• Title/Summary/Keyword: mine pollution

Search Result 155, Processing Time 0.022 seconds

Association between Soil Contamination and Blood Lead Exposure Level in Areas around Abandoned Metal Mines (폐금속광산지역 토양오염정도와 혈 중 납 노출 수준의 상관성)

  • Seo, Jeong-Wook;Park, Jung-Duck;Eom, Sang-Yong;Kwon, Hee-Won;Ock, Minsu;Lee, Jiho
    • Journal of Environmental Health Sciences
    • /
    • v.48 no.4
    • /
    • pp.227-235
    • /
    • 2022
  • Background: Abandoned metal mines are classified as vulnerable areas with the highest level of soil contamination among risk regions. People living near abandoned metal mines are at increased risk of exposure to toxic metals. Objectives: This study aimed to evaluate the correlation between soil contamination levels in areas around abandoned metal mine and the blood lead levels of local residents. Moreover, we assess the possibility of using soil contamination levels as a predictive indicator for human exposure level. Methods: Data from the Survey of Residents around Abandoned Metal Mines (2013~2017, n=4,421) and Investigation of Soil Pollution in Abandoned Metal Mines (2000~2011) were used. A random coefficient model was conducted for estimation of the lower level (micro data) of the local resident unit and the upper level (macro data) of the abandoned metal mine unit. Through a fitted model, the variation of blood lead levels among abandoned metal mines was confirmed and the effect of the operationally defined soil contamination level was estimated. Results: Among the total variation in blood lead levels, the variation between abandoned mines was 18.6%, and the variation determined by the upper-level factors such as soil contamination and water contamination was 8.1%, which was statistically significant respectively. There was also a statistically significant difference in the least square mean of blood lead concentration according to the level of soil contamination (p=0.047, low: 2.32 ㎍/dL, middle: 2.38 ㎍/dL, high: 2.59 ㎍/dL). Conclusions: The blood lead concentration of residents living near abandoned metal mines was significantly correlated with the level of soil contamination. Therefore, in biomonitoring for vulnerable areas, operationally defined soil contamination can be used as a predictor for human exposure level to hazardous substances and discrimination of high-risk abandoned metal mines.

A Study on the Characteristical Evaluation of pH and Heavy Metals Concentrations of Soil in the Gangwon-do (강원도 지역의 용도별 토양의 수소이온농도 및 중금속 오염 평가)

  • Kim, Joon-bum;Woo, Seung-soon;An, Jung-hyeok;Jeon, Choong;Kwon, Young-Du;Chung, Yeong-Jin;Park, Kwang-Ha
    • Applied Chemistry for Engineering
    • /
    • v.16 no.4
    • /
    • pp.556-562
    • /
    • 2005
  • This study was performed to evaluate effects of pH and heavy metals on soil pollution in 167 sites of Gangwon-do. The overall pH range of soils was 4.3~8.4 The average soil pollution of Cd was 0.089 mg/kg (0.000~3.493 mg/kg), Cu 3.093 mg/kg (0.078~60.263 mg/kg), Pb 4.74 mg/kg (0.01~38.08 mg/kg), Hg 0.054 mg/kg (0.002~1.050 mg/kg), and As 0.971 mg/kg (0.031~77.051 mg/kg), but $Cr^{6+}$ was not detected in these soils. The average concentration of heavy metals in these soils was acceptable under the preliminary standard of soil preservation acts in Korea.

A Comparison Study of Alum Sludge and Ferric Hydroxide Based Adsorbents for Arsenic Adsorption from Mine Water (알럼 및 철수산화물 흡착제의 광산배수 내 비소 흡착성능 비교연구)

