Sustainable valorization of marine plastic residues via hydrothermal liquefaction for clean energy recovery. [PDF]
Vaishnavi M, Raja S, Rusho MA, Zema TB.
europepmc +1 more source
An In Situ Evaluation of Different CAM Plants as Plant Microbial Fuel Cells for Energy Recovery in the Atacama Desert. [PDF]
Madrid FMG +11 more
europepmc +1 more source
Mono‐Material Polydisulfides for Pressure Sensitive Adhesive Tapes With Closed‐Loop Recyclability
A high‐performance pressure‐sensitive adhesive (PSA) tape is developed where both the adhesive layer and plastic backing layer can be recycled back to monomer in a closed‐loop cycle. Both layers of the tape are composed of analogous polydisulfide copolymers using only two unique monomers, thus giving it a mono‐material design and enabling recycling of ...
Woojung Ham +3 more
wiley +1 more source
Comparative analysis of energy recovery and digestate quality from anaerobic co-digestion of fruit and vegetable wastes under ambient and mesophilic conditions. [PDF]
Kabenge I +7 more
europepmc +1 more source
Exploring the potential of clay catalysts in catalytic pyrolysis of mixed plastic waste for fuel and energy recovery. [PDF]
Cai W +5 more
europepmc +1 more source
A scalable, solution‐processed WSe2/ZrO2‐x van der Waals heterostructure realizes a light‐induced field‐tunneling synapse (LIFTS) that activates exclusively under bright illumination, emulating the photopic adaptation of the human retina at the device level.
Kijeong Nam +10 more
wiley +1 more source
PSO-optimized electronic load controller with intelligent energy recovery for self-excited induction generator based micro-hydro systems. [PDF]
Sinha S, Rajak MK, Pudur R.
europepmc +1 more source
In situ real-time dataset as compared to the predicted thermal wheel performance of an energy recovery system. [PDF]
Tsai HY, Wu CT.
europepmc +1 more source
Polarity‐matched Zr–MOFs program Nafion's nanoscale morphology during solution casting. Hydrophilic UiO‐66 preserves hydrated pathways, while hydrophobic UiO‐67 increases the proton hopping sites by densifying ionic clusters. Combining both fillers yields a membrane that delivers 176 mS cm−1 conductivity, reaches 1.46 W cm−2 under 200 kPa, and triples ...
Yonghwi Cho +13 more
wiley +1 more source

