0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R2,500 - R5,000 (2)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

BioH2 & BioCH4 Through Anaerobic Digestion - From Research to Full-scale Applications (Hardcover, 2015 ed.): Bernardo RUGGERI,... BioH2 & BioCH4 Through Anaerobic Digestion - From Research to Full-scale Applications (Hardcover, 2015 ed.)
Bernardo RUGGERI, Tonia Tommasi, Sara Sanfilippo
R3,868 R3,337 Discovery Miles 33 370 Save R531 (14%) Ships in 10 - 15 working days

This book presents a Two-Stage Anaerobic Digestion (TSAD) technique for producing hydrogen and methane, following a step-by-step approach in order to guide readers through the experimental verification of the related hypothesis. In the first stage of AD, the reaction conditions are optimized to obtain the maximum amount of hydrogen, while in the second the liquid residue from the first phase is used as a substrate to produce fuel-methane. AD has traditionally been used to reduce the organic content of waste; this results in a biogas that is primarily constituted of CH4 and CO2. Over the last few decades, the conversion of organic matter into hydrogen by means of AD and selecting Hydrogen Producing Bacteria (HPB) has matured into a viable and sustainable technology among the pallet of H2 generation technologies. The combined bio-production of hydrogen and methane from Organic Waste Materials (OWM) is considered to be an ideal way of utilizing waste, and can increase energy efficiency (the substrate Heat Value converted into H2 and CH4 fuel) to roughly 80%, since the energy efficiency of H2-production alone (15%) is not energetically competitive. The two gas streams can be used either separately or in combination (Hytane (R)), be supplied as civilian gas or used for transportation purposes. All the aspects of this sustainable technology are taken into account, from the basic biochemical implications to engineering aspects, establishing the design criteria and the scale-up procedures for full-scale application. The sustainability of the TSAD method is assessed by applying EROI (Energy Return On Investment) and EPT (Energy Payback Time) criteria, and both the general approach and application to the field of Anaerobic Digestion are illustrated.

BioH2 & BioCH4 Through Anaerobic Digestion - From Research to Full-scale Applications (Paperback, Softcover reprint of the... BioH2 & BioCH4 Through Anaerobic Digestion - From Research to Full-scale Applications (Paperback, Softcover reprint of the original 1st ed. 2015)
Bernardo RUGGERI, Tonia Tommasi, Sara Sanfilippo
R3,240 Discovery Miles 32 400 Ships in 18 - 22 working days

This book presents a Two-Stage Anaerobic Digestion (TSAD) technique for producing hydrogen and methane, following a step-by-step approach in order to guide readers through the experimental verification of the related hypothesis. In the first stage of AD, the reaction conditions are optimized to obtain the maximum amount of hydrogen, while in the second the liquid residue from the first phase is used as a substrate to produce fuel-methane. AD has traditionally been used to reduce the organic content of waste; this results in a biogas that is primarily constituted of CH4 and CO2. Over the last few decades, the conversion of organic matter into hydrogen by means of AD and selecting Hydrogen Producing Bacteria (HPB) has matured into a viable and sustainable technology among the pallet of H2 generation technologies. The combined bio-production of hydrogen and methane from Organic Waste Materials (OWM) is considered to be an ideal way of utilizing waste, and can increase energy efficiency (the substrate Heat Value converted into H2 and CH4 fuel) to roughly 80%, since the energy efficiency of H2-production alone (15%) is not energetically competitive. The two gas streams can be used either separately or in combination (Hytane®), be supplied as civilian gas or used for transportation purposes. All the aspects of this sustainable technology are taken into account, from the basic biochemical implications to engineering aspects, establishing the design criteria and the scale-up procedures for full-scale application. The sustainability of the TSAD method is assessed by applying EROI (Energy Return On Investment) and EPT (Energy Payback Time) criteria, and both the general approach and application to the field of Anaerobic Digestion are illustrated.  

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Heat - 2-Disc Director's Definitive…
Al Pacino, Robert De Niro, … Blu-ray disc  (2)
R309 Discovery Miles 3 090
Casio LW-200-7AV Watch with 10-Year…
R999 R899 Discovery Miles 8 990
Tesa General Purpose Masking Tape (50m x…
R79 Discovery Miles 790
Harry Potter Wizard Wand - In…
 (3)
R815 R745 Discovery Miles 7 450
Loot
Nadine Gordimer Paperback  (2)
R367 R340 Discovery Miles 3 400
Being There - Backstories From The…
Tony Leon Paperback R350 R312 Discovery Miles 3 120
Catan
 (16)
R1,347 Discovery Miles 13 470
Volkano Phonic Series Over-Ear…
 (2)
R398 Discovery Miles 3 980
Skyworth 24STF6800 24" LED FHD Google TV…
R4,999 R3,974 Discovery Miles 39 740
Lifespace Quality Silicone Black Pot…
R139 R59 Discovery Miles 590

 

Partners