黃富美,「重金屬污染土壤對作物生長與根圈土壤低分子量有機酸之影響」,碩士論文,國立中興大學生命科學院碩士,臺中(2002)。李澤鳴,「重金屬污染農地之整治方案研擬-應用能值分析評估鎘污染農地整治方案」,碩士論文,國立中興大學資源管理研究所,台中(1996)
郭書吟,「以雜草吸收受污染土壤中重金屬之探討」,碩士論文,朝陽科技大學生物技術研究所,臺中(2006)。翁序伯,「重金屬污染農地淋洗處理及其土壤性質改變之研究」,碩士論文,國立中興大學環境工程研究所,台中(2005)。葉琮裕,「重金屬污染農地整治」,土壤污染整治,第八十四期,第184-191頁(2002)。
歐陽嶠暉,「工業廢水及土壤污染防治的回顧」,土壤污染整治,第一百期,第27-35頁(2006)。
陳建宏,「102 年河川水庫底泥污染傳輸模式應用及研析計畫」EPA-102-GA11-03-A115,土污基管會(2014)。
賴盈瑋,「草地生態系統負遇過成之生物資源研究」,碩士論文,國立雲林科技大學,雲林(2004)凌彗紋,「以生物淋溶法處理受重金屬污染之河川底泥過程中底泥物化因子的變化」,碩士論文,嘉南藥理科技大學環境工程與科學系,台南,(2004)。林澤佑,「底泥添加黃酸對灌溉水體及底泥重金屬有效性影響之研究」,碩士論文,朝陽科技大學環境工程與管理系研究所,台中(2013)。邱明浩,「灌溉水質對農地重金屬汙染及水稻重金屬含量之影響」,碩士論文,朝陽科技大學環境工程與管理系研究所,台中(2008)。初建,「台灣數種污染土類土壤之重金屬型態及其釋放趨勢」,碩士論文,國立中興大學環境工程研究所,台中(2005)。初建、王敏昭,「重金屬於其污染土壤之固相型態」,中國農業化學會誌,臺北,第三十七卷,第1期,第32-41頁(1999)。汪玉娟,「北將底泥中重金屬行太及二次污染的研究」,碩士論文,廣東攻葉大學,廣東(2009)。
林逸彬,「底泥整治評估技術與對策支援」EPA-102-GA11-03-A297,土污基管會(2014)。
蕭鵬飛、李法雲、傅寶榮、王效舉,「土壤重金屬污染及植物修復研究」,遼寧大學學報自然科學版,第31卷,第3期,第279-283頁,遼寧(2004)。
顧繼光、周啟星、王新,「土壤重金屬污染的治理途徑及其研究進展」,應用基礎與光電科學學報,北京,第11卷,第2期,第143-151頁(2003)。
行政院農業委員會,「灌溉水水質標準」農林字第0920031524號(2003)。
行政院環境保護署, 「底泥品質指標之分類管理及用途限制辦法」(2012)。
行政院環保署,「土壤污染管制標準」土字第 1000008495 (2001)。
行政院環保署,「土壤污染監測標準」土字第 1000008485 (2001)。
行政院環保署,「農地土壤重金屬調查與廠址列管計畫」。
中華民國衛生福利部,「食米重金屬限量標準」食字第1021350146(2013)。
國立編譯館「環境科學大辭典」文景出版社(2002)。
Alloway,B.J,. “Soil processes and the behaviour of heavy metals, Heavy metals in soils,ˮ John Wiley and Sons, New yORK, PP. 11-35(1995)。
Alina Kabata-Pendias “Soil–plant transfer of trace elements—an environmental issueˮ Geoderma, Volume 122, Issues 2–4, Pages 143–149(2004).
Abul Kashem, Bal Ram Singh, Shigenao Kawai., “Mobility and distribution of cadmium, nickel and zinc in contamiated soil profiles form Bangladeshˮ,Nutr. Cycl. Agroecosyst., 77 (2007), pp. 187–198( 2007).
