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1.
Environmental Science and Pollution Research - Hydrothermal liquefaction (HTL) of biomass used HTL reaction under high temperature and pressure to produce bio-oil. This technology is considered as...  相似文献   
2.
绿色技术创新作为区域技术创新体系的重要组成部分,是维持区域发展可持续性、增强区域竞争优势的重要驱动力.基于区域一体化的研究视角,通过采集长三角绿色技术专利合作及绿色技术转移数据,运用Gephi复杂网络分析方法,对长三角绿色技术创新网络进行结构分析.结果 表明:(1)长三角绿色技术创新网络发育程度较低,大量城市在绿色技术创新网络中较边缘化;(2)绿色技术创新依赖创新主体间知识互动,地理邻近促进了创新合作行为的产生和知识的扩散;(3)长三角绿色技术创新网络"强-强联系"与"核心-边缘"结构特征明显,绿色技术专利合作网络呈现"一超多强"的多中心格局,绿色技术转让网络呈现单中心格局;(4)区域一体化下,长三角绿色技术创新网络兼具邻近性和等级性特征,不同类型城市参与创新网络应有差异;进而,提出长三角绿色技术创新网络优化策略.创新点在于:建立了区域一体化与技术创新网络的关联,探讨了绿色技术创新的空间组织形式,强调了地理邻近对于绿色技术创新网络的重要性.  相似文献   
3.
Environmental Science and Pollution Research - High temperature environment causes reduction in productivity in broilers by disrupting the intestinal barrier function. This study aimed to...  相似文献   
4.
Environmental Geochemistry and Health - By investigating three dominant mangrove species, namely Aegiceras corniculatum, Kandelia candel, Ceriops tagal and their rhizosediment in Mangrove wetlands...  相似文献   
5.
Environmental Science and Pollution Research - The effect of air staging strategies on NOx control was investigated on a 210-kW small-scale biomass boiler (SBB) and a 1.4-MW medium-scale biomass...  相似文献   
6.
Chang  Xiaoqiang  Chen  Xingyu  Zhang  Shuaichen  Lu  Sixian  Zhao  Yifan  Zhang  Dong  Yang  Lan  Ma  Yue  Sun  Peng 《Environmental Chemistry Letters》2023,21(2):681-687
Environmental Chemistry Letters - Branched allylic sulfones are scaffolds widely distributed in bioactive molecules and organic functional materials. The synthesis of allylic sulfones has been...  相似文献   
7.
Environmental Science and Pollution Research - Electricity generation is the largest sector with decarbonization potential for China and the world. Based on the new emission factors, this paper...  相似文献   
8.
• Mechanochemical treatment reduced the calcination temperature for biochar synthesis. • Biochar is converted to graphite after mechanochemical treatment. • Biochar was reduced to nanoscale after mechanochemical treatment. Biochar (BC) has been extensively studied as adsorbent for the treatment of water pollution. Despite the distinct advantages, the high calcination temperature and low adsorption capacity of pristine BC limit its practical applications. Most of the former studies focused on the structure and/or surface modification to improve the adsorption capacity of BC. However, the harsh experiment conditions involved in the biochar modification limited the application in industrial level. Herein, we introduced mechanical treatment into BC preparation to reduce the calcination temperature and improve the adsorption capacity simultaneously. The results indicated that the calcination temperature was reduced and the adsorption capacity of the treated BC was improved after mechanochemical treatment. Characterization of the samples disclosed that BCs were graphitized with the particle size reduced to nanoscale after treatment. Adsorption tests indicated that the mechanochemically treated BCs showed much better removal performance of organic contaminants than that of pristine BCs. For instance, among four pristine BCs (BC600, BC700, BC800, and BC900), only BC900 has strong adsorption capacity for MB, while BC600 has low adsorption capacity (1.2 mg/g). By comparison, the adsorption capacity of MB increased greatly to 173.96 mg/g by BC600-500/1 (treated at 500 r/min for 1 hour). To optimize the mechanochemical treatment, the effects of rotation speed and agitation duration were also investigated.  相似文献   
9.
Environmental Science and Pollution Research - The removal of ammonia nitrogen from wastewater is always a focus in current water treatment. In this study, a combination of mesoporous carbon...  相似文献   
10.
Zinc- and lead-containing wastes are often mixed with construction and demolition wastes in many factories, generating abundant of heavy metal-enriched hazardous waste. In the present study, a novel integrated process of air classification, alkaline leaching, and water washing dechlorination was proposed for the efficient recycling of Zinc (Zn) resources. The first air classification process was realized via venturi tube, wherein the content of Zn could increase by 20 wt.%. After that, the product underwent an alkaline leaching process. Results showed that Zn recovery rate increased with fine particle sizes, and a 65% recovery rate was obtained under the following conditions of 5 mol/L NaOH, liquid/solid 10:1, and leaching time 1 h. Finally, water washing associated with microwave and ultrasonic treatments could remove over 85% of Cl and other water-soluble salts. All the results indicated that the integrated method had an excellent recovery rate for Zn resources from construction and demolition wastes.  相似文献   
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