본 연구는 해조류인 괭생이 모자반을 탄화하여 만든 바이오차의 중금속 흡착 및 제거 효과를 확인하고 중금속 흡착제로 이용 가능성을 확인하고자 연구가 수행되었다. 모자반 바이오차(SBC)는 500℃조건에서 2시간 열분해를 통해 생산하였다. 중금속 흡착실험은 Pb, Cd, Cu 및 Zn의 각 농도별 흡착량을 확인하였으며, Freundlich 및 Langmuir 등온흡착모델을 통해 중금속 흡착 효율성을 확인하였다. 모자반 바이오차의 중금속 제거효율은 Pb, Cd, Cu 및 Zn에서 각각 97.3, 85.2, 76.4 및 42.0%로 Pb>Cd>Cu>Zn 순의 제거효율을 보였다. 등온흡착결과로 Freundlich 등온흡착패턴은 L형이었으며, 흡착강도(1/n)는 0.49 ~ 0.80 범위로 조사되었다. Langmuir 등온흡착식에서 최대흡착량은 Pb, Cd, Cu 및 Zn에서 각각 200, 92.6, 47.8 및 70.4 mg g-1이었으며, 흡착강도는 각각 0.4950, 0.1004, 0.0245 및 0.0188로 조사되었다. 본 실험 결과로 볼 때 모자반 바이오차는 중금속 흡착제로써 활용이 가능할 것으로 보여지며, 이를 활용하기 위한 추가 연구가 필요하다고 보여진다.
2019년부터 2023년까지 서울지역에 유통되는 식약공용 농·임산물 60품목 1,340건을 대상으로 ICP-MS와 수은분 석기, 모니어-월리엄스 변법을 사용하여 중금속(납, 카드 뮴, 비소, 수은) 및 이산화황의 함량을 조사하고 위해성 평 가를 수행하였다. 중금속의 평균 검출량 및 범위는 납 0.327 mg/kg (ND-36.933), 카드뮴 0.083 mg/kg (ND-1.700), 비소 0.075 mg/kg (ND-2.200), 수은 0.004 mg/kg (ND- 0.047)으로 나타났다. 품목별은 2023년에 복령 1건에서 납 이 36.933 mg/kg으로 기준을 초과하였고 카드뮴은 2022년 에 구절초 2건이 각각 1.700 mg/kg, 0.650 mg/kg으로 기준 를 초과하였다. 나머지 품목은 모두 허용기준 이내였다. 이 산화황의 평균 검출량 및 범위는 0.75 mg/kg (ND-192.00)이 였으며, 2019년에 천마 2건에서 각각 192.00 mg/kg과 42.00 mg/kg으로 기준치을 초과하였다. 약용부위별 중금속 평균 검출량은 납은 버섯류(1.377 mg/kg), 카드뮴은 수·근피 류(0.156 mg/kg)와 등목류(0.144 mg/kg), 비소는 엽류 (0.149 mg/kg), 수은은 전초류(0.009 mg/kg), 엽류(0.009 mg/ kg)에서 높게 검출되었다. 이산화황 평균 검출량은 근경류 (4.12 mg/kg)에서 높게 검출되었다. 원산지별로 중금속 및 이산화황 함량을 비교한 결과, 납, 카드뮴 및 수은은 국내 산, 중국산, 중국 외 수입산 간에 차이는 없었으나, 비소 와 이산화황은 중국산이 국내산과 중국 외 수입산보다 높 게 검출되었다. 위해성 평가 결과, 납은 대부분의 품목에 서 노출안전역(MOE)값이 1보다 커서 인체 위해성이 낮았 지만, 복령에서 MOE 값이0.66으로 1보다 낮아 위해성이 있는 것으로 나타났다. 카드뮴, 비소 및 수은의 위해도(HI) 는 각각 0.2740-1.0702%, 0.0049-0.0335% 및 0.0041- 0.0287%로 매우 낮은 수준으로 평가되었다. 이산화황의 위해도(HI)는 모든 품목에서1을 초과하지 않아 안전한 수 준이었다. 앞으로도, 식약공용 농·임산물의 안전성에 대한 지속적인 관심과 모니터링이 필요하다.
