[1] 王新利,黄元生,刘诗剑.优化能源消费结构对河北省碳强度目标实现的贡献潜力分析[J].运筹与管理,2020,29(12):140-146. [2] GONG W, WANG C, FAN Z, et al. Drivers of the peaking and decoupling between CO2 emissions and economic growth around 2030 in China[J]. Environmental Science and Pollution Research, 2022, 29(3): 3864-3878. [3] 王方,余乐安,查锐.季节性数据特征驱动的电子废弃物回收规模分解集成预测建模研究[J].中国管理科学,2022,30(3):199-210. [4] 中国家用电器研究院.中国废弃电器电子产品回收处理及综合利用行业白皮书2021[R/OL].(2022-05-16)[2023-10-26]. https://www.cheari.ac.cn/Uploads/file/20220516/1652681074430165.pdf. [5] 李小燕,宁前,何国庚.采用R290和R32的家用空调器全生命周期碳排放研究[J].低温工程,2021(2):33-40. [6] 汪中才,宋庆彬,蔡铠涵,等.家用空调制冷剂物质流动态演化特征—以中国澳门特别行政区为例[J].资源科学,2021,43(3):556-566. [7] 陈盼,施晓清.京津冀电子废弃物回收利用潜力预测及环境效益评估[J].环境科学,2020,41(4):1976-1986. [8] 宋小龙,王景伟,吕彬,等.电子废弃物资源化全生命周期碳减排效益评估—以废弃电冰箱为例[J].环境工程学报,2015,9(7):3448-3454. [9] 王月,宓宏,徐宏,等.制冷剂回收再生的碳排放评估及经济性分析[J].制冷学报,2021,42(5):48-55. [10] KARALI N, SHAH N, PARK W Y, et al. Improving the energy efficiency of room air conditioners in China: Costs and benefits[J]. Applied Energy, 2020, 258: 114023. [11] PHADKE A, SHAH N, LIN J, et al. Chinese policy leadership would cool global air conditioning impacts: Looking east[J]. Energy Research & Social Science, 2020, 66: 101570. [12] LICKLEY M, SOLOMON S, FLETCHER S, et al. Quantifying contributions of chlorofluorocarbon banks to emissions and impacts on the ozone layer and climate[J]. Nature Communications, 2020, 11(1): (Article)1380. [13] 崔志恒,杨昌智.基于DLCA的家用空调器碳排放研究[J].制冷学报,2023,44(2):61-67+136. [14] ZHAO L, ZENG W, YUAN Z. Reduction of potential greenhouse gas emissions of room air-conditioner refrigerants: A life cycle carbon footprint analysis[J]. Journal of Cleaner Production, 2015, 100: 262-268. [15] 张飞,张志伟,万乐斐,等.基于EEMD-GRNN方法的光伏电站短期出力预测[J].太阳能学报,2020,41(12):103-109. [16] ZHU S, WANG X, SHI N, et al. CEEMD-subset-OASVR-GRNN for ozone forecasting: Xiamen and Harbin as cases[J]. Atmospheric Pollution Research, 2020, 11(4): 744-754. [17] 张卫国,黄思颖,王超.奖励众筹融资绩效动态预测研究—来自“众筹网”数据的实证[J].中国管理科学,2023,31(5):71-83. [18] 刁莉,王宁.基于X12-LSTM模型的保费收入预测研究[J].计算机科学,2020,47(S1):512-516. [19] WANG C, SUN Z. Monthly pork price forecasting method based on Census X12-GM(1,1) combination model[J]. PloS One, 2021, 16(5): e0251436. [20] 梁小珍,邬志坤,杨明歌,等.基于二次分解策略和模糊时间序列模型的航空客运需求预测研究[J].中国管理科学,2020,28(12):108-117. [21] 白勇,张占龙,熊隽迪.基于FP-Growth算法和GRNN的电力知识文本挖掘[J].计算机科学,2021,48(8):86-90. [22] HSU L C, WANG C H. Forecasting integrated circuit output using multivariate grey model and grey relational analysis[J]. Expert Systems with Applications, 2009, 36(2): 1403-1409. [23] 李博,杨建新,吕彬,等.废弃电器电子产品产生量估算—方法综述与选择策略[J].生态学报,2015,35(24):7965-7973. [24] HUANG H, TONG X, CAI Y, et al. Gap between discarding and recycling: Estimate lifespan of electronic products by survey in formal recycling plants in China[J]. Resources, Conservation and Recycling, 2020, 156: 104700. [25] 姚宏民,杜欣慧,秦文萍.基于密度峰值聚类及GRNN的光伏发电功率预测方法[J].太阳能学报,2020,41(9):184-190. [26] 张明杰,丁爽,雷永峰.几种家用空调环保制冷剂比较与展望[C]//中国制冷学会小型制冷机低温生物医学专业委员会.第十届全国电冰箱(柜)、空调器及压缩机学术交流大会论文集. 北京: 中国制冷学会小型制冷机低温生物医学专业委员会,2011:5-5. |