  • Choi, Kung-Won;Park, Seong-Sook;Kang, Chan-Ung;Lee, Joon Hak;Kim, Sun Joon
    • Economic and Environmental Geology
    • /
    • v.54 no.6
    • /
    • pp.689-698
    • /
    • 2021
  • Since the mine reclamation scheme was implemented from 2007 in Korea, various remediation programs have been decontaminated the pollution associated with mining and 254 mines were managed to reclamation from 2011 to 2015. However, as the total amount of contaminated mine drainage has been increased due to the discovery of potential hazards and contaminated zone, more efficient and economical treatment technology is required. Therefore, in this study, the adsorption properties of arsenic was evaluated according to the adsorbents which were derived from water treatment sludge(Alum based adsorbent, ABA-500) and granular ferric hydroxide(GFH), already commercialized. The alum sludge and GFH adsorbents consisted of aluminum, silica materials and amorphous iron hydroxide, respectively. The point of zero charge of ABA-500 and GFH were 5.27 and 6.72, respectively. The result of the analysis of BET revealed that the specific surface area of GFH(257 m2·g-1) was larger than ABA-500(126~136 m2·g-1) and all the adsorbents were mesoporous materials inferred from N2 adsorption-desorption isotherm. The adsorption capacity of adsorbents was compared with the batch experiments that were performed at different reaction times, pH, temperature and initial concentrations of arsenic. As a result of kinetic study, it was confirmed that arsenic was adsorbed rapidly in the order of GFH, ABA-500(granule) and ABA-500(3mm). The adsorption kinetics were fitted to the pseudo-second-order kinetic model for all three adsorbents. The amount of adsorbed arsenic was increased with low pH and high temperature regardless of adsorbents. When the adsorbents reacted at different initial concentrations of arsenic in an hour, ABA-500(granule) and GFH could remove the arsenic below the standard of drinking water if the concentration was below 0.2 mg·g-1 and 1 mg·g-1, respectively. The results suggested that the ABA-500(granule), a low-cost adsorbent, had the potential to field application at low contaminated mine drainage.

Comparison of Bioavailability and Biological Transfer Factor of Arsenic in Agricultural Soils with Different Crops

  • Oh, Se Jin;Kim, Sung Chul;Ok, Yong Sik;Oh, Seung Min;Ji, Won Hyun;Yang, Jae E.
    • Korean Journal of Soil Science and Fertilizer
    • /
    • v.47 no.6
    • /
    • pp.518-524
    • /
    • 2014
  • Heavy metal pollution in agricultural field near at the abandoned metal mines has been a critical issue in Korea. In particular, bioaccumulation in plants can have detrimental effect on human health. Main objective of this research was to examine arsenic (As) concentration in soil with varied extraction methods and to determine bioaccumulation and biological transfer factor in different crops. Results showed that bioaccumulation ratio of As for total contents in soil was ordered leafy and stem vegetables (1.19%) > fruit bearing vegetables (0.79%) > pulses (0.40%) > root vegetables (0.36%) with different crop species. Among 6 different extraction methods, all of extraction methods showed high correlation ($R^2=0.87-0.97$) except DTPA ($R^2=0.25$) when comparing As concentration in soil extracted with different extractants and As concentration in each crops. Calculated biological transfer factor was ranged 0.002-0.018 depending on crop species. Overall, concentration of As in crops can be varied and best management practice for minimizing bioaccumulation of As should be considered depending on crop species.

Stabilization and solidification of tailings from a traditional gold mine using Portland cement

  • Rachman, Ranno Marlany;Bahri, Ayi Syaeful;Trihadiningrum, Yulinah
    • Environmental Engineering Research
    • /
    • v.23 no.2
    • /
    • pp.189-194
    • /
    • 2018
  • The traditional gold mining in Kulon Progo district, Special Region of Yogyakarta Province produced tailings containing mercury (Hg) from the gold amalgamation process. Mercury accumulated in tailings has 164.19 mg/kg - 383.21 mg/kg in total concentration. Stabilization/solidification (S/S) is one of the remediation technologies to reduce waste pollution. Portland cement is one of the additive materials in S/S that effective encapsulates heavy metal waste. The aim of this research is to know the optimum composition of tailings mixture with Portland cement in S/S process. This research used variation of tailings composition. Variation of Portland cement composition with tailing are 100:0, 90:10, 80:20, 70:30, 60:40, 50:50, 40:60, 30:70, 20:80 and 10:90. The result of this study found that the optimum composition of Portland cement: tailings was 10:90, with compression test of $257ton/m^2$ and TCLP test was 0.0069 mg/L. The compression test results were in accordance to US EPA Standard quality of $35ton/m^2$. TCLP test results meet the standard of Indonesian Government Regulation No. 101 Year 2014 of 0.05 mg/L.

