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您現(xiàn)在的位置是:首頁SCI期刊PROCESS SAFETY AND ENVIRONMENTAL PROTECTION(工藝安全和環(huán)境保護)
PROCESS SAFETY AND ENVIRONMENTAL PROTECTION

PROCESS SAFETY AND ENVIRONMENTAL PROTECTION SCIE

工藝安全和環(huán)境保護

0957-5820

環(huán)境科學與生態(tài)學

Bimonthly

No

PROCESS SAF ENVIRON

0

303

ENGLAND

http://www.sciencedirect.com/science/journal/09575820

約8.0個月審稿時間

66%平均錄用比例

4.384影響因子

工程:化工小學科

SCI三劍客

中文簡介

歐洲化學工程聯(lián)合會官方刊物:B部分PSEP的目標是成為主要的國際期刊,在工業(yè)過程安全和環(huán)境保護相關(guān)的工程部門發(fā)表高質(zhì)量的原創(chuàng)論文。特別鼓勵處理安全或環(huán)境方面的新發(fā)展、證明研究結(jié)果如何用于工藝工程設(shè)計和實踐的論文。還將考慮實驗或理論研究工作,為既定原則帶來新的視角,突出未解決的問題或指明未來研究的方向。該雜志尤其對擴展傳統(tǒng)工程領(lǐng)域以及多學科論文的貢獻感興趣。與環(huán)境保護有關(guān)的文件必須采取綜合污染控制方法,清楚地表明任何擬議的處理方法都不只是將污染從一種環(huán)境介質(zhì)轉(zhuǎn)移到另一種環(huán)境介質(zhì),例如從空氣轉(zhuǎn)移到水,或從水轉(zhuǎn)移到固體廢物。所有這些文件必須討論如何安全地處理或處置任何處理廢水、廢吸附劑等,避免污染轉(zhuǎn)移到其他環(huán)境介質(zhì)。對于環(huán)境保護,超出范圍的文件是那些缺乏工程方面的文件,包括那些:主要使用實驗技術(shù)來制備和/或表征各種材料,而不考慮工藝工程設(shè)計和實踐;主要在實驗室進行不同參數(shù)對材料和污染物行為(如pH、溫度、吸附劑質(zhì)量等)影響的實驗,而無需進一步了解對工程設(shè)計和實踐的影響;主要關(guān)注吸附模型和曲線擬合(如Freundlich、Langmuir等);以及僅包含化學、物理和/或熱力學分析。核心主題領(lǐng)域:?風險評估與可靠性工程?風險評估、風險管理、后果分析和不確定性量化。?供應鏈風險管理。?網(wǎng)絡和物理安全脆弱性評估。?氫基技術(shù)風險評估。?人類可靠性分析(HRA)和人機界面(HMI)。?集成系統(tǒng)和高溫電力電子設(shè)備的可靠性預測。?完整性管理和可靠性、可用性和可維護性(RAM)。技術(shù)安全和損失預防?火災和氣體檢測。?消防水系統(tǒng)。?功能安全和安全完整性等級(SIL)?保護層分析(LOPA)?領(lǐng)結(jié)分析。?應急響應?HAZOP和其他危險/風險識別技術(shù)。建模?模擬液體、氣體和兩相釋放和分散。?后果建模,包括:火災、爆炸、毒性、生態(tài)毒性效應和射彈影響。?方法,包括計算流體動力學(CFD)。?事故調(diào)查和建模?;瘜W毒性和暴露評估?有毒物質(zhì)釋放和暴露評估。?加工廠健康問題。工藝管道、儲存和安全?處理管道安全和恐怖主義。?管道泄漏檢測、測量和腐蝕評估。?碳捕獲和儲存(CCS)和二氧化碳運輸?;馂暮捅?火災、燃燒和爆炸現(xiàn)象。?粉塵爆炸。?防火防爆和生存能力。設(shè)計和管理中的人為因素?HSE績效測量,包括領(lǐng)先和落后指標。?安全案例中的人和組織因素。?通過設(shè)計優(yōu)化人的性能。?模擬作戰(zhàn)(同時作戰(zhàn))。?態(tài)勢感知。?通信和風險控制系統(tǒng)。?彈性工程。?技術(shù)保證和勞動力培訓。固有安全和固有安全設(shè)計?危險識別?新工藝和設(shè)備的設(shè)計和開發(fā)。?對固有安全進行排序的方法。?改造本質(zhì)上更安全的解決方案,升級現(xiàn)有工廠以提高安全性。核安全?廢物處理。?退役設(shè)計。?被動安全反應堆設(shè)計。?核反應堆保護和監(jiān)測系統(tǒng)。反應危險?化學熱穩(wěn)定性和熱反應危險。?雜質(zhì)對反應危害的影響。?開發(fā)反應性危險指數(shù)排序工具。?失控反應,包括檢測和緩解。?化學過程中涉及的化學品的相容性/反應性。工業(yè)危害和安全案例?重大事故危害?ALARP和成本效益分析。?工業(yè)安全案例。事件調(diào)查和案例記錄?事件和經(jīng)驗教訓的案例歷史,整合到設(shè)計和運營中。?事故技術(shù)分析。?模擬實際事件的計算建模?在培訓和提高安全績效中使用事故?事故調(diào)查方法?事件數(shù)據(jù)庫及其應用程序。大氣污染防治?防治空氣污染的方法和技術(shù)?空氣擴散建模?空氣污染事件的預測和緩解?空氣污染對健康的影響資源和廢物管理?回收和回收材料和產(chǎn)品?來自廢物和替代資源的能源?廢物最小化?廢物處理技術(shù)?廢物管理:能源和材料回收和廢物處理的系統(tǒng)和流程;處置?垃圾填埋場和廢物儲存庫設(shè)計、運行和管理?土地整治和恢復水污染防治?工業(yè)、純水和超純水生產(chǎn)?城市和工業(yè)廢水處理?飲用水處理?污泥處理、能量回收和處置?緩解水污染事件?水污染擴散模型?水污染對健康的影響

