchcombe A, Ieropoulos I, Hoffmann M
J Power Sources . 2019 Apr; 400:441-448. PMID: 31007366
Microbial fuel cell (MFC) systems have the ability to oxidize organic matter and transfer electrons to an external circuit as electricity at voltage levels of <1 V. Urine has been...
7.
Cid C, Jasper J, Hoffmann M
ACS Sustain Chem Eng . 2018 Apr; 6(3):3135-3142. PMID: 29607266
Electrolysis of toilet wastewater with TiO-coated semiconductor anodes and stainless steel cathodes is a potentially viable onsite sanitation solution in parts of the world without infrastructure for centralized wastewater treatment....
8.
Huang X, Qu Y, Cid C, Finke C, Hoffmann M, Lim K, et al.
Water Res . 2016 Feb; 92:164-72. PMID: 26854604
The paucity of proper sanitation facilities has contributed to the spread of waterborne diseases in many developing countries. The primary goal of this study was to demonstrate the feasibility of...
9.
Cho K, Qu Y, Kwon D, Zhang H, Cid C, Aryanfar A, et al.
Environ Sci Technol . 2014 Jan; 48(4):2377-84. PMID: 24417418
We have investigated electrochemical treatment of real domestic wastewater coupled with simultaneous production of molecular H2 as useful byproduct. The electrolysis cells employ multilayer semiconductor anodes with electroactive bismuth-doped TiO2...