발효주의 잔류물질 실태조사를 위해 울산지역에서 유통 되는 발효주 150건을 수거하여 잔류농약 400종과 중금속 납, 카드뮴, 수은을 분석하였다. 잔류농약 분석 결과, 102 건(68%)의 검출을 나타냈으며 검출된 농약 종류는 35종 으로 그 중 원료 농산물의 기준이 없는 농약은 4종이 검 출되었다. 발효주 종류별로 비교하면 와인이 60건의 검사 중 54건(90%)으로 가장 많은 잔류농약이 검출되었고 맥 주는 60건 중 37건(61.7%), 막걸리는 30건 중 11건(36.7%) 이 검출되었다. 발효주에 대한 중금속 분석 결과는 납 73 건(48.7%), 카드뮴은 9건(6.0%), 수은은 36건(24.0%)을 나 타내었다. 납은 73건의 검출 중 와인이 57건(78.1%)을 차 지해 가장 높은 검출을 나타내었고 카드뮴과 수은은 검출 된 9건, 36건 중 막걸리가 7건(77.8%), 13건(36.1%)으로 가장 많이 검출되었다. 각 품목에서 검출된 잔류농약 및 중금속 항목에 대해 인체노출량 평가결과는 모두 1% 미 만으로 안전한 것으로 나타났다.
We selected literature from the core collection of the Web of Science (WOS) database as the research object and used visualization bibliometric software to analyse the 1313 collected studies. We found that the research on the graphene-based adsorption of heavy metals from wastewater has received widespread attention in various countries around the world, especially developing countries, since 2015, and Chinese researchers have made significant contributions. The adsorption mechanisms, adsorbent materials, and advanced adsorption techniques for the removal of heavy metals from wastewater by graphene have been the focus and hotspots in the research in this field in recent years. Heavy metal removal from wastewater with graphene has strong application potential. In the future, researchers in this area can focus on exploring issues such as “new materials,” “recyclability,” and “interdisciplinarity” to break through existing technological bottlenecks, supplement the technical research and development of graphene materials, and promote advances in this field.
To raise the physical strength of alginate beads, this study manufactured alginate-cellulose bead by adding cellulose to alginate, and wanted to identify whether falginate-cellulose beads were sufficiently efficient in removing heavy metals. To find out optimal amounts of alginate and cellulose injection, this study conducted a pilot study, and repeated experiments proved that alginate 2 w/v% + cellulose 1 w/v% were the optimal amounts in manufacturing beads. Using micro materials tester, this study compared strengths of alginate beads and alginate-cellulose beads. Choosing Cd2+, Pb2+, and Ni2+ as materials to be removed, this study analyzed concentrations of them before and after the treatment. Experiments showed that, compared with alginate beads, the strength of alginate-cellulose beads was 2.26 times stronger, and that the latter could remove 98.22%, 99.99%, and 92.57% of Cd2+, Pb2+, Ni2+, respectively. While addition of cellulose to alginate made the absorption rate drop by about 1%, the beads were still highly efficient in removing heavy metals. Accordingly, it seems that alginate-cellulose beads can be used in removing heavy metals.
This study was conducted to determine the concentration of heavy metals and their characteristics in the bodies of 2,446 residents living near industrial areas from 2007 to 2015. The concentration of heavy metals showed diverse characteristics according to gender, food types consumed and period of residence. Especially, levels of cadmium and mercury were high in the urine samples of the group that had lived in the local area for a long time. In order to obtain more accurate results, it will be necessary to comprehensively study the influence and effects from such matters related to lifestyle, eating habits and levels of environmental pollutants.
