1 |
吴闪闪, 刘付文晓, 许志国, 等.. 硝酸钙缓释颗粒原位修复黑臭底泥的作用机制及其应用. 环境工程学报, 2022, 16 (7): 2198- 2207.
|
2 |
范成新, 刘敏, 王圣瑞, 等.. 近 20 年来我国沉积物环境与污染控制研究进展与展望. 地球科学进展, 2021, 36 (4): 346- 374.
|
3 |
雷沛, 张洪, 王超, 等.. 沉积物水界面污染物迁移扩散的研究进展. 湖泊科学, 2018, 30 (6): 1489- 1508.
|
4 |
李乾岗, 田颖, 刘玲, 等.. 水体中沉积物氮和磷的释放机制及其影响因素研究进展. 湿地科学, 2022, 20 (1): 94- 103.
|
5 |
LIU Z, BAI G, LIU Y, et al.. Long-term study of ecological restoration in a typical shallow urban lake. Science of the Total Environment, 2022, 846, 157505.
|
6 |
DONG Z, WANG Y, FU J, et al.. Benthic ecological restoration under the combined action of slow-release oxygen material and benthic organisms. Chemosphere, 2022, 301, 134658.
|
7 |
ZHU J, HE Y, WANG J, et al.. Impact of aeration disturbances on endogenous phosphorus fractions and their algae growth potential from malodorous river sediment. Environmental Science and Pollution Research, 2017, 24 (9): 8062- 8070.
|
8 |
TANG C, LI Y, HE C, et al.. Dynamic behavior of sediment resuspension and nutrients release in the shallow and wind-exposed Meiliang Bay of Lake Taihu. Science of the Total Environment, 2020, 708, 135131.
|
9 |
郭雅倩, 薛建辉, 吴永波, 等.. 沉水植物对富营养化水体的净化作用及修复技术研究进展. 植物资源与环境学报, 2020, 29 (3): 58- 68.
|
10 |
李锋民, 陈琳, 姜晓华, 等.. 水质净化与生态修复的水生植物优选指标体系构建. 生态环境学报, 2021, 30 (12): 2411- 2422.
|
11 |
黄靖宇, 徐佳, 李传龙, 等.. 缓释氧剂的制备及其在黑臭水体治理方面的应用研究. 现代化工, 2018, 38 (12): 165- 169.
|
12 |
李亮, 武成辉, 林翰志, 等.. 复合释氧剂的制备及其对水体修复的作用. 环境工程, 2017, 35 (9): 1- 6.
|
13 |
李亮, 武成辉, 陈涛, 等.. 过氧化钙在城镇黑臭水体修复中的作用. 化工进展, 2016, 35 (S2): 340- 346.
|
14 |
王锋, 董文艺, 王宏杰, 等.. CaO2原位处理河道黑臭底泥效能研究. 环境工程, 2020, 38 (12): 64- 69.
|
15 |
WANG H, ZHAO Y, LI T, et al.. Properties of calcium peroxide for release of hydrogen peroxide and oxygen: A kinetics study. Chemical Engineering Journal, 2016, 303, 450- 457.
|
16 |
李明, 朱晓明, 阮晓红, 等.. 包裹缓释外壳的缓释氧材料的性能影响分析. 地下水, 2012, 34 (6): 173- 175.
|
17 |
薛栋, 丁爱中, 朱宜, 等.. 应用于黑臭水体的新型缓释氧材料制备及其释氧效果模拟. 环境工程, 2019, 37 (9): 57- 61.
|
18 |
郭鹏飞, 董子义, 王颖, 等.. 缓释氧复合材料不同投加方式对沉积物–水界面污染物迁移的影响. 环境工程, 2021, 39 (5): 1- 8.
|
19 |
LEE C S, LE THANH T, KIM E J, et al.. Fabrication of novel oxygen-releasing alginate beads as an efficient oxygen carrier for the enhancement of aerobic bioremediation of 1, 4-dioxane contaminated groundwater. Bioresource Technology, 2014, 171, 59- 65.
|
20 |
ZHOU Y, FANG X, ZHANG Z, et al.. An oxygen slow-releasing material and its application in water remediation as oxygen supplier. Environmental Technology, 2017, 38 (22): 2793- 2799.
|
21 |
殷瑶, 朱煜.. 过氧化钙缓释氧颗粒的制备及缓释氧过程调控. 净水技术, 2019, 38 (S1): 199- 203.
|
22 |
刘涉江, 刘秀丽, 王少博.. CPC/CaO2氧缓释复合材料的制备及其释氧性能探讨. 环境工程学报, 2010, 4 (5): 971- 974.
|
23 |
周彦波, 王英秀, 周振华, 等.. 过氧化钙缓释氧剂的制备及其释氧特性研究. 中国给水排水, 2012, 28 (7): 64- 67.
|
24 |
WU C H, CHANG S H, LIN C W.. Improvement of oxygen release from calcium peroxide-polyvinyl alcohol beads by adding low-cost bamboo biochar and its application in bioremediation. Clean-Soil Air Water, 2015, 43 (2): 287- 295.
|
25 |
夏德春, 郑翔, 吕树光, 等.. 过氧化钙缓释材料对河道水固磷及底泥控磷的机理研究. 环境污染与防治, 2020, 42 (5): 553- 557.