Ahumada, J. Mendozaa, E. Navarretea , L. Ascara “Sequential extration of heavy metals in soils irrigated with wastewaterˮCommun. Soil Sci. Plant, 30 (1999), pp. 1507–1519(1999).
Antoniadis, V., Robinson, J.S., Alloway, B.J., 2008. Effects of short-term pH fluctuations on cadmium, nickel, lead, and zinc availability to ryegrass in a sewage sludge-amended field. Chemosphere 71, 759–764.
Connolly, J P., “The effect of sediment suspension on adsorption and fate ofkepone ,Uniˮ . Texes in Austin, thesis of doctor. (1980).
Di Toro, D. M., Mahony, Hansen, D. J.,& Berry, W. J. 1996. A model ofthe oxidation ofiron and cadmium sulfide in sediments . Environmentα1 Toxicology and Chemistry,15(12),2168-2186 .
Du Laing, G., Rinklebe, J., Vandecasteele, B., Meers, E., Tack, F.M.G., 2009. Heavy metal mobility and availability in estuarine and riverine floodplain soils and sediments: a review. Sci. Total Environ. 407,3972–3985. Duarte, B., Delgado, M. and Cacador, I.,2007. The role of citric acid in cadmium and nickel uptake and translocation, in Halimione portulacoides, Chemosphere, 69, 836-840.
Hang Zhou, Xin Zhou, Min Zeng, Bo-Han Liao, , Li Liu,Wen-Tao Yang,Yan-Ming Wu, Qiong-Yao Qiu, Ying-Jie Wang “Effects of combined amendments on heavy metal accumulation in rice (Oryza sativa L.) planted on contaminated paddy soilˮ,Ecotoxicology and Environmental Safety, Volume 101, March 2014, Pages 226–232(2014).
Kashem, M.A., Singh, B.R., 2001. Metal availability in contaminated soils: I. Effects of flooding and organic matter on changes in Eh, pH and solubility of Cd, Ni and Zn. Nutr. Cycl. Agroecosys. 61, 247–255.
Mühlbachová, G., Simon, T., Pechová, M., 2005. The availability of Cd, Pb and Zn and their relationships with soil pH and microbial biomass in soils amended by natural clinoptilolite. Plant Soil Environ. 51, 26–33.
Salazar MJ, Rodriguez JH, Leonardo Nieto G, Pignata ML..“Effects of heavy metal concentrations (Cd, Zn and Pb) in agricultural soils near different emission sources on quality, accumulation and food safety in soybean [Glycine max (L.) Merrill] ˮ Journal of Hazardous MaterialsVolumes 233-234, Pages 244–253(2012).
Tsai LJ1, Yu KC, Chen SF, Kung PY, Chang CY, Lin CH. “Partitioning variation of heavy metals in contaminated river sediment via bioleaching: effect of sulfur added to total solids ratioˮWater. Res., 37,pp. 4623–4630 ( 2003)
Tao Fang, Xiangdong Lia, Gan Zhang“Acid volatile sulfide and simultaneously extracted metals in the sediment cores of the Pearl River Estuary, South Chinaˮ,Ecotoxicology and Environmental Safety 61,420–431 (2005) 。
Usman, A.R.A., Kuzyakov, Y., Stahr, K., 2008. Sorption, Desorption, and Immobilization of Heavy Metals by Artificial Soil. Master thesis, University of Hohenhiem, Stuttgart.
The U. S. Department of Agricuulture,. Soil Quality Indicators: pH (1998)
Yin, Y. J., Impellitteri, C. A., You, S. J., & Allen, H. E. 2002. The importance of organic matter distribution and extract soil : solution ratio on the desorption of heavy metals from soils. Science of the Total Environment, 287(1-2), 107–119.
Zhao, K.L., Liu, X.M., Xu, J.M., Selim, H.M., 2010. Heavy metal contaminations in a soil-rice system: identification of spatial dependence in relation to soil properties of paddy fields. J. Hazard. Mater. 181, 778–787.