Leave only Footprints? Reframing Climate Change, Environmental Stewardship, and Human Impact

2017 ◽  
Vol 20 (1) ◽  
pp. 84-102 ◽  
Author(s):  
Monica Aufrecht
Author(s):  
John G Hansen ◽  
Rose Antsanen

Many Indigenous communities living on traditional lands have not contributed significantly to harmful climate change. Yet, they are the most likely to be impacted by climate change. This article discusses environmental stewardship in relation to Indigenous experiences and worldviews. Indigenous knowledge teaches us about environmental stewardship. It speaks of reducing the severity of climate change and of continued sustainable development. The methodology that directs this research is premised on the notion that the wisdom of the Elders holds much significance for addressing the harmful impacts of climate change in the present day. This article's fundamental assumption is that Indigenous knowledge offers practical and theoretical recommendations to current approaches to human activity and environmental issues. We share findings from interviews with Cree Elders who discussed their worldviews and knowledge systems. Findings revealed that Indigenous knowledge offers a philosophy and practice that serve to reduce the severity of climate change.


Water ◽  
2019 ◽  
Vol 11 (4) ◽  
pp. 655 ◽  
Author(s):  
Yi Liu ◽  
Chuanhong Chen ◽  
Shao Yang

The lake ecosystems on the Yunnan-Guizhou Plateau in China have degraded in recent decades under the effects of anthropogenic activities and climate change. The human impact on the oligotrophic Lugu Lake aquatic ecosystem was evaluated using the sediment records of metals, nitrogen isotopes (δ15N) and magnetic susceptibility over the past 200 years. Three periods were identified based on the trace metal and δ15N records. During the first stage (1816–1976 AD), the concentrations of metals, δ15N and magnetic susceptibility were low with small variations. The anthropogenic contributions to the inputs were also small, except for Ni, reflecting minor human activities in the watershed, and no significant change was observed in the sediment record of the diatom assemblage. During the second stage (1976–2001 AD), the concentrations of Zn and δ15N increased, as well as the anthropogenic contribution of Zn. However, no significant change was detected in the anthropogenic sources of the other metals. These results reflect the low-level use of chemical fertilizers. The major shift in the sediment diatom assemblage during this stage was mainly attributed to regional climate change. During the third stage (2001–2010 AD), the concentrations of the sedimentary metals (Ni, Cr, Mn, Cu, Hg and Al) increased rapidly, with the exception of As and Zn, and a similar increasing trend was observed in the changes by anthropogenic sources of Ni, Cr, Mn and Cu. RDA (Redundancy Analysis) and variance partitioning analysis showed that the human impact and climate proxies independently explained 31.59% and 4.26% of the change of diatom community, respectively, and the interaction between climate change and human impact accounted for 18.61% of the change of diatom community. Tourism-dominated human activities, which were reflected in the metals profiles, facilitated the dominance of eutrophic species and reduced that of oligotrophic species. The development of tourism was likely the main driving force for the succession of diatom assemblages in the third stage. In summary, the anthropogenic input of trace metals in Lugu Lake is still at a low level. However, the significant growth trend in metals over the past decade is significantly related to the change in the lake ecosystem. Therefore, the effects of human activities, especially tourism, on the watershed should be controlled for the protection of the oligotrophic Lugu Lake.


2020 ◽  
Vol 12 (17) ◽  
pp. 6784 ◽  
Author(s):  
Tibor András Marton ◽  
Anna Kis ◽  
Anna Zubor-Nemes ◽  
Anikó Kern ◽  
Nándor Fodor

We aim to predict Hungarian corn yields for the period of 2020–2100. The purpose of the study was to mutually consider the environmental impact of climate change and the potential human impact indicators towards sustaining corn yield development in the future. Panel data regression methods were elaborated on historic observations (1970–2018) to impose statistical inferences with simulated weather events (2020–2100) and to consider developing human impact for sustainable intensification. The within-between random effect model was performed with three generic specifications to address time constant indicators as well. Our analysis on a gridded Hungarian database confirms that rising temperature and decreasing precipitation will negatively affect corn yields unless human impact dissolves the climate-induced challenges. We addressed the effect of elevated carbon dioxide (CO2) as an important factor of diverse human impact. By superposing the human impact on the projected future yields, we confirm that the negative prospects of climate change can be defeated.


1993 ◽  
Vol 8 (8) ◽  
pp. 303-304
Author(s):  
Hazel R. Delcourt
Keyword(s):  

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