|
26 |
UTECH S, BOCCACCINI A R.. A review of hydrogel-based composites for biomedical applications: Enhancement of hydrogel properties by addition of rigid inorganic fillers. Journal of Materials Science, 2016, 51 (1): 271- 310.
|
27 |
YANG J, LIN F K, YANG L, et al.. A bench-scale assessment for phosphorus release control of sediment by an oxygen-releasing compound (ORC). Journal of Environmental Science and Health, Part A, 2015, 50 (1): 49- 59.
|
28 |
朱煜.. 过氧化钙缓释氧剂对微生物降解苯系物的强化效能和机理研究. 应用化工, 2020, 49 (4): 916- 920.
|
29 |
杨丽, 廖传华, 朱跃钊, 等.. 微纳米气泡特性及在环境污染控制中的应用. 化工进展, 2012, 31 (6): 1333- 1337.
|
30 |
LYU T, WU S, MORTIMER R J G, et al.. Nanobubble technology in environmental engineering: Revolutionization potential and challenges. Environmental Science & Technology, 2019, 53 (13): 7175- 7176.
|
31 |
WANG J, CHEN J, YU P, et al.. Oxygenation and synchronous control of nitrogen and phosphorus release at the sediment-water interface using oxygen nano-bubble modified material. Science of the Total Environment, 2020, 725, 138258.
|
32 |
PAN G, HE G, ZHANG M, et al.. Nanobubbles at hydrophilic particle–water interfaces. Langmuir, 2016, 32 (43): 11133- 11137.
|
33 |
YU P, WANG J, CHEN J, et al.. Successful control of phosphorus release from sediments using oxygen nano-bubble-modified minerals. Science of the Total Environment, 2019, 663, 654- 661.
|
34 |
苗肖君, 陈俊, 王蕾, 等.. 氧微纳气泡改性矿物对水体的增氧效果及机理. 环境保护科学, 2019, 45 (6): 44- 52.
|
35 |
LI Y, XIONG X, ZHANG C, et al.. Sustainable restoration of anoxic freshwater using environmentally-compatible oxygen-carrying biochar: Performance and mechanisms. Water Research, 2022, 214, 118204.
|
36 |
ZHANG H, LYU T, BI L, et al.. Combating hypoxia/anoxia at sediment-water interfaces: A preliminary study of oxygen nanobubble modified clay materials. Science of the Total Environment, 2018, 637, 550- 560.
|
37 |
WANG L, MIAO X, ALI J, et al.. Quantification of oxygen nanobubbles in particulate matters and potential applications in remediation of anaerobic environment. ACS Omega, 2018, 3 (9): 10624- 10630.
|
38 |
李诗月, 冯丽娟, 武华杰, 等.. 氧纳米气泡改性活性炭在河道底泥氨氮治理中的应用. 科学技术与工程, 2021, 21 (19): 8283- 8289.
|
39 |
TANG Y, ZHANG M, ZHANG J, et al.. Reducing arsenic toxicity using the interfacial oxygen nanobubble technology for sediment remediation. Water Research, 2021, 205, 117657.
|
40 |
余萍萍. 氧纳米气泡改性颗粒对深水沉积物–水界面的增氧效果及环境效应研究 [D]. 贵阳: 贵州大学, 2019.
|
41 |
PAN X, LIN L, HUANG Z, et al.. Distribution characteristics and pollution risk evaluation of the nitrogen and phosphorus species in the sediments of Lake Erhai, Southwest China. Environmental Science and Pollution Research, 2019, 26 (22): 22295- 22304.
|
42 |
LI X, SONG J, YUAN H, et al.. Biogeochemical characteristics of nitrogen and phosphorus in Jiaozhou Bay sediments. Chinese Journal of Oceanology and Limnology, 2007, 25 (2): 157- 165.
|
43 |
HOU D, HE J, LU C, et al.. Spatial variations and distributions of phosphorus and nitrogen in bottom sediments from a typical north-temperate lake, China. Environmental Earth Sciences, 2014, 71 (7): 3063- 3079.
|
44 |
李雨平, 姜莹莹, 刘宝明, 等.. 过氧化钙(CaO2)联合生物炭对河道底泥的修复. 环境科学, 2020, 41 (8): 3629- 3636.
|
45 |
WANG F, WANG H, ZHAO Z, et al.. Simultaneous elimination of black-odor and stabilization of heavy metals in contaminated sediment using calcium peroxide/hydroxyapatite: Microbial responses and ecotoxicological effects. Journal of Hazardous Materials, 2022, 429, 128298.
|
46 |
徐垚, 李大鹏, 韩菲尔, 等.. CaO2不同投加方式对黑臭河道底泥内源磷释放抑制作用. 环境科学, 2017, 38 (7): 2836- 2842.
|
47 |
韩琦, 薛爽, 刘影, 等.. 河流底泥中溶解性有机物的释放途径及影响因素研究. 中国环境科学, 2016, 36 (12): 3737- 3749.
|
48 |
NYKANEN A, KONTIO H, KLUUTAS O, et al.. Increasing lake water and sediment oxygen levels using slow release peroxide. Science of the Total Environment, 2012, 429, 317- 324.
|
49 |
张钟慧. CaO2控制沉积物–水界面内源氮磷释放的微生物群落响应机制研究 [D]. 西安: 西安建筑科技大学, 2020.
|