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Assessing Change of Lamto Reserve Area Based on the MODIS Time Series Data and Bioclimatic Factors Using BFAST Algorithms
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作者 Christian Jonathan Anoma Kouassi Dilawar Khan +4 位作者 Lutumba Suika Achille James Kehinde Omifolaji mikouendanandi mouendo rahmat brice espoire Kebin Zhang Xiaohui Yang 《American Journal of Plant Sciences》 2022年第4期517-540,共24页
Lamto Reserve area is a savannah landscape threatened by periodic drought, and anthropogenic activities leading to natural ecological imbalance. The ecological support services of the landscape had been significantly ... Lamto Reserve area is a savannah landscape threatened by periodic drought, and anthropogenic activities leading to natural ecological imbalance. The ecological support services of the landscape had been significantly impacted by the grassland ecosystem. The Breaks for Additive Season and Trend Algorithms have been implemented in R to analyze the land cover/land use dynamic in relation to the climatic driver of Lamto forest from 2000 to 2020. We examine the vegetation state breaks using vegetation phenological patterns, and several time series including the Normalized Difference Vegetation Index and the Enhanced Vegetation Index, were studied utilizing Breaks for Additive Season and Trend. The findings indicate that the phenological changes in the vegetation in 2020 resulted from an increased temperature from (27.7°C) to (32.17°C), and a decrease in precipitation (71.75 millimeters). The analysis of variance ANOVA of the non-parametric Mann-Kendall test reveals a strong correlation between Precipitation/Evapotranspiration Grass (p mperature/Evapotranspiration Grass (p < 0.311), and Temperature/Normalized Difference Vegetation Index (p in vegetation detected by the Breaks for Additive Season and Trend Algorithms were caused by temperature extremes and reduced rainfall. 展开更多
关键词 ASSESSING BREAK Change Detection Land Cover Climate Extreme Vegetation Vulnerability
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A Review of the Distribution Coefficient (Kd) of Some Selected Heavy Metals over the Last Decade (2012-2021)
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作者 Chabi Dari Seidou Tiejun Wang +2 位作者 mikouendanandi mouendo rahmat brice espoire Yibin Dai Yutao Zuo 《Journal of Geoscience and Environment Protection》 2022年第8期199-242,共44页
This review synthesizes the methods for estimating the distribution coefficient (K<sub>d</sub>) and provides a compilation of K<sub>d</sub> values for five heavy metals (As, Pb, Cd, Cu, and Zn)... This review synthesizes the methods for estimating the distribution coefficient (K<sub>d</sub>) and provides a compilation of K<sub>d</sub> values for five heavy metals (As, Pb, Cd, Cu, and Zn) based on research published in the last decade (2012-2021). We used the PRISMA method to ensure the transparency of the collected data. For mono-metal systems (MS), the K<sub>d</sub> values ranged from 10<sup>-</sup><sup>2</sup> to 10<sup>7</sup> L/kg for Pb, from 10<sup>-</sup><sup>2</sup> to 10<sup>6</sup> L/kg for Cd, As, and Zn, and from 10<sup>-</sup>2 to 10<sup>5</sup> L/kg for Cu. In competitive systems (CS), the K<sub>d</sub> values ranged from 10<sup>-</sup>2 to 10<sup>5</sup> L/kg for Cu, and 10<sup>-</sup>2 to 10<sup>4</sup> L/kg for Pb, Cd, and Zn, while no K<sub>d</sub> value for As was reported under CS. It was found that the K<sub>d</sub> values of heavy metals are affected not only by soil chemical and physical properties but also by the nature and characteristics of the metal involved along with experimental conditions. The totals references number of K<sub>d</sub> data observation per element metal are represented as follows: Cd 35 (50%), Zn 35 (50%), Pb 33 (47.14%), Cu 33 (47.14%), and As 19 (27.14%). Overall, most research was done 1) on MS rather than CS, 2) on sorption rather than desorption, 3) on soil rather than sediments , and 4) most literature have reported the K<sub>d</sub> values, derived from batch method than on column method. Despite significant progress over the past decade towards a better understanding of the variation in K<sub>d</sub> values and the effect of factors influencing them to provide important parameters for predicting and controlling toxic metals in soils, additional research is still warranted to the complexity of underlying processes. 展开更多
关键词 Kd Values Heavy Metals PRISMA SORPTION DESORPTION
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