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111.
Ahn JS 《Environmental geochemistry and health》2012,34(Z1):43-54
Bedrock groundwaters in Geumsan County, Korea, were surveyed to investigate the distribution and geochemical behaviors of arsenic and fluoride, mobilized through geogenic processes. The concentrations were enriched up to 113 μg/L for arsenic and 7.54 mg/L for fluoride, and 16% of 150 samples exceeded World Health Organization drinking water guidelines for each element. Simple Ca-HCO(3) groundwater types and positive correlations with pH, Ca, SO(4), and HCO(3) were characteristics of high (>10 μg/L) As groundwaters. The oxidation reaction of sulfide minerals in metasedimentary rocks and locally mineralized zones seems to be ultimately responsible for the existence of arsenic in groundwater. Desorption process under high pH conditions may also control the arsenic mobility in the study area. High (>1.5 mg/L) F groundwaters were found in the Na-HCO(3) type and with greater depth. Fluoride seemed to be enriched by deep groundwater interaction with granitic rocks, and continuous supply to shallow Ca-HCO(3)-type groundwater kept the concentration high. In the study area, drinking water management should include periodic As and F monitoring in groundwater. 相似文献
112.
To evaluate the effect of vermiculite addition on composting food wastes from Korean households, food wastes were composted in three small bins to which different additives were added. The following three bins were employed: in Case I, only recycled compost was composted; in Case II, food wastes with recycled compost; and in Case III, food wastes with recycled compost and vermiculite. In the experiment performed for 30 days, it was confirmed that the supplementary addition of vermiculite to the composting mixture did not significantly improve the weight loss rate and the decomposition rate of food wastes. Due to dilution through the use of inorganic vermiculite, the vermiculite addition reduced the organic matter concentration of the composting mixtures. Vermiculite addition did not raise the pH value. Weight losses of roughly 70% were observed based on calculating moisture loss as well as dry food waste loss and not considering additives, while dry food waste loss was 29.4% and 35.8% with and without the addition of vermiculite, respectively. For these experiments, the major portion of the weight loss was the loss of water. The results indicate a need to differentiate between weight loss percentages and decomposition percentages, and a need to indicate if either of these percentages includes or excludes the mass of additives. 相似文献
113.
Sidharthan M Shin HW Joo JH 《Journal of environmental biology / Academy of Environmental Biology, India》2004,25(1):39-43
Toxic antifouling chemicals released into the seawaters leads to marine environmental degradation. In order to identify a nontoxic antifoulant, an assessment of antifouling (AF) efficacy of some AF candidates was made at Ayagin harbor, east coast of South Korea. In this static panel study conducted during October 2000-March 2001, some commercial antifoulants, seaweed and seagrass extracts were screened. On panel surfaces coated with a seaweed extract, Ishige okamurae exhibited effective AF activity. Ulva pertusa was encountered as a 'monospecific' fouler with fairly high fouling coverage on many of the test panel surfaces. In recent years the increased influx of inorganic pollutants in the coastal waters causes exorbitant growth of fouling marine algae found all along the Korean peninsula. Especially, a cosmopolitan ship fouling alga U. pertusa occur with high abundance. It was largely suggested that the proposed international ban on the toxic antifoulant tributyltin (TBT) had significant effect on the 'green tide' phenomenon occurring in different parts of the world. However, it appears that Korean scenario of 'green tide' is a localized. Antifouling efficacy of some AF coatings and fouling coverage of a green tide alga, U. pertusa are discussed. 相似文献
114.
Reduced viability of F1 egg ropes in Chironomus riparius exposed to di-2-ethylhexyl phthalate (DEHP)
Kim EJ Lee SK 《Journal of environmental biology / Academy of Environmental Biology, India》2004,25(3):259-261
The midge (Chironomus riparius), an aquatic invertebrate, was exposed to di-2-ethylhexyl phthalate (DEHP) to evaluate the effects on reproductive processes via sediment toxicity. The test endpoints included emergence, sex ratio, fecundity and viability of F1 offspring egg ropes. After exposures of C. riparius to DEHP in this study, a significant result was observed only in the viability test of F1 egg ropes. That is, hatching rates of F1 egg ropes from DEHP exposed adults were decreased significantly. This result provides the evidence that DEHP could lead abnormal egg ropes development by DEHP exposure during larval period. This means that DEHP could effect to Chironomus population density through reduced F1 offspring. 相似文献
115.
