Page 146 - 《环境工程技术学报》2023年第1期
P. 146

· 142 ·                                 环境工程技术学报                                         第 13 卷

                  compound  leaks  from  petroleum  refinery  equipment[EB/OL].  41.
                  [2021-07-15]. https://www.epa.gov/.               SONG  G  F,  PAN  W  D,  YANG  J  H,  et  al.  Mining  methods
            [10]   US  Environmental  Protection  Agency.  Consent  decrees  and  selection  in  thick  coal  seam  based  on  fuzzy  analytic  hierarchy
                 settlement  agreements[EB/OL].  [2021-07-15].https://www.epa.  process[J].  Journal  of  Mining  &  Safety  Engineering,2015,
                 gov/ogc/consent-decrees-and-settlement-agreements  32(1):35-41.
            [11]   EPPERSON D, LEV-ON M, TABACK H, et al. Equivalent leak  [23]   李欢, 王涌川.基于模糊层次分析法的页岩气钻井井喷事故风
                 definitions  for  smart  LDAR  (leak  detection  and  repair)  when  险评价[J]. 安全与环境工程,2018,25(2):126-130.
                 using optical imaging technology[J]. Journal of the Air & Waste  LI H, WANG Y C. Risk assessment of shale gas drilling blowout
                 Management Association,2007,57(9):1050-1060.       accidents  based  on  fuzzy  analytic  hierarchy  process[J].  Safety
            [12]   王永敏, 王文秀, 马寅平, 等.重点行业泄漏检测与修复建档工                  and Environmental Engineering,2018,25(2):126-130.
                 作评估[J]. 广州化工,2019,47(2):157-160.             [24]   贾海林, 余明高, 崔志恒.基于模糊层次分析法的高校实验室火
                 WANG  Y  M,  WANG  W  X,  MA  Y  P,  et  al.  Assessment  of  灾危险性评价[J]. 实验室研究与探索,2010,29(2):173-176.
                 component  coding  work  on  leak  detection  and  repair  of  key  JIA H L, YU M G, CUI Z H. Research on fire hazard evaluation
                 industries[J]. Guangzhou Chemical Industry,2019,47(2):157-  of  academy  laboratory  based  on  fuzzy  analytical  hierarchy
                 160.                                               process[J].  Research  and  Exploration  in  Laboratory,2010,
            [13]   刘志阳, 廖程浩, 张晖, 等.泄漏检测与修复(LDAR)工作流程及               29(2):173-176.
                 常见问题剖析[J]. 绿色科技,2017(14):135-137.            [25]   马双忱, 范紫瑄, 温佳琪, 等.基于模糊层次分析的燃煤电厂脱
            [14]   KE  J,  LI  S,  ZHAO D F. The  application  of leak detection and  硫废水处理可利用技术评价[J]. 化工进展,2018,37(11):
                 repair  program  in  VOCs  control  in  China's  petroleum  4451-4459.
                 refineries[J].  Journal  of  the  Air  &  Waste  Management  MA S C, FAN Z X, WEN J Q, et al. Evaluation on technology of
                 Association,2020,70(9):862-875.                    desulfurization wastewater from coal-fired power plant based on
            [15]   李龙, 李凌波, 程梦婷.石化行业泄漏检测与修复质量提升计                    fuzzy  AHP[J].  Chemical  Industry  and  Engineering  Progress,
                 划: LDAR质量审计审核[J]. 当代化工,2017,46(10):2090-           2018,37(11):4451-4459.
                 2093.                                        [26]   吴春生, 黄翀, 刘高焕, 等.基于模糊层次分析法的黄河三角洲
                 LI  L,  LI  L  B,  CHENG  M  T.  Quality  enhancement  program  of  生态脆弱性评价[J]. 生态学报,2018,38(13):4584-4595.
                 leak  detection  and  repair  in  petrochemical  enterprise:  LDAR  WU C S, HUANG C, LIU G H, et al. Assessment of ecological
                 audits[J]. Contemporary Chemical Industry,2017,46(10):2090-  vulnerability in the Yellow River Delta using the fuzzy analytic
                 2093.                                              hierarchy process[J]. Acta Ecologica Sinica,2018,38(13):4584-
            [16]   彭茵, 吉晟, 赵子玮, 等.泄漏检测与修复技术管理体系研究及                  4595.