On the Blasting Technology Develppment of Korea (한국의 폭파 기술 발전)

  • Huh, Ginn
    • Explosives and Blasting
    • /
    • v.13 no.4
    • /
    • pp.5-27
    • /
    • 1995
  • Korea-America tungsten treaty is not only Earnning Us Dollar but also it was turnning point of tunnelling technology development such as a burn cut. Because 10th of specialist worked at Sangdong mine under treaty. The first of all, Experimental blasting pattern for single free face carried out. As a result it has brought the burden and $charge/m^3$ and also space distance. After the center holes are blasted. Remain of the works was the implementation of bench cut against the openning to make the full sectional are required. $Ca=\frac{A}{SW}$ where as A =ndi=m activated area S = Peripheral length of Charged room Ca = Rock Coefficient di=Holes diameter Later in 1980, The Oynaite Explosive is Replaced into Emulsion & Milli-Second Delay Electric Cap. Seqential Blasting machine were Applied in the Site. The Subway Tunnelling have been worked so Carefully for Vibration and Noise to near Shopping and housing area. We carried out Empirical formula to solve city Envoirement pollution as follow For Granite: $V=KW^{0.57}D^{-1.75}$ For Granite : $V=KW^{0.5}D^{-1.5}$ V=PPV(cm/sec) K=Coefficency D=Distance(m) W=Amount of power/delay(kg)

  • PDF

Environmental impacts on the soil system of abandoned metal mine - pollution extent and remediation (폐금속광산이 주변 토양계에 미치는 환경적 영향 -오염범위 및 복구-)

  • 나춘기;송재준
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
    • /
    • 1997.05a
    • /
    • pp.12-16
    • /
    • 1997
  • 폐금속 광산 주변 및 광산 하부 농경지 토양에 대한 중금속 오염원으로서 폐금속 광산 주변에 방치된 폐석의 영향을 고찰하고 오염토양에 대한 복구방법으로서 반전객토의 효율성을 검토하기 위하여 동진 금·은·동 광산 주변토양과 하부 농경지 중 오염된 논, 객토된 논 및 오염되지 않은 논을 선정하여 각각의 토양과 변에서 보여지는 금속원소의 함량과 분포특성을 비교·고찰한 결과, 동진광산에 주변에 방치된 폐석은 폐광된지 30여년이 지난 지금에도 주변토양 및 수계 하부의 농경지에 강한 중금속 오염원으로 작용하고 있음을 보여 이들의 광해를 방지하기 위해 적절한 복구대책이 필요한 것으로 판명되었다. 오염토양의 복구법으로서 반전객토지에서 산출된 나락의 중금속 함량(Cd 0.015ppm, Cr 0.07ppm, Cu 0.567ppm)은 비객토 오염지(Cd 0.096-0.215ppm, Cr 0.195-0.275ppm, Cu 1.085-1.151ppm)에 비해 대부분의 원소에서 2배 이상 낮은 값을 보이고 있어 농작물에의 중금속 전이를 억제하는 데는 상당히 효율적임을 시사했다. 이러한 결과는, 단순히 토양의 물리성 개선 및 이에 따른 토양환경의 변화 등에 의한 일시적 효과일 수 있음을 배제할 수 없지만, 적어도 반전객토법이 토질개선 방법 중 가장 간편하고 오염된 토양부분의 배출토에 대한 처리문제 및 이로 인한 이차오염문제 등을 고려하지 않아도 된다는 점을 감안할 때 소규모 금속광산 주변으로 비교적 오염정도가 약한 토양을 정화법으로 이용될 수 있음을 시사한다.

