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of 749
pro vyhledávání: '"Robert A. McClelland"'
Autor:
Catharine Elizabeth Bosman, Petrie van Wyk, Robert William McClelland Pott, Steven Martin Bradshaw
Publikováno v:
AMB Express, Vol 13, Iss 1, Pp 1-13 (2023)
Key points The thermosiphon photobioreactor can operate under diurnal light cycles. Diurnal light cycles reduce hydrogen productivity of R. palustris. Diurnal light cycles have little to no effect on the growth of R palustris.
Externí odkaz:
https://doaj.org/article/5949b507f0634aa5a53f1aeb06943c79
Publikováno v:
In Journal of Biotechnology 10 January 2023 361:57-65
Publikováno v:
Biomass Conversion & Biorefinery; Jul2024, Vol. 14 Issue 14, p16515-16533, 19p
Akademický článek
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Publikováno v:
In Chemical Engineering Journal 1 May 2019 363:141-154
Autor:
Brenton M. Barr
Publikováno v:
Environmental History Review. 14:105-107
Publikováno v:
Gels, Vol 8, Iss 9, p 548 (2022)
There is a need to develop sustainably sourced products that can address the needs for improved water retention in soils, slow the release rate of fertilizers (to prevent leaching and downstream eutrophication), and control soil pH for use in agricul
Externí odkaz:
https://doaj.org/article/2f4c1bb96bd54c55bd9069c172aa5617
Publikováno v:
Bioengineering, Vol 9, Iss 8, p 344 (2022)
A thermosiphon photobioreactor (TPBR) can potentially be used for biohydrogen production, circumventing the requirement for external mixing energy inputs. In this study, a TPBR is evaluated for photofermentative hydrogen production by Rhodopseudomona
Externí odkaz:
https://doaj.org/article/4689f3fd3b83491da337fca00bb2dd54
Publikováno v:
Bioprocess and Biosystems Engineering. 46:913-919
Photofermentative hydrogen production has gained increasing attention as a source of green energy. To make such photofermentation processes economically competitive, operating costs need to be reduced, possibly through outdoor operation. Because phot
Publikováno v:
Bioprocess & Biosystems Engineering; Jun2023, Vol. 46 Issue 6, p913-919, 7p