Gang Yao (2004), Peanut Production And Utilization In The People,s Republic Of China, Report No.4 For Peanut In Local And Global Food Systerms, University Of Georgia.


98. Đỗ Thị Xô, Nguyễn Văn Đại, Phạm Văn Thao và Vi Văn Nam (1995), “Sử dụng hợp lý sản phẩm phụ nông nghiệp nhằm tăng năng suất cây trồng và ổn định độ phì nhiêu của đất bạc màu”, Kết quả nghiên cứu khoa học, Viện Thổ Nhưỡng Nông Hóa, Quyển I, NXB Nông Nghiệp, Hà Nội, tr. 98-108.


TIẾNG ANH

99. A.Ramakrishna, Hoang Minh Tam, Suhas P. Wani, Tran Dinh Long (2006), “Effect of mulch on soil temperature, moisture, weed infestation and yield of groundnut in northern Vietnam”, Field Crops Research,Volume 95, Issues 2–3, pp. 115-125.

100. Ajay B.C (2006), Evaluation of groundnut varieties for confectionery traits and selection of donor for their improvement, University of Agricultural Sciences Dharwad.

101. Asiwe, J. A. N and Kutu R. F (2007), Effect of plant spacing on yield, weeds, insect infestation and leaf blight of bambara groundnut (Vigna subterranean) (L.) Verdc.), African Crop conference Proceedings, Vol. 8, pp. 1947-1950.

102. A.T.M. Morshed Alam, Md. Abdur Rahman Sarker, Md. Abul Hossain, Md. Mahbubul Islam, Md. Samiul Haque anh M. Hussain (2002), “Yield and quality of groundnut (Arachis hypogaea L.) as affected by hill density and number of plants per hill”, Pakistan Jounal of Agronomy 1(2-3), pp. 74-76.

103. Chang Hwan Park (1996), “The status of technologies used to achieve high groundnut yields in Korea”, Workshop of Achieving High Groundnut Yields, ICRISAT, pp. 51-63.

104. Chen Jian-hong, Chen Yong-shui, Zhuang Ming-chuan (2003), “A Study on the Characteristics of Growth and Development for Spring Peanut with Film Mulching Cultivation in Fujian”, Peanut Science and Technology, Quanzhou Institute of Agricultural Sciences, Jinjiang 362212, China.

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105. Chen Ming-zhou, Huang Yao-zhu, Yang You-jun, Pan Dong-ying (2008), “Studies on preventing and killing weeds in peanut fields by herbicidal plastic film”, Guangdong Agricultural Sciences, Sugarcane Industry Research Institute, Guangzhou 510316, China.


Nghiên cứu biện pháp kỹ thuật nhằm tăng năng suất và hiệu quả sản xuất lạc Arachis hypogaea L. trên đất cát biển tỉnh Quảng Bình - 21

106. Chuan Tang Wang, Xiu Zhen Wang, Yue Yi Tang, Dian Xu Chen, Feng Gao Cui, Jian Cheng Zhang, Shan Liu Yu (2009), “Field screening of groundnut genotypes for risistance to bacterial wilt in Shandong province in China”, SAT ejournal, ejournal.icrisat.org.

107. Din Naeem Ud, Mahmood Abid, Gul Sanat Shah Khattak, Iqbal Saeed, Muhammad Fida Hassan (2009), “High yielding groundnut (Arachis hypogaea L.) variety Golden”, Pakistan Journal Bot., 41(5), pp. 2217-2222.

108. Duan Shufen (1998), Groundnut in China a success-story, Asian-facific, Association of Agricultural Research Institute, Bangkok.

109. Food and Agriculture Organization of the United Nations (2012). http://faostat.fao.org/

110. Gang Yao (2004), Peanut production and utilization in the people,s republic of China, Report No.4 for Peanut in Local and Global Food Systerms, University of Georgia.

111. Giller, K.E., E. Witter, and S.P. McGrath. 1998. “Toxicity of heavy metals to microorganisms and microbial processes in agricultural soils”, A review. Soil Biol. Biochem, 30, pp. 1389-1414.

