scholarly journals Encourage small business environmental sustainability performance by market orientation and environmental innovation

2021 ◽  
Vol 737 (1) ◽  
pp. 012018
Author(s):  
Y Haskas ◽  
B Mujahid ◽  
N F Arif ◽  
S Riyadi ◽  
A S Arief
2019 ◽  
Vol 11 (4) ◽  
pp. 1127 ◽  
Author(s):  
Chin-Hung Tseng ◽  
Kuo-Hsiung Chang ◽  
Ho-Wen Chen

Although previous research has explored the effect of strategic orientation (SO) on innovation and business performance, little attention has been paid to its effect on environmental innovation capability (EIC) and environmental sustainability performance. Drawing on the strategic marketing and dynamic capability theory, this study attempts to increase the understanding of how SO (i.e., customer orientation, competitor orientation, and technology orientation) influences the EIC, which in turn enhances supplier’s environmental sustainability performance in the context of buyer-supplier relationships. In addition, this study examines the impact of inter-functional coordination on SO and also explores the moderating role of buyers value added in the relationship between SO and EIC. Hierarchical regression analysis was performed to test hypotheses that are based on survey data collected in 127 Taiwanese information technology firms. The results show that customer orientation and technology orientation have a positive impact on the EIC, that buyers value added has a synergistic effect on the impact of competitor orientation on EIC, that inter-functional coordination has a positive impact on SO, and that EIC mediates the relationship between SO and environmental sustainability performance.


2020 ◽  
Vol 251 ◽  
pp. 119519 ◽  
Author(s):  
Huaping Sun ◽  
Muhammad Mohsin ◽  
Majed Alharthi ◽  
Qaiser Abbas

Author(s):  
Fenfen Wang ◽  
Xianfeng Gao ◽  
Lulu Ma ◽  
Chris Yuan

Abstract Silicon nanowires (SiNWs) with three different average diameters of 90, 120, and 140 nm were synthesized by a metal-assisted chemical etching (MACE) method. Environmental sustainability of the MACE process was studied by investigating material consumptions, gas emissions, and silver nanoparticle concentrations in nitric acid solutions for 1 g of SiNWs and 1 kW h of lithium-ion battery (LIB) electrodes. It was found that the process for 90 nm SiNWs has the best sustainability performance compared with the other two processes. Specifically, in this study for 1 g of 90 nm SiNWs, 8.845 g of Si wafer is consumed, 1.09 g of H2 and 1.04 g of NO are produced, and 54.807 mg of Ag nanoparticles are found in the HNO3 solution. Additionally, for 1 kW h of LIB electrodes, the process for 90 nm SiNWs results in 1.943 kg of Si wafer consumption, 239.455 g of H2 and 239.455 g of NO emissions, and 12.040 g of Ag nanoparticles concentrations. By quantitatively investigating the material consumptions and emissions, this study assesses the sustainability performance of the MACE process for synthesizing SiNWs for use in LIBs, and thus it provides process data for the analysis and the development of sustainable production methods for SiNWs and similar anode materials for next-generation LIBs.


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