• Title/Summary/Keyword: 토양 산성화

Search Result 115, Processing Time 0.036 seconds

Comparison of Soil Physicochemical Properties According to the Sensitivity of Forest Soil to Acidification in the Republic of Korea (우리나라 산림토양의 산성화 민감도평가와 그에 따른 토양 이화학적 특성 비교분석)

  • Lee, Ah Lim;Koo, Namin
    • Journal of Korean Society of Forest Science
    • /
    • v.109 no.2
    • /
    • pp.157-168
    • /
    • 2020
  • The sensitivity of forest soil to acidification in the Republic of Korea (ROK) was evaluated based on pHH2O, cation exchange capacity (CEC), and base saturation (BS). Sensitivity to acidification was categorized into three grades: adequate level (AL, pH ≧ 4.2, CEC ≧ 15cmol/kg, BS ≧ 15%), caution level (CL, at least one indicator is below AL), and severe Level (SL, all three indicators are below AL). Soil samples were collected from the 65 stationary monitoring plots (40 × 40 ㎢), distributed throughout ROK. Only 19% of soil samples were classified as AL, while 66% and 15% were CL and SL, respectively. The median of pHH2O, CEC, BS, and Ca/Al indicator in AL soils was pH 4.64, 20.7cmol/kg, 29%, and 6.3, respectively. Moreover, BCex (K+, Mg2+, Ca2+) and available phosphorus (AP) concentration compared with a threshold value and molar ratio of BCex and AP to total nitrogen (TN) was high. This indicates that AL soils have a good nutrient condition. The molar Ca/Al ratio, an indicator for toxicity of exchangeable aluminum (Alex), was more than 1, indicating no negative impact of Alex on plant growth. On the contrary, the median of pHH2O, CEC, and BS in SL soils was pH 4.02, 13.2cmol/kg, and 10%, respectively. The Ca/Al index was less than 0.6, which indicates that negative impacts of Alex on plants were high. Furthermore, both the concentration of BCex in SL soils and the BCex/TN ratio were the lowest among the three acidity degrees. This shows that SLsoils can be degraded by soil acidification compared with less acidic soils.

대기유래 유황이 농경지 토양에 미치는 영향 스코트랜드와 U.K의 사례

  • Langan S;Edwards T;Bain D;Wilson M.J
    • Proceedings of the Mineralogical Society of Korea Conference
    • /
    • 1996.10a
    • /
    • pp.81-89
    • /
    • 1996
  • 영국을 비롯한 유럽의 많은 농경지에서는 대기 중으로 아황산가스의 방출량 감소로 유황의 천연공급이 적어짐에 따라 일부 농작물의 수량 감소로 이어졌다. 반대로 자연식생하의 토양에서는 이같은 산성물질의 강하로 산성화가 진행되고 있다. 산성화의 범위와 정도를 규명하기 위하여 산성 물질의 임계부하량 연구를 추진하게 되었다. 이 결과 스코틀랜드의 많은 지역의 토양이 부하량 이상으로 산성물질이 강하되어 식물 및 생태계생존과 다양성을 위협하는 것으로 나타났다.

  • PDF

Assessment of the Soil Quality of Chonan City using Soil Pollution Index (토양오염지표에 의한 천안시 토양환경 평가)

  • 장인성;정창모;임계규
    • Journal of Korea Soil Environment Society
    • /
    • v.4 no.2
    • /
    • pp.185-192
    • /
    • 1999
  • To assess the soil quality of Chonan City, soil analyses were conducted according to the 14 different sampling sites. The soil pH of the agricultural area near the expressway was lower than that of the other farming area, which indicated that this acidification was probably attributed to the acid rain caused by the traffic exhaust gas such as SOx and NOx. Acidification was more severe in the dry farming area than in the rice paddy area. All concentration of 6 different heavy metals (As, Cu, Cd, $Cr^{6+}$, Hg, Pb) and organic contaminants (cyanide, organic-p, PCBs, phenols) were found to be lower than the standard of soil pollution. The concentration of BTEX also lower than the standard of soil pollution. An assessment using the SPI (Soil Pollution Index). which was developed to estimate an overall soil quality, was performed. Each SPC (Soil Pollution Score) were evaluated with the results of the data from this study. The soil quality of most area of Chonan City was determined to Class 1 , which indicated that the soil was healthy.

