環境資源報告成果查詢系統

飲用水水質保護區土壤及地下水基線調查計畫

中文摘要 本計畫主要目的係為建立我國飲用水水質保護區土壤及地下水基線背景濃度,並評估其農作使用區土壤品質概況,同時探討汞之乾濕沉降對土壤品質影響與土壤重金屬生物可及性程度,以作為訂定土壤及地下水污染管制標準或其它行政管理作為介入值之參考依據。本計畫執行成果說明如下: 1.以97組土壤母質來源(岩石及河川沉積物)及901組土壤樣品重金屬濃度調查結果為統計母體資料,參照國外土壤及地下水自然背景濃度統計分析方式,計算我國飲用水水質保護區土壤重金屬自然背景濃度值,並提出土壤重金屬自然背景濃度建議上限值為砷:30 mg/kg;汞:1 mg/kg;鎘:0.5 mg/kg;鉻:100 mg/kg;銅:75 mg/kg;鎳:55 mg/kg;鉛:65 mg/kg;鋅:200 mg/kg。 2.飲用水水源水質保護區內農作使用區域土壤品質現況調查結果顯示,長期農業耕作行為已對水源保護區土壤品質造成影響。 3.石門水庫測站104年11月至105年8月之大氣汞物種自動連續監測結果顯示,氣態元素汞、粒狀結合汞及氣態反應性汞平均濃度分別為2.15 ng/m3、9.09 pg/m3及2.60 pg/m3,皆位於大氣汞背景值範圍內。石門水庫測站104年8月至105年7月之42組溼沉降樣品汞濃度範圍為3.50~75.3 ng/L,權重平均濃度11.7 ng/L,相較於其他國家雨水汞調查資料,並無明顯偏高現象,年乾濕沉降量分別為7.01 µg/m2及32.5 µg/m2。40組表層土壤樣品總汞及甲基汞濃度分別為0.038~0.445 mg/kg及0.049~7.939 µg/kg,估算汞之甲基化比例約為0.04~1.78%。依據前述調查結果,可推估大氣汞乾濕沉降貢獻量約佔土壤中總汞濃度的0.88~7.90%。 4.以簡化生物可及性萃取法(SBET)評估50組土壤重金屬生物可及性程度,可發現汞、鉻之生物可及性濃度及其比例均偏低,且人為污染土壤中重金屬生物可及性濃度及比例相對高於自然背景土壤。 5.辦理25口地下水井水質調查,部分檢測項目有超過監測標準之情形,如總硬度、總溶解固體物、氯鹽、氨氮、硫酸鹽、鐵及錳,研判可能與地下水井周邊土地利用情形及其地層分布有關。
中文關鍵字 土壤及地下水背景濃度、汞乾溼沉降、生物可及性

基本資訊

專案計畫編號 EPA-104-GA02-03-A033 經費年度 104 計畫經費 28800 千元
專案開始日期 2015/03/31 專案結束日期 2016/09/30 專案主持人 賴允傑
主辦單位 土污基管會 承辦人 吳幽瑩 執行單位 瑞昶科技股份有限公司

成果下載

類型 檔名 檔案大小 說明
期末報告 期末報告_公開版.pdf 41MB

Soil and Groundwater Baseline Investigation of Drinking Water Source Quality Protection Area.

英文摘要 The project aims at establishing the baseline concentration of soil and groundwater in the drinking water source quality protection area (DWPA) and evaluating the soil quality for agricultural usage. In addition, in order to evaluate the increasing quantity of atmospheric depositing in soil, the project investigated concentrations of mercury in atmosphere, precipitation, and soil. On the other hand, the project used Simplified Bioaccessibility Extraction Test (SBET) to evaluate the bioaccessibility of heavy metal in soil. Finally, the collected data will be applied to the reference of the standard concentrations for contaminated soil and groundwater or other related management. The details of the performance are as follows: 1.In order to calculate the background value of heavy metal concentration in the soil from DWPA, the project investigated concentrations of heavy metal in 97 parent rock and 901 soil samples from DWPA. In accordance with the results of above-mentioned investigations as well as current regulations and using the calculation method abroad, we proposed the suggested upper limit for heavy metal background concentration such as As: 30 mg/kg; Hg: 1 mg/kg; Cd: 0.4 mg/kg; Cr: 100 mg/kg; Cu: 75 mg/kg; Ni: 55 mg/kg; Pb: 65 mg/kg; Zn: 200 mg/kg. 2.The project collected 106 soil samples from farmland in the DWPA, which investigated concentrations of heavy metal and pesticide. The results indicate that the heavy metal and pesticide concentration of some soil samples were higher than natural background soils, which means the long-term agricultural behaviours have influenced the soil quality in the DWPA. 3.The auto-monitoring of atmospheric mercury results from Shimen Reservoir collected from November 2015 through August 2016 exhibited that the average values of gaseous elemental mercury (GEM) was 2.15 ng/m3; particulate-bound mercury (PHg2.5) was 9.09 pg/m3; reactive gaseous mercury (RGM) was 2.60 pg/m3, which were all in the range of the atmospheric mercury background value. Additionally, the average mercury concentration of 42 precipitation samples collected in Shimen Reservoir from August 2015 through July 2016 ranged from 3.50 to 75.3 ng/L, and weighted-average concentration was 11.7 ng/L. Those values are not significantly higher than the mercury survey in other countries. Also, annual dry and wet atmospheric depositions were found 7.01 µg/m2 and 32.5 µg/m2. The project investigated concentrations of total mercury and methyl mercury in 40 surface soil samples from the DWPA. Total mercury concentration ranged from 0.038 to 0.445 mg/kg and methylmercury concentration ranged from 0.049 to 7.939 µg/kg, so we could evaluate the methylation rate of mercury in soils ranged from 0.04 to 1.78%. In accordance with the results of above-mentioned investigations, annual wet and dry atmospheric deposition contributed 0.88~7.90% to total mercury flux to the surface soil. 4.This project used SBET to evaluate the bioaccessibility of heavy metal in 50 soil samples. Lower bioaccessibility concentrations and the ratio of Hg and Cr were found among these items; furthermore, the bioaccessibility of As, Cd, Cu, Ni, Pb, and Zn in contaminated soils were higher than natural background soils. 5.This project surveyed 25 groundwater samples in total and found some items exceeding the groundwater monitoring standard values such as total hardness, total dissolved solids, chloride, ammonia nitrogen, sulfate, Fe, and Mn. The results could be related to the usage of surroundings and the distribution of the stratums.
英文關鍵字 Soil and groundwater background concentration, Wet and dry deposition of mercury, Bioaccessibility