국내 유통 중인 콜라겐 제품 120건을 대상으로 중금속 4종(납, 카드뮴, 비소, 수은) 함량에 대해 조사하였다. 수 은은 금아말감화법을 이용한 수은분석기로 분석하였고 납, 카드뮴, 비소는 ICP-OES를 이용하여 분석하였다. 검사 결 과 납의 평균 함량은 0.097±0.055 mg/kg이었고 건강기능 식품, 기타가공품, 음료류, 과·채가공품에서 각각 평균 0.108±0.052mg/kg, 0.084±0.053 mg/kg, 0.131±0.047 mg/ kg, 0.149 mg/kg 농도로 검출되었다. 카드뮴의 평균 함량 은 0.026±0.011 mg/kg이었으며 검출된 제품은 모두 건강 기능식품이었다. 비소의 평균 함량은 0.097±0.048 mg/kg 이었고 건강기능식품, 기타가공품, 과·채가공품에서 각각 평균 0.091±0.055 mg/kg, 0.133 mg/kg, 0.086 mg/kg 농도 로 검출되었다. 수은의 평균 함량은 0.0025±0.0016 mg/kg 으로 건강기능식품, 기타가공품, 과·채가공품, 캔디류에서 각각 평균 0.0012 mg/kg, 0.0028±0.0018 mg/kg, 0.0013 mg/kg, 0.0031 mg/kg 농도로 검출되었다. 중금속 기준·규 격이 있는 음료류(납 0.3 mg/kg, 카드뮴 0.1 mg/kg) 및 캔 디류(납 0.2 mg/kg)는 모두 기준 이하로 검출되어 적합하 였다. 기준·규격이 없는 제품도 국내외 식품의 중금속 기 준과 보고된 식품 중금속 함량과 비교하였을 때 비교적 안전한 수준이라고 판단되었다.
The official analytical method for the analysis of harmful heavy metals in Meju, distributed in Korea, employs a strong acid to decompose the organic components. This analysis is time consuming and harmful to the users and/or the environment. This study aimed to develop a new pre-treatment technology using laser ablation, to rapidly analyze harmful heavy metals without using strong acids. The results obtained from this method were validated by the National Institute of Food and Drug Safety Evaluation guideline (NIFDS, 2016). Moreover, a comparison of the two methods showed that the analytical time for 55 Meju samples was shortened by 96% or more in the new method. The results showed no significant difference in the recovery ranging from 90–120%. The proposed method proved suitable for detecting harmful heavy metals in Meju.
In order to provide basic data for preparing management standards and to verify the safety of the Chinese oak mushroom-derived moisturizing medium—which is synthesized and imported in large quantities—the presence of 321 residual pesticides, 7 heavy metals, and 3 radioactive materials was analyzed in the moisturizer samples. Examination of residual pesticides in seven moisturizing medium samples prepared using the Chinese oak mushroom and three domestic sawdust samples used for mushroom culture revealed the presence of cypermethrin and iprodione in three moisturizer samples, but the contents of these pesticides were below the standard limits. Zn was detected in ten samples, Cu was detected in nine samples, and Ni was detected in four samples, but their contents were below the standard limits. Pb, Cd, Cr, and Hg were not detected in any sample. No radioactive materials were detected in the samples. In addition, fruiting bodies of the oak mushroom were observed in each medium. Examination did not reveal the presence of any residual pesticides or harmful compounds. In this study, the use of the moisturizing medium prepared using the Chinese oak mushroom was found to be safe. As residual pesticides, heavy metals, and radioactivity—even in trace amounts—remain concentrated in the human body, continuous verification of the safety of hazardous substances and pollutants during the systematic cultivation and management of these mushrooms is required.
본 연구를 통해 국내 주요 한약재인 복령의 유해물질에 대한 안전성 확립과 허용기준치 설정의 기초자료를 제공하고자 한다. 국내 유통 중인 복령 10건(국내산 5건, 중국 산 5건)에 대한 잔류농약(321종), 중금속(7종), 방사능(3종), 회분 함량을 분석하였다. 잔류농약은 국내산 1건에서만 농약 성분인 cypermethrin 0.03mg/kg이 검출되었으나 기준치 이하로 나타났다. cypermethrin은 과수 및 원예농업에서 해충 방제의 살 충제로 사용되는 성분이다. 중금속은 Hg를 제외한 Zn, Pb, Ni, Cu, Hg, Cr가 모든 시료에서 검출됐지만 기준치 이하로 나타났다. Cd는 중국산 1건에서 0.011 mg/kg이 검출되었다. 방사능 농도도 모든 시료에서 MDA값 이하로 나타나 불검출 수준이었으며, 회분 함량도 모든 시료에서 기준치인 1.0% 이하로 나타났다. 이번 조사에서 국내에 유통 중인 복령의 유해물질에 대한 위해성은 안전하게 나타났다. 일반적으로 버섯류는 중금속 함량이 높다고 알려져 있다. 복령은 토양 속에서 생장하는 재배 특성상 유해물질에 항시 노출되어 있으므로 재배, 저장, 유통 등 생산단계 전반에 대한 지속적인 모니터링과 체계적인 관리기준 설정이 필요할 것으로 보인다.