  • PDF

pH Changes in the Rhizosphere Soil of Pokeberry (미국자리공의 근권 토양산성도의 변화)

  • 박용목;박범진;최기룡
    • The Korean Journal of Ecology
    • /
    • v.22 no.1
    • /
    • pp.7-11
    • /
    • 1999
  • The measurement of pH in the rhizosphere soil was conducted to clarify whether the growth of pokeberry plants affect the acidity of rhizosphere soil in two environmentally contrasting area Ulsan and Chongju city. The rhizosphere pH between 5.25 and 5.33 was shown in the pokeberry stand at Mt. Boomo located at Chongju. The rhizosphere pH of pokeberry stands at Mt. Bongdae, Mt. Sinsun and Mt. Totchil was below 5.0, and did not differ with depth and distance from the main axis of root. At Mt. Bongdae, however, the pH in the rhizosphere soil was significantly changed with soil depths though that was not changed horizontally. The rhizosphere pH at top soil was lower than that at subsoil, which indicates the fact that soil acidification at Mt. Bongdae was not caused by pokeberry plants. Furthermore, the rhizosphere pH did not change with the growth of pokeberry plants. These results indicate that the hypothesis that pokeberry plants acidify local soil environment should be reconsidered.

  • PDF

The Effects of Reactive Nitrogen (Nr) Compounds on the Acidification in Soil and Water Environment Ecosystems and the Mitigation Strategy (반응성 질소화합물로 인한 토양 및 물 환경 생태계의 산성화 영향 및 대응방안)

  • Cho, Youngil;Kang, Hyesoon;Jeon, Eui-Chan
    • Korean Journal of Ecology and Environment
    • /
    • v.49 no.1
    • /
    • pp.1-10
    • /
    • 2016
  • The increases of industrial and technological development and human activities have disturbed the balance of natural nitrogen (N) circulation. These phenomena have induced that large amounts of N are to be present in excess in air, soil and water environment. We investigated the effects of excess of reactive nitrogen ($N_r$) compounds on soil and water environment ecosystems through literature and case studies, and suggested the strategy of mitigating the acidification in soil and water ecosystems. $N_r$ moves to air, soil and water media, can be converted to different types, and interacts with other chemical compounds. As an efficient N management plan, the evaluation (application of monitoring and safety index) and the chemical restoration (research and development) of the acidification in soil and water environment ecosystems are required to minimize the effects of $N_r$ as well as policies to regulate the various emission sources and amounts of $N_r$.

Effects of Soil pH on the Growth and Antioxidant System in French Marigold (Tagetes patula L.) (토양 pH가 만수국(Tagetes patula L.)의 생육 및 항산화 작용에 미치는 영향)

  • Kim, Jeung-Bea;Cho, Hyun-Je;Kim, Hak-Yoon
    • Korean Journal of Plant Resources
    • /
    • v.20 no.4
    • /
    • pp.348-352
    • /
    • 2007
  • To investigate the effects of soil pH on plants, the seedlings of french marigold (Tagetes patula L.) was transplanted into the soils acidified with $H_{2}SO_{4}$ solutions (pH 5.3, 4.5, 3.9, 3.5). The level of malondialdehyde was significantly increased by soil acidification. As the pH levels decreased from 5.3 to 3.5, the contents of dehydroascorbate and oxidized glutathione of the plant were significantly increased. The antioxidative enzyme activities of the plant affected by soil acidification were increased as the pH decreased.

Soil Acidification and Soil Buffer Capacity Change in Urban Forests of Seoul Area (서울지역(地域) 도시림(都市林) 토양(土壤)의 산성화(酸性化)와 완충능력(緩衝能力) 변화(變化))

  • Kim, Dong Yeob;Hwang, In Chan
    • Journal of Korean Society of Forest Science
    • /
    • v.87 no.2
    • /
    • pp.188-193
    • /
    • 1998
  • Soil pH change is an important factor which determines soil chemical properties. It is an indicator of the effect of urban environmental pollution on soils and plant growth. The objective of this study was to assess the effect of air pollution on the soil of Seoul urban forests during the course of the air pollution being dipersed toward suburb area. Study sites were divided into four sections of concentric circles with 5km interval. Soil samples were collected from A and B horizons in the urban forests, and analyzed for soil pH, soil buffer capacity, cation exchange capacity, and base saturation. Soil pH ranged from 3.96 to 5.08 for A horizon and from 4.10 to 5.25 for B horizon, which were not significantly different among the sections. However, there was a trend of soil pH lowered at the sections close to the urban center. Soil buffer capacity was lower at 0-5km and 5-10km sections compared to that at the outer sections. Cation exchange capacity and base saturation were not different significantly among the sections. Following the pattern of air pollutants being dispersed from urban center to suburb, soil acidification was observed at the urban forests in Seoul area. Low level of soil buffer capacity toward the urban center was an indicator of soil acidification at the urban forests.

  • PDF