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Titlebook: Energy Recovery Processes from Wastes; Sadhan Kumar Ghosh Book 2020 Springer Nature Singapore Pte Ltd. 2020 Energy Recovery Processes.Soli

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https://doi.org/10.1007/978-3-642-57363-7 fuel oil, non-condensable gases as fuel gas and residue char as the carbon source. The pyrolysis process produces oil yield between 50 and 60% with a char yield of 32–38%, and the remaining were gases. The oil had a high calorific value of 34.743 kJ/Kg, whereas the evolved gas contains a heating va
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Huibert Vries,Henk Vries,Ilan Oshrid science of methane production through CO. reduction via hydrogenotrophic methanogens, high turnover rates, and significance of these microbes in biogas stabilization suggests the potential of this route in GTF production. This paper describes a biofilm-based reactor as a potential reactor design f
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Innovation and Standardization Stakeholders, of antioxidant leads to the deterioration of hydrophilic and hydrophobic clusters formation which is characterized by the FTIR spectrum data. From the investigation, it is came to a conclusion that by dosing 950 ppm of PY antioxidant the Alexandrian laurel biodiesel could be accumulated over a long
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Therapie der chronischen Herzinsuffizienz blends to run diesel machines. This action can reduce huge foreign exchange load on government, and helps in reducing harmful emissions. In the present study, . methyl ester with an oxygenative additive DEE is added with diesel. Further, with the help of artificial intelligence an attempt is made t
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https://doi.org/10.1007/978-3-7091-0979-3aracterized by elemental analyser (CHN analyser), GC-MS, SEM and FTIR. From the study it was observed that pyrolysis temperature had significantly affected the yield of pyrolysis products. Biochar yield decreased while volatile gas yield increased with increase in temperature. The bio-oil yield was
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