Understanding the distribution of heavy metals in sediment is necessary because labile heavy metals can partition into the water column and bioaccumulate in aquatic organisms. Here we investigated six heavy metals (Co, Cu, Mn, Ni, Pb, and Zn) in sediment cores using a five-step sequential leaching method to examine the occurrence of heavy metals in the sediment. The results showed that all elements, except Mn, are depleted in the exchangeable and carbonate fractions. However, heavy metal concentrations are much higher in the Fe-Mn oxide and organic matter fractions, especially for Cu, indicating enrichment in the organic matter fraction. Furthermore, contamination parameters (contamination factor and geoaccumulation index) indicate that Mn contamination is high, primarily derived from anthropogenic sources, presenting a potential risk to ecosystems in the Nakdong River.
어류 양식장 퇴적물 중 유기물과 중금속의 오염상태를 파악하기 위하여 통영-거제 연안 어류 양식장 퇴적물 중 총유기탄소 (TOC), 총질소(TN), 중금속(As, Cd, Cr, Cu, Fe, Hg, Mn, Pb, Zn)을 조사하였다. 양식장 퇴적물 중 TOC와 TN의 평균농도는 각각 22.7 mg/g과 3.4 mg/g로 남해안의 반폐쇄적인 내만보다 높았다. 퇴적물 중 중금속의 평균농도는 비소(As) 10.5 mg/kg, 카드뮴(Cd) 0.37 mg/kg, 크롬(Cr) 82.9 mg/kg, 구리(Cu) 127 mg/kg, 철(Fe) 4.19 %, 수은(Hg) 0.041 mg/kg, 망간(Mn) 596 mg/kg, 납(Pb) 39.5 mg/kg, 아연(Zn) 175 mg/kg였으며, 이중 Cd, Cu의 농도는 인접한 남동해 연안의 패류양식해역보다 3배 이상 높았다. 퇴적물 기준을 이용한 오염평가 결과, 대부분의 어류 양식장에서 TOC와 중금속 중 Cu 농도가 기준을 초과하는 것으로 나타났다. 또한, 전체 중금속 농도를 고려한 오염부하량지수(PLI)와 생태계위해 도지수(ERI) 결과는 일부 어류 양식장 퇴적물이 저서생물에 극심한 부정적인 생태 영향을 줄 수 있는 상태(disastrous risk)인 것으로 파악되었다. 따라서, 어류 양식장 퇴적물은 유기물 및 일부 중금속에 의한 오염된 상태를 보이고 있어, 양식장 퇴적환경을 개선하고 퇴적물내 유기물 및 중금속의 주된 오염원을 파악하는 한편 오염부하량을 저감하는 종합적인 관리대책이 필요하다.
Aluminum (Al) is one of the most widely applied metals in various industries. Anthropogenic activities of industrial waste result in increased accumulation of Al in natural water resources and aqueous organisms, leading to increased heavy metal pollution in the environment. This will ultimately associate with health risks to all living beings including humans. The present study addresses the possible toxic effects of Al on the motility and regeneration of planarians, using Dugesia japonica as the experimental animal model. Planarians were exposed to varying concentrations of Al (50–1,200 mg/L) for 1 hr, and subsequently evaluated for their motility, seizure-like behaviors, regeneration and alterations of the cell-organelles in their body. Results of the study exhibit that increasing Al concentrations lead to decreased motility and increased seizure-like behaviors, especially the c-type and head bob behaviors in planarians (p<0.05). The regeneration ability in the tail segments was reduced by increased Al concentrations, and the eyespot and optic nerves were more clearly observed in the control groups than planarians exposed to Al. Organelle analysis revealed morphological abnormalities in the mitochondria, golgi apparatus, endoplasmic reticulum, and cilia in the head region of planarians, as compared to the control groups. Taken together, our results indicate that exposure to Al alters the behavior of planarians and delays the regeneration of amputated body parts. Therefore, we suggest that Al exposure adversely can affect the lives of aquatic organisms, and induce toxicity such as cell abnormalities in animals.
