Ruixing Huang
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Explore the profile of Ruixing Huang including associated specialties, affiliations and a list of published articles.
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19
Citations
33
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Recent Articles
1.
Yang P, Huang R, Dang F, Shan B, Wang D, Liu H, et al.
Exploration (Beijing)
. 2024 Oct;
4(5):20230055.
PMID: 39439500
Snap-through bistability was widely exploited for rapid hopping in micro-electro-mechanical systems and soft robots. However, considerable energy input was required to trigger the transition between discrete buckling states blocked by...
2.
Liang Y, Huangfu X, Huang R, Han Z, Wu S, Wang J, et al.
J Hazard Mater
. 2024 May;
472:134501.
PMID: 38735182
Rapid advances in machine learning (ML) provide fast, accurate, and widely applicable methods for predicting free radical-mediated organic pollutant reactivity. In this study, the rate constants (logk) of four halogen...
3.
Ma C, Li H, Huangfu X, Huang R, Ma J
J Hazard Mater
. 2024 Mar;
469:134081.
PMID: 38522205
Despite the occurrence of thallium (Tl) in the acidic mining-affected areas being highly positively correlated with iron (Fe) and arsenic (As), the effects of the two accompanying elements on Tl...
4.
Long X, Huangfu X, Huang R, Liang Y, Wu S, Wang J
Chemosphere
. 2024 Mar;
354:141584.
PMID: 38460852
Carbonaceous materials are commonly used as adsorbents for heavy metals. The determination of the adsorption capacity needs time and energy, and the key factors affecting the adsorption capacity have not...
5.
Wang J, Huang R, Liang Y, Long X, Wu S, Han Z, et al.
J Hazard Mater
. 2024 Jan;
466:133563.
PMID: 38262323
Although the sorption of antibiotics in soil has been extensively studied, their spatial distribution patterns and sorption mechanisms still need to be clarified, which hinders the assessment of antibiotic resistance...
6.
Huang R, Ma C, Huangfu X, Ma J
Environ Sci Technol
. 2023 Sep;
57(37):13767-13777.
PMID: 37660353
The epidemic of coronaviruses has posed significant public health concerns in the last two decades. An effective disinfection scheme is critical to preventing ambient virus infections and controlling the spread...
7.
Ma C, Huang R, Huangfu X, Ma J
Environ Sci Technol
. 2023 May;
57(19):7466-7477.
PMID: 37134314
Thallium (Tl) redox state determines its speciation and fate in aqueous environments. Despite the high potential of natural organic matter (NOM) providing the reactive groups to complex and reduce Tl(III),...
8.
Ma C, Huang R, Huangfu X, Ma J, He Q
Environ Sci Technol
. 2022 Apr;
56(9):5530-5541.
PMID: 35435677
The redox transformation between the oxidation states of thallium (Tl(I) and Tl(III)) is the key to influencing its toxicity, reactivity, and mobility. Dissolved iron (Fe) is widely distributed in the...
9.
Ma C, Huangfu X, Zou Y, Huang R, He Q, Ma J
Chemosphere
. 2022 Jan;
293:133652.
PMID: 35051517
The oxidation of thallium(I) (Tl (I)) to Tl (III) is referred to as an efficient means for Tl removal. Bromide (Br‾) inevitably occurs in nearly all water sources at concentrations...
10.
Ma C, Cheng H, Huang R, Zou Y, He Q, Huangfu X, et al.
Environ Sci Technol
. 2021 Nov;
56(2):1017-1027.
PMID: 34807594
The oxidation of thallium [Tl(I)] to Tl(III) by chlorine (HOCl) is an important process changing its removal performance in water treatment. However, the role of bromide (Br), a common constituent...