Integrated Aspen HYSYS–machine learning framework for predicting product yields and quality variables. Abstract Crude oil refining is a complex process requiring precise modelling to optimize yield, quality, and efficiency. This study integrates Aspen HYSYS® simulations with machine learning techniques to develop predictive models for key refinery ...
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wiley +1 more source
A novel solid-state approach for enhancing the antimicrobial and colorimetric properties of pine sawdust using selenium nanoparticles. [PDF]
Zaghloul N, El-Twab MA, Sayed-Ahmed K.
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A Natural Lignification Inspired Super-Hard Wood-Based Composites with Extreme Resilience. [PDF]
Huang Y +11 more
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Flame-Retardant Wood Scrimber/Plywood Composites: Preparation, Characterization, and Enhanced Structural Performance. [PDF]
Yao L +7 more
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Silicified Wood with Dual Fire Retardancy and Thermal Management Functionalities. [PDF]
Tu K, Liu J, Li J, Li S, Zhang X, Li S.
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Repellent and Insecticidal Efficacy of Four Water-Soluble Formulations of Essential Oils Against <i>Aedes aegypti</i>. [PDF]
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Estimating Costs for Controlling Emissions of Volatile Organic Compounds (VOC) from Stationary Sources in Europe. [PDF]
J. Cofala, M. Amann, Z. Klimont
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Boron impregnation treatment of Eucalyptus grandis wood
Bioresource Technology, 2007Eucalyptus grandis is suitable for small timber purposes, but its wood is reported to be non-durable and difficult to treat. Boron compounds being diffusible, and the vacuum-pressure impregnation (VPI) method being more suitable for industrial-scale treatment, the possibility of boron impregnation of partially dry to green timber was investigated using
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