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1. |
Record Nr. |
UNINA9910456708403321 |
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Autore |
Killcross Martin |
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Titolo |
Chemical and process plant commissioning handbook [[electronic resource] ] : a practical guide to plant system and equipment installation and commissioning / / Martin Killcross |
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Pubbl/distr/stampa |
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London, : Butterworth-Heinemann/Elsevier, 2012 |
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ISBN |
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1-283-27281-4 |
9786613272812 |
0-08-097175-X |
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Edizione |
[1st ed.] |
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Descrizione fisica |
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1 online resource (313 p.) |
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Disciplina |
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Soggetti |
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Chemical plants - Management |
Chemical plants - Equipment and supplies |
Electronic books. |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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Front Cover; Chemical and Process Plant Commissioning Handbook: A Practical Guide to Plant System and Equipment Installation and Commissioning; Copyright; Contents; Acknowledgment; Introduction; What is Commissioning?; Safety and Environmental Considerations; A Simplified Commissioning Logic; Intent and Use of the Handbook; The Commissioning Approach; Chapter 1 - Commissioning Phase One - Prepare; Appointing the Commissioning Manager; Commissioning Scope and Contracts; Contracts; Budget Estimation; Prioritized Asset Systemization; Support Design |
Develop an Initial Commissioning Plan or PhilosophyAppointment, Composition of the Commissioning Team, Roles, Responsibilities and Organization Chart; Documentation and Sign-Off Requirements, the Library and Electronic Filing; Devise Assignment Details, Site and Office Requirements, Consumables and Procure Commissioning Chemicals; Create Commissioning Documents and the System File; Control, Instrument, Electrical Commissioning Document Preparation; |
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Mechanical Commissioning Document Preparation; Develop Training Materials; Develop Standard Operating Procedures (SOPs) |
Develop Commissioning ScheduleDevise Handover Procedure; Devise Commissioning Tagging System; Chapter 2 - Commissioning Phase Two - Implement; Factory Acceptance Testing; Check Construction and Quality of Build; Tracking Progress and System Status; Cleaning Procedures and Drying; Pre-Commissioning Procedures; Vessel Check Sheets; Instrument Loop, Electrical and Control System Testing; Commissioning Punchlisting; Handover from Construction to Commissioning; Introduction of Safe Chemicals; Pre-Commissioning HAZOP Studies or Pre-Start-Up Safety; Commissioning Leak Testing |
Commissioning and Initial Start-Up Plus ProceduresHandover to Operations; Chapter 3 - Commissioning Phase Three - Close-Out; Close Out Reservations; Complete Commissioning Documentation; Complete Training and Update Documents to "As Commissioned"; Update Operating Procedures to "As Commissioned"; Assist Continued Operation, Troubleshooting and/or De-bottlenecking Projects; Close Down the Commissioning Team; Complete Close-Out Hazard Study; Chapter 4 - The Commissioning System File, a Full Catalogue of Blank Commissioning Documents; Commissioning System File; Commissioning System File System |
1 System P&IDs2 Decontamination Procedure and Isolation Register; 3 System Cleaning Checklist and Procedures; 4 Hazard Study Actions; 5 Equipment Check Sheets, Off- and On-Site Checks; 6 System Punchlists; 7 Action Upon Alarm Sheet; 8 Handover Certificate Construction to Commissioning; 9 Project Documentation Check Sheet Prior to Introduction of Safe Chemicals; 10 Safe Chemical Commissioning Authorization and Pre-Commissioning Procedures; 11 Leak Test Check List and Procedure; 12 Instrument Check Sheet; 13 Motor Check Sheet; 14 Interlock Check Sheet; 15 Emergency Shut-Down Check Sheet |
16 DCS Sequence Test Procedure |
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Sommario/riassunto |
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The Chemical and Process Plant Commissioning Handbook, winner of the 2012 Basil Brennan Medal from the Institution of Chemical Engineers, is a guide to converting a newly constructed plant or equipment into a fully integrated and operational process unit. Good commissioning is based on a disciplined, systematic and proven methodology and approach that achieve results in the safest, most efficient, cost effective and timely manner. The book is supported by detailed, proven and effective commission templates, plus extensive commissioning scenarios that enable the reader to lear |
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2. |
Record Nr. |
UNINA9910145274003321 |
