Ulcinj Saltworks (Ulcinj Salt Ponds, Ulcinjska Solana)

2020 ◽  
pp. 350-351
Keyword(s):  
Author(s):  
Barend J. ter Haar

The historical Guan Yu came from a village in Xie Prefecture (modern Yuncheng) in the south of the modern province of Shanxi, close to one of the main salt producing sites of traditional China. From the early twelfth century onwards a new type of worship for Lord Guan was transmitted throughout southern China by Daoist exorcist specialists, which was motivated by a story about his successful defeat of a demon causing mishap in the salt ponds of Xie. The Daoist connection of the deity was much stronger than the Buddhist one, but this was the Daoism of ritual practice, rather than the philosophical approaches as some may construct them from the Book of the Way and the Virtue that is ascribed to Laozi. A substantial numbers of temple foundations in southern China in particular can be explained through this Daoist connection.


2021 ◽  
Author(s):  
Jinglie Zhou ◽  
Susanna M. Theroux ◽  
Clifton P. Bueno de Mesquita ◽  
Wyatt H. Hartman ◽  
Ye Tian ◽  
...  

AbstractWetlands are important carbon (C) sinks, yet many have been destroyed and converted to other uses over the past few centuries, including industrial salt making. A renewed focus on wetland ecosystem services (e.g., flood control, and habitat) has resulted in numerous restoration efforts whose effect on microbial communities is largely unexplored. We investigated the impact of restoration on microbial community composition, metabolic functional potential, and methane flux by analyzing sediment cores from two unrestored former industrial salt ponds, a restored former industrial salt pond, and a reference wetland. We observed elevated methane emissions from unrestored salt ponds compared to the restored and reference wetlands, which was positively correlated with salinity and sulfate across all samples. 16S rRNA gene amplicon and shotgun metagenomic data revealed that the restored salt pond harbored communities more phylogenetically and functionally similar to the reference wetland than to unrestored ponds. Archaeal methanogenesis genes were positively correlated with methane flux, as were genes encoding enzymes for bacterial methylphosphonate degradation, suggesting methane is generated both from bacterial methylphosphonate degradation and archaeal methanogenesis in these sites. These observations demonstrate that restoration effectively converted industrial salt pond microbial communities back to compositions more similar to reference wetlands and lowered salinities, sulfate concentrations, and methane emissions.


Waterbirds ◽  
2016 ◽  
Vol 39 (4) ◽  
pp. 375-387 ◽  
Author(s):  
Jill D. Bluso-Demers ◽  
Joshua T. Ackerman ◽  
John Y. Takekawa ◽  
Sarah H. Peterson

2014 ◽  
Vol 77 (3) ◽  
pp. 480-484 ◽  
Author(s):  
JIN HYO KIM ◽  
JIN HWAN LEE ◽  
SO-YOUNG KIM

Phthalate contamination in sundried salt has recently garnered interest in Korea. Phthalate concentrations were investigated in Korean sundried salts, source waters, and aqueous extracts from polyvinyl chloride materials used in salt ponds. Preliminary screening results for phthalates in Korean sundried salts revealed that only di(2-ethylhexyl)phthalate (DEHP) was over the limit of detection, with an 8.6% detection rate, and the concentration ranged from below the limit of detection to 0.189 mg/kg. The tolerable daily intake contribution ratio of the salt was calculated to be only 0.001%. Residual phthalates were below 0.026 mg/liter in source water, and the aqueous extracted di-n-butylphthalate, benzylbutylphthalate, and DEHP, which are considered endocrine disruptors, were below 0.029 mg/kg as derived from the polyvinyl chloride materials in salt ponds. The transfer ratios of the six phthalates from seawater to sundried salts were investigated; transfer ratio was correlated with vapor pressure (r2 = 0.9875). Thus, di-n-butylphthalate, benzylbutylphthalate, DEHP, and di-n-octylphthalate can be considered highly likely residual pollutants in some consumer salts.


Author(s):  
Jose Carlos Peraza Lizama ◽  
Carlos Martin Rubio Atoche ◽  
Alan Garcia Lira

This paper proposes a method of thermochemical-energy storage from magnesium sulfate recovered from salt ponds of sea water. The idea develops from a project originally thought to obtain magnesium oxide from a salt plant in the Yucatan Peninsula, Mexico. The new idea is based on the exploitation of the heat of decomposition of magnesium sulphate. In the traditional literature, closed-loop, reversible reaction is considered, whereas in this work, an open-loop is proposed; that is, sulphur dioxide is separated from the magnesium oxide before cooling down to 700°C; in this way, magnesium oxide is obtained by thermal decomposition, and at the same time, the high heat of decomposition is used to store thermal energy for electricity generation; magnesium oxide, sulfuric acid and hydrogen are co-products of the process if another iodine reaction cycle is considered. This second process is again a modification of an open-loop traditional process, to a closed-loop process where no sulphuric acid is required.


Hydrobiologia ◽  
1984 ◽  
Vol 108 (1) ◽  
pp. 17-23 ◽  
Author(s):  
Jan Vos ◽  
Philippe L�ger ◽  
Paul Vanhaecke ◽  
Patrick Sorgeloos

Hydrobiologia ◽  
2014 ◽  
Vol 743 (1) ◽  
pp. 1-13 ◽  
Author(s):  
Chiraz Ladhar ◽  
Emmanuelle Tastard ◽  
Nathalie Casse ◽  
Françoise Denis ◽  
Habib Ayadi

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