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Cai Xin Yan Yingying Li Shuanglin Kong Shaofei Liu Mengyao Zhang Zexuan 《Environmental science and pollution research international》2022,29(11):15763-15776
Environmental Science and Pollution Research - Global tropospheric nitrogen dioxide (NO2) changes have different or even opposite impacts on the photochemical formation of ozone in different... 相似文献
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Yuan Liang Chen Yuying He Weijun Kong Yang Wu Xia Degefu Dagmawi Mulugeta Ramsey Thomas Stephen 《Environmental science and pollution research international》2022,29(46):69753-69770
Environmental Science and Pollution Research - Under the background that China puts forth the goals of “Emission Peak” and “Carbon Neutrality”, heavily polluting... 相似文献
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Xue Qingju Kong Ming Xie Liqiang Li Tong Liao Mengna Yan Zebin Zhao Yanyan 《Environmental science and pollution research international》2022,29(58):87132-87143
Environmental Science and Pollution Research - Harmful cyanobacterial blooms are increasing in frequency and severity, which makes their toxic secondary metabolites of microcystins (MCs) have been... 相似文献
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Ma Jianlong Li Chuanhua Hu Lanyu Kong Wangsheng Lu Qing Zhang Jia 《Journal of Material Cycles and Waste Management》2021,23(2):614-621
Journal of Material Cycles and Waste Management - Electroplating sludge contained multi-metals and organics. In previous reports, electroplating sludges were usually recycled by direct calcination... 相似文献
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Eutrophication conditions and ecological status in typical bays of Lake Taihu in China 总被引:4,自引:0,他引:4
Sampling was conducted at three site groups, group E (in East Taihu Bay), G (in Gonghu Bay) and M (in Meiliang Bay) in Lake
Taihu. TN and TP concentrations among site groups was in the increasing order of E < G < M. TP level at G sites is at the
critical threshold for loss of submersed macrophytes. Mean values of DO and Transparence showed different trend, i.e., E >
G > M. The mean phytoplankton fresh-weight biomass at M sites was 5.81 mg/l, higher than that at E sites (4.96 mg/l) and G
sites (5.18 mg/l). Mean zooplankton fresh-weight biomass was in the decreasing order of M (6.4 mg/l) > G (4.9 mg/l) > E (2.7 mg/l).
However, Rotifera density was in the sequence of E > G > M. Both zooplankton biomass and phytoplankton biomass increased with the rise of TN
and TP concentrations. Relationships between zooplankton biomass and phytoplankton biomass showed that zooplankton played
a limited role in the control of algae in eutrophic lakes. Nutrient availability is much more important than zooplankton grazing
pressure in controlling phytoplankton growth in lakes. For most sites in Lake Taihu, reduction of nutrient loading, as well
as macrophyte conservation, zappears to be especially important in maintaining high water quality and regulating lake biological
structure, but for M sites, it’s urgent to control nutrient inputs rather than to restore macrophyte community. 相似文献
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Kong Hui Du Chuan-ming Lv Ning-ning Yu Yao-hui 《Journal of Material Cycles and Waste Management》2022,24(1):259-267
Journal of Material Cycles and Waste Management - Dephosphorization slag is primarily composed of CaO–SiO2–FeO–P2O5 slag system. As it contains abundant valuable components,... 相似文献