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Titolo |
Light and plant development [[electronic resource] /] / edited by Garry C. Whitelam and Karen J. Halliday |
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Pubbl/distr/stampa |
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Oxford ; ; Ames, Iowa, : Blackwell Pub., 2007 |
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ISBN |
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1-281-32031-5 |
9786611320317 |
0-470-98889-4 |
0-470-99429-0 |
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Descrizione fisica |
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1 online resource (350 p.) |
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Collana |
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Annual plant reviews ; ; v. 30 |
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Classificazione |
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Altri autori (Persone) |
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WhitelamGarry C |
HallidayKaren J |
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Disciplina |
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Soggetti |
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Phytochrome |
Plants - Photomorphogenesis |
Plants - Development |
Electronic books. |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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Light and Plant Development; Contents; Contributors; Preface; Part I Photoreceptors; 1 Phytochromes; 1.1 Introduction; 1.2 Historical aspects; 1.3 Properties of phyA in vivo; 1.4 Properties in yeast cells; 1.5 In vivo properties of phytochromes; 1.5.1 In vivo spectroscopy; 1.6 Intracellular localisation of phytochromes; 1.6.1 Classical methods; 1.6.2 Spectroscopic methods; 1.6.3 Cell biological methods; 1.6.4 Immunocytochemical methods; 1.6.5 Novel methods; 1.7 Intracellular localisation of phyB in dark and light; 1.8 Intracellular localisation of phyA in dark and light |
1.9 Intracellular localisation of phyC, phyD and phyE in dark and light1.10 Phytochrome/PIF3 co-localisation and nuclear speckles; 1.11 Regulation of intracellular localisation of phytochromes; Acknowledgements; References; 2 Cryptochromes; 2.1 Introduction; 2.2 Cryptochrome genes and their evolution; 2.3 Cryptochrome |
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domains, chromophores and structure; 2.3.1 Domain structure of the cryptochromes; 2.3.2 Cryptochrome chromophores; 2.3.3 Photolyase and cryptochrome structure; 2.3.3.1 Photolyase structure and reaction mechanism; 2.3.3.2 Cryptochrome structure |
2.4 Cryptochrome biochemistry and spectroscopy2.4.1 Phosphorylation; 2.4.2 Nucleotide-binding and kinase activity; 2.4.3 DNA-binding activity; 2.4.4 Electron transfer; 2.5 Expression and biological activity of cryptochromes; 2.5.1 Expression and light regulation of cryptochromes in planta; 2.5.2 Cellular localization; 2.5.3 Growth responses controlled by cryptochromes; 2.5.4 Regulation of gene expression through cryptochromes; 2.6 Cryptochrome signalling; 2.6.1 Dimerization and output domains; 2.6.2 Cryptochrome partners; 2.6.2.1 Interaction with COP1 |
2.6.2.2 Interaction with zeitlupe/ADAGIO12.6.2.3 Interaction with phytochromes; 2.6.3 Further downstream components; 2.7 Summary; Acknowledgements; References; 3 Phototropins and other LOV-containing proteins; 3.1 Introduction; 3.2 Phototropins and their biological functions; 3.2.1 Physiological roles in higher plants; 3.2.2 Physiological roles in lower plants; 3.3 Phototropin structure, localization and activity; 3.3.1 Phototropin structure and localization; 3.3.2 Phototropin autophosphorylation; 3.4 Light sensing by the LOV domains; 3.4.1 LOV-domain photochemistry |
3.4.2 LOV-domain structure3.4.3 Functional roles of LOV1 and LOV2; 3.4.4 Light-induced protein movements; 3.5 Phototropin signaling; 3.5.1 Phototropin-interacting proteins; 3.5.2 Downstream signaling targets; 3.6 Other LOV-containing proteins; 3.6.1 LOV-containing proteins in Arabidopsis; 3.6.2 LOV-containing proteins in fungi; 3.6.3 LOV-containing proteins in bacteria; 3.7 Conclusions and future perspectives; Acknowledgements; References; Part II Photoreceptor signal transduction; 4 Phytochrome-interacting factors; 4.1 Introduction; 4.2 Methodology; 4.2.1 Initial identification of PIFs |
4.2.2 Subsequent assay and characterization of the interaction |
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Sommario/riassunto |
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Living organisms are subject to fluctuating environmental conditions. Whereas most animals are able to move away from unfavourable conditions, plants are sessile and so must cope with whatever comes their way. Of all the environmental cues that challenge the developing plant, light can probably be considered to be the most important. In addition to its key role in plant metabolism, and hence almost all life on Earth, where it drives the process of photosynthesis, light energy also acts to regulate plant growth and development. Light quantity, quality, direction and diurnal and seasonal duratio |
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