Lead (Pb) is a major heavy metal that augments environmental pollution and is a health risk to living organisms. This study was performed to investigate the effect of lead on characteristics of planarian, Dugesia japonica. Briefly, planarians were cultivated in water containing different concentrations (0–400 mg/L) of Pb, and incubated for varying durations (1, 3, and 5 hr). After termination of the incubation time, motility and seizure-like behaviors (c-like, head-bop, snake-like, and screw-like) of the planarians were counted in fresh water. Results showed that increasing Pb concentration and time resulted in decreased motility of the planarians (p<0.05). Increasing concentrations of Pb also resulted in significant increase in the seizure-like behavioral patterns, in particular the c-like and head-bop behaviors. In order to examine eye regeneration, the head region was cut, and rest of the body was incubated in water in the absence or presence of Pb, until emergence of the eye extrusion. Formation of eye spots was initiated in amputated fragments of the control group (without Pb) on day 4 after incubation, whereas appearance of the eye spots was delayed in planarian exposed to 200 mg/L Pb. Moreover, immunohistochemistry revealed that formation of the optic nerve was delayed in planarians exposed to Pb. Thus, our studies determined that planarians exposed to high concentrations of Pb resulted in decreasing motility and induction of seizure-like behaviors, as well as delayed eye regeneration. Results of the current study therefore validate that exposure to lead has a negative effect on the lifespan of aquatic organisms and can cause disturbance of the nervous system in animals, thereby implying the possibility of threatening health.
The content of harmful materials was investigated for coffee beans sold in Daejeon. Total 79 samples were analysed and 213 residual pesticides and 2 heavy metals were analysed simultaneously by GC-MS/MS, GC-NPD, GC-ECD, LC-MS/MS and ICP-MS. The instrumental method was validated with limit of detection (LOD), limit of quantification (LOQ), the linearity of standard curves. LOD of the residual pesticides was between 0.0003 to 0.0021 mg/kg, LOQ of the residual pesticides was between 0.0008 to 0.0064 mg/kg. LOD of the heavy metals was between 0.0077 to 0.0079 μg/kg, LOQ of the heavy metals was between 0.0233 to 0.0239 μg/kg. The linearity correlation coefficient for the calibration curve was between 0.9929 to 0.9999 and the recovery rate was between 95.4% to 106.1%. According to the monitoring of residual pesticides and heavy metals, no pesticide was detected in all coffee bean samples. 88.6% (70 samples) of analysed total 79 coffee beans contained at least 1 heavy metal but there was no sample which exceeded the maximum residual limit. Risk assessment was also carried out based on the content of heavy metals detected in coffee beans. The carcinogenic risk assessment to heavy metals showed that all cancer-risk (CR) values were below 10–6 and it meant that the CR due to heavy metals intake was evaluated as safe. The non-carcinogenic risk assessment to heavy metals showed that all hazard index (HI) were below 1, which was considered acceptable at the current level of exposure. The %PTWI values of lead and cadmium for 55 roasted coffee bean samples were 0.09% and 0.04% respectively, compared with the reference values. This results indicate that there is almost no health risk from heavy metal intake through the consumption of coffee beans in circulation in Daejeon.
This study was undertaken to evaluate the toxic effect of cadmium sulfate (Cds) on planarians (Dugesia japonica), and the suitability of planarians as an alternative animal model for toxicity studies. Planarians were exposed to varying concentrations of experimental solutions containing 0.1–25 mg/L Cds, and incubated for 1, 3, and 5 hrs. Motility, seizure-like behaviors (c-like, head-bop, snake-like, and screw-like) and regeneration ability of the amputated fragment were subsequently evaluated. Results showed decreased motility with increasing concentrations of Cds (p<0.05), with the lowest motility being observed at the highest concentration of 25 mg/L Cds. Results also indicate that seizure-like behavior patterns were significantly affected by increments in the Cds concentrations, especially the c-like and head-bop behaviors were notably increased. Compared to the control, the regeneration ability of the planarians was decreased in the experimental solutions containing Cds. Planarians exposed to Cds showed either delayed eye formation or no eye regeneration during incubation. Moreover, increased concentrations of Cds resulted in failure to regenerate and death of the planarians. In conclusion, this study confirm that the heavy metal Cds exerts a toxic effect on planarians. Furthermore, the performances of the planarians in the experimental period exhibit their suitability as an alternative animal model for toxicity studies.
