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1.
Environ Monit Assess ; 195(11): 1273, 2023 Oct 06.
Artigo em Inglês | MEDLINE | ID: mdl-37798370

RESUMO

The application of flue gas desulfurization gypsum (FGDG) improves the soil structure, reduces soil pH, and accelerates soil salt leaching. Biochar amendment to soil can affect the soil infiltration rate, increase soil porosity, decrease soil bulk density, and enhance the water retention capacity. This study investigated the interactive effect of FGDG and biochar on water infiltration characteristics and physicochemical properties as well as determined the optimal amendment rate as a saline-alkaline soil conditioner. Seven experimental schemes were designed, and the newly reclaimed cultivated soil from Pingtan Comprehensive Experimental Zone in Fujian Province, China, was used in an indoor soil column experiment to simulate soil infiltration. Five models were employed to describe the infiltration process. The power function was used to represent the dynamic process of the wetting front. The conclusions of this study are as follows: (1) there was a reduction in the infiltration capacity of saline-alkaline soil (sandy soil) in each treatment, and the application of FGDG alone had the highest inhibition effect compared to the control (CK). The Kostiakov model provides the best fit for the experimental data of soil cumulative infiltration. (2) All treatments increased the total porosity and water content of saline-alkali soil, with the combined application of FGDG and biochar found to be more effective. (3) The application of FGDG alone or in combination with biochar decreased the pH and increased the electrical conductivity of the saline-alkali soil significantly, with the combined application having the most significant effect. In contrast, soil amended with biochar alone had minimal effect on the pH and EC of the soil. (4) The best improvement ratio was achieved with the F1B2 combination (75 g/kg FGDG + 30 g/kg biochar).


Assuntos
Sulfato de Cálcio , Solo , Sulfato de Cálcio/química , Solo/química , Monitoramento Ambiental , Carvão Vegetal , Gases , Álcalis , Água
2.
Ying Yong Sheng Tai Xue Bao ; 33(2): 500-508, 2022 Feb.
Artigo em Chinês | MEDLINE | ID: mdl-35229524

RESUMO

Under the background of urban low-carbon transformation, a study on regionalization can provide a refe-rence for achieving optimization of territorial protection and high-quality development. We examined carbon emission and spatial differentiation characteristics of land use in 79 counties of Fujian Province. From the perspective of carbon neutral, reasonable division of region of Fujian Province was gotten after a comprehensive evaluation combined with economy contributive coefficient of carbon emission, ecological support coefficient of carbon absorption and priority function zoning. Then, we proposed the low-carbon optimization strategy for differentiated land space. The results showed that the total carbon emission in Fujian Province was 62.0416 million t and the total carbon absorption was 49.0971 million t in 2017, indicating that Fujian was at a state of carbon deficit. The spatial distribution of carbon emission and carbon absorption was opposite from coastal to inland. The six territorial space zones were low-carbon development-ecological function zone, low-carbon development-main producing area of agricultural products zone, low-carbon development-urban optimization zone, carbon sink function-main producing area of agricultural products zone, carbon intensity control-urban optimization zone, and high-carbon optimization-urban optimization zone. We proposed the corresponding low-carbon optimization strategies of territorial space for each zone.


Assuntos
Carbono , Planejamento de Cidades , Agricultura , China
3.
Ying Yong Sheng Tai Xue Bao ; 31(12): 4080-4090, 2020 Dec.
Artigo em Chinês | MEDLINE | ID: mdl-33393245

RESUMO

Analyzing the characteristics of spatial-temporal evolution of habitat quality caused by land use change can provide a scientific basis for the coordinated development of regional ecological economy. With Fujian Province (the ecological civilization demonstration area of China) as an example,the InVEST model was used to evaluate the habitat quality based on the land use change data from 1980 to 2018. Further, the influencing factors were analyzed through Geodetector, and the spatial-temporal characteristics of habitat quality was analyzed by combining with the change of land use type. The results showed that the main land use change types included farmland translating to forest land and construction land, forest land translating to farmland, grassland and construction land, and grassland translating to forest land, which accounted for 8.4%, 14.5%, 7.6%, 17.1%, 6.4% and 31.7% of the total land use change, respectively. From 1980 to 2018, the overall habitat quality of Fujian Province was at a high level (0.6-0.8), showing a trend of habitat degradation and habitat quality reduction. The first leading factor for the spatial variation of habitat quality was the change of land use type, with the impact of socioeconomic factors on the habitat quality of coastal counties and cities being significantly higher than that of the entire region and inland counties and cities. The rapid encroachment of construction land on the surrounding forest and grassland accele-rated the degradation of habitat in coastal areas, the process of which was irreversible. The habitat degradation of central urban areas would undergo a similar process in inland area, but might be slower than coastal area in terms of speed and scale. In the long term, the speed of habitat degradation could be slowed by controlling the scale of cities, developing urban ecological greening, and buil-ding an ecological security pattern.


Assuntos
Ecossistema , Florestas , China , Cidades , Conservação dos Recursos Naturais
4.
Oncol Lett ; 5(1): 215-217, 2013 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-23255922

RESUMO

Papillary thyroid carcinoma with fibromatosis-like stroma (PTC-FLS) is a rare type of thyroid carcinoma that does not receive adequate follow-up. This study describes a case of PTC-FLS on the right side of the neck. The patient consented to a right hemithyroidectomy with a central compartment lymphadenectomy. Pathological examination revealed that the two initial lesions were consis tent with benign histological performance. Using immunohistology, the proliferated stromal cells were revealed to be positive for vimentin and smooth muscle actin (SMA), but negative for thyroglobulin, S-100 and CK. Post-operative follow-up was scheduled at 3-month intervals for 2 years and then at 6-month intervals for the next 3 years. There were no signs of tumor recurrence at the 5-year follow-up.

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