Jan Baeyens
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Explore the profile of Jan Baeyens including associated specialties, affiliations and a list of published articles.
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33
Citations
137
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Recent Articles
11.
Chen Y, Geng N, Hu T, Baeyens J, Wang S, Su H
J Environ Manage
. 2022 Jul;
319:115714.
PMID: 35839647
A great deal of efforts has been put into studying the influence of the external macroenvironment for activated sludge to survive on microbial community succession, while granular internal spatial microenvironment...
12.
Liu J, Wei S, Zhang H, Deng Y, Baeyens J, Dewil R, et al.
J Environ Manage
. 2022 Jun;
317:115427.
PMID: 35653846
Adsorption is a widely applied waste water treatment technology, especially for removing micro-pollutants and dyes of industrial effluents. Over the past decade, adsorbing metal oxide micron- and nano-particles have been...
13.
Zhang C, Liu Y, Zhang W, Sun L, Baeyens J
Bioresour Technol
. 2021 Sep;
342:125984.
PMID: 34563819
Wheat straw is a favorable cell carrier in the caproate fermentation system, yet its smooth surface limits the biofilm formation. In this study, the modification of wheat straw was conducted...
14.
Yang Z, Zhao L, Hu M, Cai D, Tian Z, Baeyens J, et al.
iScience
. 2021 Jun;
24(5):102491.
PMID: 34113827
Flocculation is a mainstream technology for the provision of safe drinking water but is limited due to the ineffectiveness of conventional flocculants in removing trace low-molecular-weight emerging contaminants. We described...
15.
Xu J, Kong L, Deng L, Mazza G, Wang F, Baeyens J, et al.
J Environ Manage
. 2021 May;
291:112692.
PMID: 33962288
In this work, a new structured linoleic-based hydroxytetrahydrofuran (HTHF) ester lubricant with excellent properties was developed. A synthesis route through regioselective enzymatic hydration was established, combining highly selective epoxidation with...
16.
Deng Y, Dewil R, Appels L, Ansart R, Baeyens J, Kang Q
J Environ Manage
. 2020 Oct;
278(Pt 1):111527.
PMID: 33126201
The worldwide production of polymeric foam materials is growing due to their advantageous properties of light weight, high thermal insulation, good strength, resistance and rigidity. Society creates ever increasing amounts...
17.
Si Z, Li G, Wang Z, Cai D, Li S, Baeyens J, et al.
ACS Appl Mater Interfaces
. 2020 Jun;
12(28):31887-31895.
PMID: 32551481
Poly(dimethylsiloxane) (PDMS) membranes are widely used for bioethanol separation. However, the network cavity size of PDMS membranes is generally smaller than the ethanol kinetic radius (0.225 nm), which limits the...
18.
Liu J, Baeyens J, Deng Y, Wang X, Zhang H
J Environ Manage
. 2020 May;
267:110582.
PMID: 32364130
A major action to reduce CO emissions is replacing fossil fuels by renewable energy sources. Matching the energy supply and demand by the mostly intermittent renewable resources (wind, solar, wave)...
19.
Liu J, Baeyens J, Deng Y, Tan T, Zhang H
J Environ Manage
. 2020 Feb;
260:110054.
PMID: 32090807
The abatement of CO emitted from combustion is a hot research topic. Current CO capture techniques of adsorption, absorption, membrane separation and cryogenics involve high investment and operation costs. For...
20.
Si Z, Li J, Ma L, Cai D, Li S, Baeyens J, et al.
Angew Chem Int Ed Engl
. 2019 Sep;
58(48):17175-17179.
PMID: 31549761
The polydimethylsiloxane (PDMS) membrane commonly used for separation of biobutanol from fermentation broth fails to meet demand owing to its discontinuous and polluting thermal fabrication. Now, an UV-induced polymerization strategy...