  • PDF

Analiysis of Micro-structure of Cement Mortar Using Waste Fine Tailing with Admixture (폐광미를 시멘트 혼화재료로 이용한 경화체의 미세구조분석)

  • Yu, Seung-Wan;An, Yang-Jin;Mun, Kyoung-Ju;Park, Won-Chun;Soh, Yang-Seob
    • Proceedings of the Korea Concrete Institute Conference
    • /
    • 2005.11a
    • /
    • pp.743-747
    • /
    • 2005
  • In South Korea, about 900 metal mines have been abandoned, and about 88 million-t metal mine wastes have been discarded in recent years. The treatment of the tailings which are the main wastes in the abandoned metal mines becomes a social problem because they cause environmental pollution such as acidic waste water generation, groundwater contamination, and dust generation. Since almost whole quantities of the tailings have disposed by landfill now, the development of effective recycling methods for the tailings are strongly requested. It is expected that the fine tailings obtained by centrifugal separation process among the tailings can be utilized as admixture for cement. The purpose of this study is to evaluate the micro-structure of cement mortar admixed with fine tailing. Various admixtures were made of Fine tailings and 2 Types of OPC, fly-ash and blast furnace slag. The hydration reactivity of cement mortar with FT was examined by Porosity, XRD and SEM morphology analysis. The anolytical result about hardened hydrates shows that waste fine tailing help hydrates none densified due to it,s filling-space, These densified effect is concluded with improving the resistance to attack of cement mortar including waste fine tailing.

  • PDF

A Study on the Characteristics of Blasting Vibration from Different Excavation Methods in Underground Mine (지하채굴공동에서 굴착방법에 따른 발파진동의 특성에 관한 연구)

  • Kang Choo-Won;Ryu Pog-Hyun
    • Explosives and Blasting
    • /
    • v.24 no.1
    • /
    • pp.1-8
    • /
    • 2006
  • Recently, most of limestone quarries have been not mined by open-pit mining but by underground excavation to reduce environmental pollution. As a result, the size of underground galleries became bigger to maintain mass-production close to open-pit mining. However, the scale of pillars and galleries as well as the excavation methods may induce a few adverse problems for the stability of a mined gallery. In this study, the nomogram analysis and the prediction of rock damage zone induced by blasting were carried out. The testing conditions include concurrent blasting of two adjacent galleries, concurrent blasting of a transport drift and a inclined shaft, sequential blasting of two galleries, and separate blasting for each gallery. For each testing condition, blast vibration velocity was measured and analyzed. From the prediction formulas for blast vibration velocity derived in this study, the maximum depth of rock damage zone induced by blasting were also predicted.

Stable isotope and water quality analysis of coal bed methane produced water in the southern Qinshui Basin, China

  • Pan, Jienan;Zhang, Xiaomin;Ju, Yiwen;Zhao, Yanqing;Bai, Heling
    • Membrane and Water Treatment
    • /
    • v.4 no.4
    • /
    • pp.265-275
    • /
    • 2013
  • China is one of the countries with the highest reserves of coal bed methane (CBM) in the world. Likewise, the CBM industry is significantly growing in China. However, activities related to CBM development have led to more environmental problems, which include serious environmental damage and pollution caused by CBM-produced water. In this paper, the detailed characteristics of CBM-produced water in the southern Qinshui Basin were investigated and analyzed and compared with local surface water and coal mine drainage. Most of CBM-produced water samples are contaminated by higher concentration of total dissolved solids (TDS), K (Potassium), Na (Sodium) and $NH_4$. The alkalinity of the water from coalmines and CBM production was higher than that of the local surface water. The concentrations of some trace elements such as P (Phosphorus), Ti (Titanium), V (Vanadium), Cr (Chromium), Ni (Nickel), Zn (Zinc), Ge (Germanium), As (Arsenic), Rb (Rubidium), and Pd (Palladium) in water from the coalmines and CBM production are higher than the acceptable standard limits. The ${\delta}D$ and ${\delta}^{18}O$ values of the CBM-produced water are lower than those of the surface water. Similarly, the ${\delta}D$ values of the CBM-produced water decreased with increasing drainage time.