                 评估建议[J]. 现代化工,2017,37(10):10-14.             [27]   黄书君, 李坤权, 朱光怡.基于模糊层次分析模型的高校室内空
                 PENG  Y,  JI  S,  ZHAO  Z  W,  et  al.  Research  and  evaluation  气质量评价与分析[J]. 环境工程,2014,32(5):90-94.
                 recommendation  on  management  system  of  leak  detection  and  HUANG S J, LI K Q, ZHU G Y. Evaluation and analysis on the
                 repair technology[J]. Modern Chemical Industry,2017,37(10):  indoor air quality of colleges based on fuzzy analytic hierarchy
                 10-14.                                             process[J]. Environmental Engineering,2014,32(5):90-94.
            [17]   XU R N, ZHAI X Y. Extensions of the analytic hierarchy process  [28]   BUCKLEY  J  J.  Fuzzy  hierarchical  analysis[J].  Fuzzy  Sets  and
                 in fuzzy environment[J]. Fuzzy Sets and Systems,1992,52(3):  Systems,1985,17(3):233-247.
                 251-257.                                     [29]   丁德武, 杜德川, 贾润中, 等.泄漏检测与修复技术实施水平量
            [18]   MIKHAILOV L, TSVETINOV P. Evaluation of services using a  化评估简介[J]. 安全、健康和环境,2017,17(9):34-37.
                 fuzzy  analytic  hierarchy  process[J].  Applied  Soft  Computing,  DING D W, DU D C, JIA R Z, et al. Research on quantitative
                 2004,5(1):23-33.                                   evaluation  of  implementation  level  of  LDAR  technology[J].
            [19]   DUBOIS  D,  PRADE  H.  Operations  on  fuzzy  numbers[J].  Safety Health & Environment,2017,17(9):34-37.
                 International Journal of Systems Science,1978,9(6):613-626.  [30]   郑幸成, 王文秀, 黄浩云, 等.石化行业泄漏检测与修复评估指
            [20]   CHEN J J G, HE Z S. Using analytic hierarchy process and fuzzy  标体系的建立与应用[J]. 化工环保,2018,38(3):363-368.
                 set  theory  to  rate  and  rank  the  disability[J].  Fuzzy  Sets  and  ZHENG X C, WANG W X, HUANG H Y, et al. Construction
                 Systems,1997,88(1):1-22.                           and application of evaluation index system for leak detection and
            [21]   段军, 梁智广, 岳洪辉.基于模糊层次分析法的采矿方法优                     repair in petrochemical industry[J]. Environmental Protection of
                 选[J]. 化工矿物与加工,2017,46(12):53-56.                   Chemical Industry,2018,38(3):363-368.
                 DUAN  J,  LIANG  Z  G,  YUE  H  H.  Optimization  of  mining  [31]   上海市市场监督管理局, 江苏省市场监督管理局, 浙江省市场
                 method  based  on  fuzzy  analytic  hierarchy  process[J].  Industrial  监督管理局, 等. 设备泄漏挥发性有机物排放控制技术规范:
                 Minerals & Processing,2017,46(12):53-56.           DB3l/T  310007 —2021,  DB32/T  310007 —2021,  DB33/T
            [22]   宋高峰, 潘卫东, 杨敬虎, 等.基于模糊层次分析法的厚煤层采                  310007—2021, DB34/T 310007—2021[S]. 北京: 中国标准出版
                 煤方法选择研究[J]. 采矿与安全工程学报,2015,32(1):35-               社, 2021. ⊗
   141   142   143   144   145   146   147   148   149   150   151