본 연구는 현재 유통 중인 다이어트 제품 62건에 대한 부정유해물질의 실태조사를 위하여 비만치료제 및 그 유사물질 6종(오르리스타트, 시부트라민, 데스메틸시부트라민, 디데스메틸시부트라민, 클로로시부트라민, 클로로시펜트라민)과 중금속(납, 카드뮴, 비소) 함량을 조사하였다. 연구결과, 다이어트 제품 62건에 대하여 비만치료제 및 그 유사물질 6종은 검출되지 않았다. 중금속은 납, 카드뮴, 비소 각각 다류의 경우 ND-0.177 mg/kg, 0.002-0.233 mg/kg, 0.001-0.188 mg/kg, 캔디류의 경우 ND-0.370 mg/kg, 0.003- 0.057 mg/kg, 0.007-0.120 mg/kg, 체중조절용조제식품의 경우 ND-0.055 mg/kg, 0.012-0.045 mg/kg, 0.010-0.163 mg/ kg의 함량을 나타냈다. 기준 규격이 설정되어있지 않은 기타가공식품의 경우 납, 카드뮴, 비소 각각 ND-2.324 mg/ kg, 0.004-0.936 mg/kg, 0.003-21.247 mg/kg의 함량을 보였으며, 비소의 경우 2건이 PTWI 기준치 이상의 수치를 보였다. 결과적으로 식품군의 안전관리를 위하여 향후 기준 규격이 없는 기타가공식품 유형에 대한 적절한 기준 설정이 필요할 것으로 사료된다.
This study conducted a survey on environmental awareness and analyzed outdoor PM10 and heavy metals (cadmium, lead) for 60 local residents living in the Gwangyang national industrial complex from July 2019. 40.0% of subjects responded that local environmental pollution was serious. Especially, there was a high proportion of residents living near the industrial complex or roads where it was perceived that local environmental pollution was serious. The average concentration of PM10 in the outdoors of the houses was 10.95 μg/m3 and the average concentration of heavy metals in PM10 was 1.90 ng/m3 for Cd and 24.92 ng/m3 for Pb. Overall, the average concentration of PM10 and heavy metals revealed a tendency to be high in the houses located near the industrial complex or the roads. As a result of a risk assessment carried out, the cancer risk of Cd was estimated to exceed 106 in the CTE, RME and Monte Carlo analysis. These results suggest that the urgent implementation of specific environmental health education for local residents is necessary.
In this work, α-Fe2O3 nanocrystals are synthesized by co-precipitation method and used as adsorbent to remove Cr6+, Cd2+, and Pb2+ from wastewater at room temperature. The prepared sample is evaluated by XRD, BET surface area, and FESEM for structural and morphological characteristics. XRD patterns confirm the formation of a pure hematite structure of average particle size of ~ 40 nm, which is further supported by the FESEM images of the nanocrystals. The nanocrystals are found to have BET specific surface area of ~ 39.18 m2 g−1. Adsorption experiments are carried out for the different values of pH of the solutions, contact time, and initial concentration of metal ions. High efficiency Cr6+, Cd2+, and Pb2+ removal occur at pH 3, 7, and 5.5, respectively. Equilibrium study reveals that the heavy metal ion adsorption of the α-Fe2O3 nanocrystals followed Langmuir and Freundlich isotherm models. The Cr6+, Cd2+, and Pb2+ adsorption equilibrium data are best fitted to the Langmuir model. The maximum adsorption capacities of α-Fe2O3 nanocrystals related to Cr6+, Cd2+, and Pb2+ are found to be 15.15, 11.63, and 20 mg g−1, respectively. These results clearly suggest that the synthesized α-Fe2O3 nanocrystals can be considered as potential nano-adsorbents for future environmental and health related applications.