Yong-Woon Lee Changkook Ryu Woong-Jin Lee Young-Kwon Park 《Journal of Material Cycles and Waste Management》2011,13(3):165-172
Wood pellet is a densified fuel with homogeneous physical properties suitable for use at various scales in domestic and industrial
furnaces. A wood pellet stove is a small-scale furnace for domestic heat production that can replace conventional oil or gas
boilers. Since the fuel properties of wood pellet are very different from those of oil or gas, the design of a wood pellet
stove requires profound understanding of solid fuel combustion as well as of gas flow mixing and reactions. Due to limitations
on the height of an installed furnace (~1 m), poor design of the furnace, air supply, fume extraction, or the heat exchanger
may lead to excessive CO emissions or low energy efficiency. This study evaluated the design of an existing wood pellet stove
with 30,000 kcal/h capacity, using experimental and computational techniques in order to optimize the furnace design. The
results show that it is critical to minimize unused furnace volume and to enhance gaseous mixing for reduced CO emissions
while maintaining sufficiently high temperatures for fast oxidation. 相似文献
116.
To sustain agricultural productivity, evaporation basins (or ponds) have been widely used for the disposal of agricultural drainage in areas requiring subsurface drainage in the San Joaquin Valley of California, USA. The drainage water contains elevated concentration of trace elements including selenium (Se) and arsenic (As). Unlike Se, little information is available about As, a potentially high risk element. The objective of this study was to characterize the chemical behavior of As and acquire data for better understanding of biogeochemical processes and conditions affecting As fate in evaporation ponds. The study site was a 726 ha evaporation basin facility (containing 10 cells with water flowing in series) in the hydrologically closed Tulare Basin of California. We examined water chemistry, As concentration and speciation along the water flow path between cells as well as within the cells. Arsenic concentrations in the water increased linearly with Cl(-), a conservative ion from evapoconcentration. Reduced As species as arsenite [As(III)] and organic arsenic (org-As) also increased with increases in Cl(-) and salinity. Water samples with elevated EC (i.e., towards the end of flow path) had high dissolved organic matter, low dissolved oxygen, and elevated sulfide concentrations, indicating the development of reducing conditions. We hypothesize that such changes could facilitate the reduction of arsenate [As(V)] to As(III) and org-As. Elevated As in sediment profiles indicate a solid phase sink mechanism, but not significant enough to remove and reduce As concentrations in the water columns. These findings help us better define the processes that affect As in drainage facilities and contribute to our understanding of how As behaves in other regions of the world that have similar climatic and hydrogeochemical conditions. 相似文献
117.
Dong-UK Park Dae-Seon Kim Seung-Do Yu Kyeong-Min Lee Seung-Hun Ryu Soo-Geun Kim Won-Ho Yang Doo-Yong. Park Yeong-Seoub Hong Jung-Duck Park Byung-Kook Lee Jai-Dong Moon Joon Sakong Seung-Chul Ahn Jung-Min Ryu Soon-Won Jung 《Environmental monitoring and assessment》2014,186(8):5209-5220
We analyzed national data on blood lead levels (BLL) and blood cadmium levels (BCL) in residents living near 38 abandoned metal mining areas (n?=?5,682, 18–96 years old) in Korea that were collected by the first Health Effect Surveillance for Residents in Abandoned Metal mines (HESRAM) from 2008 to 2011. The geometric mean BCL and BLL were 1.60 μg/L (95 % CI?=?1.57–1.62 μg/L) and 2.87 μg/dL (95 % CI?=?2.84–2.90 μg/dL), respectively, notably higher than levels in the general population in Korea and other countries. We found significantly higher BLL and BCL levels in people living within 2 km of an abandoned metal mine (n?=?3,165, BCL?=?1.87 μg/L, BLL?=?2.91 μg/dL) compared to people living more than 2 km away (n?=?2,517, BCL?=?1.31 μg/L, BLL?=?2.82 μg/dL; P?<?0.0001) and to the general population values reported in the literature. 相似文献
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