GRACE 发表于 2025-3-23 13:28:19
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An Overview of Dust Deposition Effect on Photovoltaic Performance in the Built Environment,ects of climate change under the Paris Agreement and the global commitment to the sustainable development goals (SDGs) established by the United Nations General Assembly. The vulnerability of PV systems is that they are weather-dependent, which means that extreme climatic conditions would significan世俗 发表于 2025-3-23 20:38:55
Development of Efficient, Sustainable, and Eco-Friendly ZnO-Based Thermoelectric Materials for Waste Heat Conversion,e materials possess the unique ability to convert temperature differences into electricity using the Seebeck effect. Herein, we investigate the effect of 0.1%, 0.2%, and 0.3% cobalt (Co) doping on the structural, optical, and thermoelectric properties of zinc oxide (ZnO) nanoparticles produced via tIschemia 发表于 2025-3-24 00:21:51
Addressing the Water Crisis in Tunisia: Comparative Analysis of Sustainable Solutions,te change. The availability of freshwater resources has become increasingly insufficient to meet the country‘s demand, prompting the need for sustainable solutions. This study evaluates several potential solutions such as desalination, inter-basin water transfer, rainwater harvesting among others toResign 发表于 2025-3-24 06:09:32
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Innovative Design of Thermal Insulating Green Rendering Mortar for Energy Efficient Buildings,s to develop an eco-friendly lightweight (LW) thermally resistive one-coat rendering mortar. Limestone-calcined clay cement (LC3) green binder was prepared by replacing over 50 wt% of the white Portland cement (WPC) with supplementary materials, including limestone and calcined clay. The binder has船员 发表于 2025-3-24 10:50:00
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Optimizing High Calcium Oxide Calcined Clay as Cement Replacement in Mortar Through XRD Analysis and Compressive Strength Development,e the potential use of high calcium oxide clay as a substituting portion for ordinary Portland cement (OPC). The clay was locally sourced and thermally treated at 530 ℃, 610 ℃, 670 ℃, and 750 ℃ with a fixed duration of 2.5 h and utilized in all mortar mixes as a 10% replacement of cement. The raw an