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91.
Yang Zhaojun Guo Xiaoting Sun Jun Zhang Yali 《Environment, Development and Sustainability》2021,23(8):12056-12076
Environment, Development and Sustainability - Sustainable supply chain emerges as a major business trend essential to long-term competitive advantage. Relevant corporate decisions concern a broad... 相似文献
92.
Liu Jianli Liang Jianyao Ding Jiannan Zhang Guangming Zeng Xianyi Yang Qingbo Zhu Bo Gao Weidong 《Environment, Development and Sustainability》2021,23(8):11240-11256
Environment, Development and Sustainability - Textiles release microfibers to the environment during production, use, and at end-of-life disposal. There is a potentially large and growing risk to... 相似文献
93.
Yang Mian Yuan Yining Yang Fuxia Patino-Echeverri Dalia 《Environmental Economics and Policy Studies》2021,23(4):915-944
Environmental Economics and Policy Studies - This paper dissects the effects of environmental regulation on the productivity of pollution-intensive industries and by doing so offers a new... 相似文献
94.
95.
97.
Chen Cheng Haodong Li Jinling Wang Hualin Wang Xuejing Yang 《Frontiers of Environmental Science & Engineering》2020,14(5):87
98.
Jiani Yang Xingwen Lu Yuxin Liu Fei Wang Yuanqing Chao 《Environmental science and pollution research international》2020,27(10):10404-10414
This study investigated crystallization mechanisms for the formation of lead aluminosilicate by sintering lead stabilization with kaolin-based precursors. PbAl2Si2O8 was found to be the only stable lead aluminosilicate in low-PbO system and demonstrates its highly intrinsic resistance to acid attack in leaching test. A three-stage PbAl2Si2O8 formation mechanism was supported by the results of the changing temperature in the system. Amorphization of sintered products was observed in both PbO/kaolinite and PbO/mullite systems at 600–700°C. When the temperature was increased to 750–900°C, the crystallochemical formation of lead aluminosilicates (i.e., Pb4Al4Si3O16, Pb6Al6Si2O21, and PbAl2Si2O8) was observed. Pb4Al4Si3O16 and Pb6Al6Si2O21 were found to be the intermediate phases at 700–900°C. Finally, PbAl2Si2O8 was found to be the only crystallite phase to host Pb at above 950°C. A maximum of 80% and 96.7% Pb can be incorporated into PbAl2Si2O8 in PbO/kaolinite and PbO/mullite systems, respectively, but the final products exhibited different microstructures. To reduce environmental hazard of lead, this strategy demonstrated a preferred mechanism of immobilizing lead into PbAl2Si2O8 structure via kaolin-based precursors. 相似文献
99.
Feyissa Adugna Yang Fan Feng Jiao Wu Junjun Chen Qiong Cheng Xiaoli 《Environmental science and pollution research international》2020,27(10):10528-10540
Environmental Science and Pollution Research - Soil labile and recalcitrant carbon (C) and nitrogen (N) are strongly controlled by plant inputs and climatic conditions. However, the interrelation... 相似文献
100.
Abdelnour Sameh A. Yang Chun-Yan Swelum Ayman A. Abd El-Hack Mohamed E. Khafaga Asmaa F. Abdo Mohamed Shang Jiang-Hua Lu Yang-Qing 《Environmental science and pollution research international》2020,27(31):38472-38490
Environmental Science and Pollution Research - Global warming is considered as the main environmental stress affecting ecosystems as well as physiological and biochemical characteristics, and... 相似文献