Zhangxin Wang (@wang_zhangxin) 's Twitter Profile
Zhangxin Wang

@wang_zhangxin

Professor @Guangdong University of Technology // Previous postdoc @TheElimelechLab

ID: 1166340067029409792

linkhttps://scholar.google.com/citations?user=hf6ytiwAAAAJ&hl=en calendar_today27-08-2019 13:22:03

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Shihong Lin (@shihong_lin) 's Twitter Profile Photo

Happy to share our recent perspective challenging the practical viability of salinity gradient energy(SGE) and its related processes (e.g. energy storage). The low energy density, a key limitation of SGE, makes desalination viable. Zhangxin Wang WangL-env Menachem Elimelech

Nature Reviews Methods Primers (@methodsprimers) 's Twitter Profile Photo

Discover the transformative power of pressure-driven membrane desalination in our latest Primer. This technology is vital for providing clean drinking water, combating water scarcity and ensuring a sustainable future💧 @EnvWang Razi Epsztein Zhangxin Wang go.nature.com/3wiVlSv

Discover the transformative power of pressure-driven membrane desalination in our latest Primer. This technology is vital for providing clean drinking water, combating water scarcity and ensuring a sustainable future💧 @EnvWang <a href="/EpszteinLab/">Razi Epsztein</a> <a href="/wang_zhangxin/">Zhangxin Wang</a>
go.nature.com/3wiVlSv
Environmental Science & Technology Journals (@envscitech) 's Twitter Profile Photo

In this ACS ES&T Engineering article, Zhangxin Wang and his team unveil the interplay between membrane wetting resistance and the #CO2absorption rate for different GLMC membranes and elucidate the underlying mechanisms. Read more here 👉 pubs.acs.org/doi/10.1021/ac…

In this ACS ES&amp;T Engineering article, <a href="/wang_zhangxin/">Zhangxin Wang</a> and his team unveil the interplay between membrane wetting resistance and the #CO2absorption rate for different GLMC membranes and elucidate the underlying mechanisms.

Read more here 👉 pubs.acs.org/doi/10.1021/ac…
Zhangxin Wang (@wang_zhangxin) 's Twitter Profile Photo

Our recent work in ES&T Engineering (Environmental Science & Technology Journals) not only proposes a simple yet effective wetting mitigation strategy for the applications of hydrophobic membranes, but also presents a new and reliable liquid entry pressure measurment method. doi.org/10.1021/acsest…

Our recent work in ES&amp;T Engineering (<a href="/EnvSciTech/">Environmental Science & Technology Journals</a>) not only proposes a simple yet effective wetting mitigation strategy for the applications of hydrophobic membranes, but also presents a new and reliable liquid entry pressure measurment method.
doi.org/10.1021/acsest…