[1] | XIA Qiongqiong, ZHENG Xingcan, GU Miao, LI Mai, SHANG Wei, TIAN Yongying, HUANG Haiwei, ONG Say Leong. CHARACTERIZATION OF SUMMER GREENHOUSE GAS EMISSIONS FROM SEPTIC TANKS AND MEASUMENT OF CH4 EMISSION FACTORS[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(9): 240-246. doi: 10.13205/j.hjgc.202409023 |
[2] | HE Jianwei, HUANG Xiaoyan, HUANG Ruonan, CAI Yang, ZHAO Fuyun. ANALYSIS OF INDOOR POLLUTANT MIGRATION CHARACTERISTICS UNDER COUPLING EFFECT OF SOLAR PHOTOCATALYSIS AND HYBRID VENTILATION[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(4): 148-156. doi: 10.13205/j.hjgc.202404018 |
[3] | WANG Na, YANG Xinyue, CAI Wentao, SUN Jiajing, MA Xiaoyan, ZHANG Yujiao. RELATIONSHIP BETWEEN PARAMETER σ2(k·ECx) AND INTERACTION OF MULTI-COMPONENT MIXTURES[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(3): 58-66. doi: 10.13205/j.hjgc.202403007 |
[4] | XUE Chonghua, ZHAO Yimeng, SUN Jiarong, LUO Cheng, Li Wenhui, WANG Qing, LI Junqi, HUANG Xin. EFFECTS OF WATER ENVIRONMENTAL FACTORS ON NITROGEN AND PHOSPHORUS RELEASE FROM PIPELINE SEDIMENTS[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(12): 89-98. doi: 10.13205/j.hjgc.202312011 |
[5] | SONG Yuzhi, WU Yufei, LI Haoran. TEMPORAL-SPATIAL DISTRIBUTION OF EPIPELIC ALGAE AND ITS RELATIONSHIP WITH ENVIRONMENTAL FACTORS IN THE TAIHU LAKE[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(1): 18-25. doi: 10.13205/j.hjgc.202301003 |
[6] | WANG Jiajia, NI Lixiao, JIANG Zhiyun, DU Cunhao, FANG Yuanyi, ZHU Chengjie, XU Chu, SANG Wenlu, CHEN Xuqing, XU Jian, SU Hua. EFFECTS OF SALINITY ON GROWTH AND CHLOROPHYLL FLUORESCENCE OF MICROCYSTIS AERUGINOSA UNDER ARTEMISININ STRESS[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(1): 35-41. doi: 10.13205/j.hjgc.202301005 |
[7] | JIE Chao, WANG Si-si, LÜ Bin. ENVIRONMENTAL IMPACT ANALYSIS OF PERMEABLE CEMENT CONCRETE PAVEMENT IN BEIJING BASED ON LIFE CYCLE ASSESSMENT[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(9): 118-125. doi: 10.13205/j.hjgc.202209016 |
[8] | LI Yang, LIU Yong-he, WANG Xi-yue, WANG Hai-lin. SPATIAL-TEMPORAL CHARACTERISTICS OF PM2.5 AND PM10 AND THEIR RELATIONSHIPS WITH METEOROLOGICAL FACTORS IN JIAOZUO, HENAN[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(9): 44-53. doi: 10.13205/j.hjgc.202209006 |
[9] | GU Hao, ZHANG Wen, LIU Guo, CHEN Chun-mei, DENG Zhi-han, XIE Zhi-hao. EFFECTS OF ENVIRONMENTAL FACTORS ON THE RELEASE OF ORGANIC PHOSPHORUS FROM SOIL COVERED SEDIMENTS[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(5): 179-184. doi: 10.13205/j.hjgc.202005031 |
[10] | FANG Li, LIU Ji-ye, NIE Lei, HE Li-juan, WANG Hai-lin. VOCs EMISSION CHARACTERISTICS AND OZONE IMPACT ANALYSIS OF TYPICAL AUTOMOBILE REPAIR ENTERPRISES IN BEIJING[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(10): 146-150,155. doi: 10.13205/j.hjgc.202010023 |
1. | 王嗣彤,程全国,雷坤,王艳,张志敏,孙明东,吕旭波. 温州市鳌江水系叶绿素a和氮、磷的分布特征与富营养化研究. 环境污染与防治. 2024(02): 291-296 . ![]() | |
2. | 莫锦英,田义超,王家乐,杜金泽,张强,张亚丽,陶进,林俊良. 基于机器学习的养殖池-红树林-海洋复合生态系统氨氮遥感反演. 环境科学学报. 2024(11): 415-429 . ![]() | |
3. | 冯家成,李勇,李娜,单雅洁,钱佳宁. 基于Metropolis准则的BP模型改进及在太湖Chl-a预测中的应用. 环境工程. 2022(01): 161-168 . ![]() | |
4. | 陈阳,李琼芳,陈启慧,郑建中,王雪松,王晓杰,皋云,朱玉婷,施红菊. 基于互信息法的北部太湖Chl.a与环境因子的关系. 水文. 2022(02): 54-59 . ![]() | |
5. | 李勇,冯家成,李娜,单雅洁,钱佳宁,徐鸿. 太湖水体Chl-a预测模型ARIMA在引排水方案优化中的应用. 环境工程. 2022(10): 71-79 . ![]() | |
6. | 俞秀霞,孙琳,陈长平. 厦门港叶绿素的时空分布及其与水环境因子关系的多元分析. 海洋科学. 2021(06): 49-62 . ![]() | |
7. | 高文丽,沈芳,车越. 基于卫星观测及水质动力模型的感潮河流水质监测分析. 环境工程学报. 2021(08): 2821-2830 . ![]() | |
8. | 罗祖奎,李扬,徐曦,屈铭志,马进,孙文,黄舒欣,仝慧林. 江苏省沉海圩乡村湿地水稻田种植模式转变后的生态恢复效果. 华东师范大学学报(自然科学版). 2020(04): 164-172 . ![]() | |
9. | 郝晨林,邓义祥,富国,乔飞. 低通时序滤波轨线法在太湖营养过程识别中的应用. 环境科学研究. 2020(11): 2467-2473 . ![]() | |
10. | 金昌盛,邓仁健,刘俞希,任伯帜. 基于奇异谱分析—遗传算法反向传播神经网络模型的湘江新港断面水质预测. 环境污染与防治. 2019(06): 710-713+719 . ![]() | |
11. | 游建勇. 平潭36脚湖叶绿素a与水质因子的多元分析. 化学工程与装备. 2018(09): 317-320 . ![]() |