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Additional file 1 of Metal removal capability of two cyanobacterial species in autotrophic and mixotrophic mode of nutrition
Additional file 1 of Metal removal capability of two cyanobacterial species in autotrophic and mixotrophic mode of nutrition
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Figshare
2022-02-18 更新
2026-04-08 收录
蓝藻生物修复
金属去除效率
数据链接:
https://springernature.figshare.com/articles/dataset/Additional_file_1_of_Metal_removal_capability_of_two_cyanobacterial_species_in_autotrophic_and_mixotrophic_mode_of_nutrition/19194287/1
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资源简介:
Additional file 1: Supplementary Fig. S1.
应用场景:
提供机构:
Nowruzi, Bahareh; Hekmat, Azadeh; Ghorbani, Elham; Nezhadali, Masoumeh
创建时间:
2022-02-18
相关数据集
Additional file 1 of Metal removal capability of two cyanobacterial species in autotrophic and mixotrophic mode of nutrition
蓝藻生物修复
重金属去除
Additional file 1: Supplementary Fig. S1.
DataCite Commons
2022-02-18 更新
3
0
Additional file 3 of Metal removal capability of two cyanobacterial species in autotrophic and mixotrophic mode of nutrition
蓝藻生物修复
重金属去除
Additional file 3: Supplementary Fig. S3.
NIAID Data Ecosystem
2
0
Additional file 3 of Metal removal capability of two cyanobacterial species in autotrophic and mixotrophic mode of nutrition
蓝藻重金属去除
营养模式影响
Additional file 3: Supplementary Fig. S3.
Figshare
2022-02-18 更新
1
0
Additional file 2 of Metal removal capability of two cyanobacterial species in autotrophic and mixotrophic mode of nutrition
Additional file 2: Supplementary Fig. S2.
Figshare
2022-02-18 更新
2
0
Metal removal capability of two cyanobacterial species in autotrophic and mixotrophic mode of nutrition
金属生物吸附
蓝藻生物修复
Background: Cyanobacteria are ecologically significant prokaryotes that can be found in heavy metals contaminated environments. As their photosynthetic machinery imposes high demands for metals, homeo
NIAID Data Ecosystem
2
0
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