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Adsorption:Article Title: A facile approach to lignin-based biochar derived from black liquor and the study of its removal to tetracycline from water. Article Snippet: The present study focuses on preparing lignin-biochar (L-Bio) from papermaking black liquor-lignin and the study its effectiveness and mechanism in removing tetracycline (TC) from water.. Results showed that the yield, BET surface area and pore size of L-Bio were 36.3707–40.2567 %, 392.2232–625.3296 m2•g− 1 and 2.244–1261.915 μm, respectively.. Adsorption experiment results showed that Bio-800 C has the maximum adsorption capacity of 243.9067 mg•g 1 and it has the best removal effect on TC under neutral conditions. Article Title: Elucidating the Effect of the Catalyst Layer Morphology on the Growth and Detachment of Bubbles in Water Electrolysis via Lattice Boltzmann Modeling. Article Snippet: Get e-Alerts ENERGY, ENVIRONMENTAL, AND CATALYSIS APPLICATIONS | March 3, 2025 Elucidating the Effect of the Catalyst Layer Morphology on the Growth and Detachment of Bubbles in Water Electrolysis via Lattice Boltzmann Modeling , , , , , and ACS Applied Materials & Interfaces Cite this: ACS Appl.. Mater.. Interfaces 2025, 17, 10, 15499–15509 https://doi.org/10.1021/acsami.4c22527 Copyright © 2025 American Chemical Society Request reuse permissions Cite Share Jump to Yansong Luo Lin Wang Qisi Chen Zipeng Wang Menglian Zheng* Yang Hou* Open PDF Supporting Information (1) Article Views 300 Altmetric Citations 2 Learn about these metrics Published March 3, 2025 5/29/25, 6:58 PM Elucidating the Effect of the Catalyst Layer Morphology on the Growth and Detachment of Bubbles in Water Electrolysis via Lattice Boltz... https://pubs.acs.org/doi/10.1021/acsami.4c22527 2/31 The performance of water electrolysis is profoundly in uenced by the behavior of the gas bubbles generated at the electrode surface. other:Article Title: Cr(VI) removal during cotransport of nano-iron-particles combined with iron sulfides in groundwater: Effects of D. vulgaris and S. putrefaciens. Article Snippet: • Heteroggregates of nZVI@GT with FeS2 rather than FeS inhibited Cr(VI) Article Title: Preparation of novel PVA-SA/CS-SH aerogel beads and their efficient adsorption of U(VI) Article Snippet: Chitosan (CS) and sodium alginate (SA) were used as the base materials.. A Schiff base reaction was successfully conducted between the amino groups in chitosan and benzaldehyde to synthesize benzaldehyde-chitosan (B-CS) with protected amino groups.. Subsequently, B-CS was modified with (3-mercaptopropyl)trimethoxysilane to introduce thiol functional groups and remove benzaldehyde, resulting in thiol-functionalized chitosan (CS-SH). Article Title: Calcium-decorated biochar modified with phosphorus from wastewater to promote U(VI) removal: Adsorption behavior and mechanism Article Snippet: In this study, waste shrimp shell and phosphorous-containing wastewater were used to synthesize calciumdecorated biochar modified with phosphorus (Ca-BC-P) and utilized to remove uranium from aqueous solutions.. The results from static adsorption experiment demonstrated that Ca-BC-P exhibited good U(VI) adsorption performance in acidic environments, with a maximum theoretical adsorption capacity of 1074.29 mg g 1.. The adsorption behavior perfectly fit Langmuir isotherm and the pseudo-second-order kinetic models, which revealed the nature of monolayer chemical adsorption by Ca-BC-P. Thermodynamic analysis showed that this process was spontaneous and endothermic. Article Title: Investigation of Co3O4 modified carbon black as an efficient non-noble metal oxygen reduction catalyst in self-driven phosphorus recovery systems Article Snippet: Phosphorus and nitrogen recovery from urine in the form of struvite via a Mg-air fuel cell (MAFC) platform has previously been reported as a promising approach to achieving sustainable development goals.. However, the applicability of this technology has been hindered by the expensive cathodic catalyst, i.e., Pt/C.. In this study, an efficient and cost-effective non-precious metal catalyst, the Co3O4 doped carbon black (CB-ZIF-900), was developed to maximize nitrogen and phosphate recovery from urine while reducing investment costs. Article Title: Utilizing cost-effective biochar for highly efficient U(VI) removal from uranium-containing wastewater Article Snippet: Residual sludge (RS) from a wastewater treatment plant was used to prepare sludge-based biochar (RS-BC) by pyrolysis to treat U(VI)-containing wastewater.. The findings revealed that RS-BC had exceptional adsorption performance, with a theoretical maximum adsorption capacity for U(VI) of 455.69 mg g−1.. The pseudo-second-order and Langmuir isotherm adsorption models effectively fit the adsorption process, and the thermodynamic parameters confirmed that the adsorption process was endothermic and spontaneous. |