http://ees.elsevier.com/psep/default.asp?acw=1b

英文簡介

Official Journal of the European Federation of Chemical Engineering: Part BPSEP aims to be the principal international journal for publication of high quality, original papers in the branches of engineering concerned with the safety of industrial processes and the protection of the environment.Papers that deal with new developments in safety or environmental aspects, demonstrating how research results can be used in process engineering design and practice, are particularly encouraged. Experimental or theoretical research work bringing new perspectives to established principles, highlighting unsolved problems or indicating directions for future research will also be considered. The journal is especially interested in contributions that extend the boundaries of traditional engineering as well as in multidisciplinary papers.Papers related to environmental protection must take an integrated pollution control approach, demonstrating clearly that any proposed treatment method does not simply transfer pollution from one environmental medium to another, for example, from air to water or from water to solid waste. All such papers must discuss how any treatment effluents, spent adsorbents, etc., can be treated or disposed of safely, avoiding transfer of pollution to another environmental medium.For environmental protection, papers that are outside the scope are those that lack engineering aspects, including those that:use experimental techniques primarily to prepare and/or characterise various materials without considerations of process engineering design and practice;present primarily laboratory experiments of the effects of different parameters on behaviour of materials and pollutants (e.g. pH, temperature, mass of adsorbent, etc.) without further insights into the implications for engineering design and practice;focus primarily on adsorption models and curve fitting (e.g. Freundlich, Langmuir etc.); andcontain only chemical, physical and/or thermodynamic analyses.Core topic areas:Risk Assessment and Reliability Engineering? Risk assessment, risk management, consequence analysis, and uncertainty quantification.? Supply chain risk management.? Cyber and physical security vulnerability assessment.? Risk assessment of hydrogen-based technologies. ? Human reliability analysis (HRA) and human-machine interface (HMI).? Reliability predictions of integrated systems and high-temperature power electronics.? Integrity management and reliability, availability and maintainability (RAM).Technical Safety and Loss Prevention? Fire and gas detection.? Firewater systems.? Functional safety and safety integrity levels (SIL)? Layer of protection analysis (LOPA)? Bowtie analysis.? Emergency response? HAZOP and other hazard/risk identification techniques.Modelling? Modelling liquid, gaseous, and two-phase releases and dispersion.? Consequence modelling, including: fire, explosion, toxic, eco-toxic effects and projectile impacts.? Methods, including computational fluid dynamics (CFD).? Accident investigation and modelling.Chemical Toxicity and Exposure Assessment? Toxic releases and exposure assessment.? Process plant health issues.Process Pipelines, Storage and Security? Process pipelines security and terrorism.? Pipeline leak detection and measurement and corrosion assessment.? Carbon capture and storage (CCS) and CO2 transport.Fire and Explosion? Fire, combustion, and explosion phenomena.? Dust explosions.? Fire and blast protection and survivability.Human Factors in Design and Management? HSE performance measurement including leading and lagging indicators.? Human and organizational factors in safety cases.? Human performance optimization by design.? SIMOPS (simultaneous operations).? Situational awareness.? Communications and risk control systems.? Resilience engineering.? Technical assurance and workforce training.Inherent Safety and Inherently Safer Design ? Hazard identification? Design and development of new processes and equipment.? Methodologies for ranking inherent safety.? Retrofitting inherently safer solutions and upgrading existing plant for improved safety.Nuclear Safety? Waste disposal.? Design for decommissioning.? Passively safe reactor designs.? Nuclear reactor protective and monitoring systems.Reaction Hazards? Chemical thermal stability and thermal reaction hazards.? Influence of impurities on reaction hazards.? Development of reactivity hazard index ranking tools.? Runaway reactions, including detection and mitigation.? Compatibility/reactivity of chemicals involved in a chemical process.Industrial Hazards and Safety Cases? Major accident hazards? ALARP and cost-benefit analysis.? Industrial safety cases.Incident investigations and case histories? Case histories of incidents and lessons learned integration into design and operations.? Technical analysis of incidents.? Computational modelling to simulate actual incidents? Use of incidents in training and improvement of safety performance? Incident investigation methodologies? Incident databases and their applications.Air pollution prevention and treatment ? Methods and technologies for prevention and treatment of air pollution? Air dispersion modelling? Prediction and mitigation of air pollution incidents? Health impacts from air pollutionResource and waste management? Recovery and recycling of materials and products? Energy from waste and alternative resources? Waste minimisation? Waste treatment technologies? Waste management: systems and processes for energy and material recovery and waste treatment; disposal? Landfill and waste repository design, operation and management? Land remediation and recoveryWater pollution prevention and treatment? Industrial, pure and ultrapure water production? Municipal and industrial effluent treatment? Potable water treatment? Sludge processing, energy recovery and disposal? Mitigation of water pollution incidents? Water pollution dispersion modelling? Health impacts from water pollution

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