Featured books and eBooks
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Hydrometallurgical Recycling of Lithium-Ion Battery Materials
Offering indispensable insight from experts in the field, Fundamentals of Natural Gas Processing, Third Edition provides an introduction to the gas industry and the processes required to convert wellhead gas into valuable natural gas and hydrocarbon liquids products including LNG.
The Digital Transformation of Product Formulation
In competitive manufacturing industries, organizations embrace product development as a continuous investment strategy since both market share and profit margin stand to benefit. Formulating new or improved products has traditionally involved lengthy and expensive experimentation in laboratory or pilot plant settings.
Hydrometallurgical Recycling of Lithium-Ion Battery Materials
The expanding market share of lithium-ion batteries (LIBs), driven by the secondary battery and electric vehicle markets, has consequently led to the accumulation of spent LIBs. This presents a unique business opportunity for recovering and recycling valuable metals from the spent lithium-ion cathode materials.
Classical and Molecular Thermodynamics of Fluid Systems
This text explores the connections between different thermodynamic subjects related to fluid systems. In an innovative way, it covers the subject from first principles to the state of the art in fundamental and applied topics. Using simple nomenclature and algebra, it clarifies concepts by returning to the conceptual foundation of thermodynamics.
Efficiency and Sustainability in the Energy and Chemical Industries
Using classic thermodynamic principles as the point of departure, this new edition of popular resource supplies the understanding and tools required to measure process efficiency and sustainability with much-improved accuracy.
Advanced Materials for Pharmaceutical Wastewater Treatment
Effluents generated from the pharmaceutical industry contain organic and inorganic contaminants that create potential threats to human health and the environment. Pharmaceuticals cannot be effectively removed by conventional wastewater treatment plants owing to the complex composition, high concentration of organic contaminants, high salinity, and biological toxicity of pharmaceutical wastewater.