112. Gobarah M.E, Mohamed M.H, Tawfik M.M (2006), “Effect of phosphorus fertilizer and foliar spraying with zine on growth, yield and quality of groundnut under reclaimed sandy soils”, Journal of Applied Science Research, 2(8), pp. 491-496.

113. Gohari A.A, Niyaki S.A.N (2010), “ Effects of iron an nitrogen fertilizer on yield and yield components of peanut (Arachis hypogaea L.) in Astaneh Ashrafiyeh, Iran”, American-Eurasian Journal Agric. and Environ. Science, 9(3), pp. 256-262.

114. Golakiya B (1998), Potassium fertilization of groundnut in Saurashtra region - India, College of Agriculture, Junagadh, India.

115. Gorbet Dan (2003), “Peanut”, New plants for Florida, University of Florida, Florida.

116. Holbrook C.C, Stalker H. Thomas (2003), “Peanut breeding and genetic resources”, Plant breeding reviews, American, vol 22.

117. Hossain M.A, Hamid A (2007), “Influence of N and P fertilizer application on root growth, leaf photosynthesis and yield performance of groundnut”, Bangladesh Journal Agricultural Research, 32(3), pp. 369-374.


118. Ibrahim S.A, Eleiwa M.E (2008), “Response of groundnut (Arachis hypogaea L.) plant to foliar feeding with some organic manure extracts under different levels of NPK fertilizers”, World Journal of Agricultural Sciences, 4(2), pp. 140-148.

119. ICRISAT(2007), Groundnut (Arachis hypogaea L.), http://www.icrisat.org.

120. IFA (1992), World Fertilizer Use manual, IFA publication, Paris.

121. Johnny A.R, Wemin M, Timothy Geob, Wright G.C (2006), “Selection of peanut varieties adapted to the highlands of Papua New Guinea”, Iproving yield and economic viability of peanut production in Papua New Guinea and Australia, ACIAR.

122. Kale DM, Murty G.S.S, Badiganavar A.M, Makane V.G, Toprope V.N, Shirshikar S.P, Jangawad N.P (2008), “TLG 45, a large-seeded groundnut variety for Marathwada region of Maharashtra in India”, SAT ejournal, ejournal.icrisat.org.

123. Khan N, Faridullah, Uddinl Md.I (2009), “Agronomic characters of groundnut (Arachis hypogaea L.) genotypes an affected by nitrogen and phosphorus fertilization under rainfed condition”, Electronic Journal of Environmental, Agricultural and Food Chemistry, 8(1), pp. 61-68.

124. Kuniata L.S (2006), “Evaluation of peanut varieties suitable for the upper Markham Valley, Papua New Guinea”, Iproving yield and economic viability of peanut production in Papua New Guinea and Australia, ACIAR.

125. Liang Xuanqiang (1996), “Status of groundnut cultivation and production in Guangdong”, Workshop of Achieving High Groundnut Yields, ICRISAT, pages 217-222.

126. Mathews C, Lengwati M.D, Smith M.F, Nigam S.N (2007), “New groundnut varieties for smallholder farmers in Mpumalanga, South Africa”, African Crop Science Conference Proceelings, vol 8, pp. 251-257.

127. Mensah J. K, Akomeah P. A, Ikhajiagbe B, Ekpekurede E. O (2006), “Effects of salinity on germination, growth and yield of five groundnut genotypes”, African Journal of Biotechnology, vol 5 (20), pp. 1973-1979.

128. Migawer, Ekram A, Soliman M.A.M (2001), “Performance of two peanut cultivars and their response to NPK fertilization in newly reclaimed loamy sand soil”, Journal Agricultural Science, Mansoura University, 26(11), pp. 6653-6667.


129. Muchtar, Soelaeman Y (2010), “Effects of green manure and clay on the soil characterisrics, growth and yield of peanut at the coastal sandy soil”, Journal Trop Soils, 15(2), pp. 139-146.

130. Mutert. E.(1995), Plant nutrient balances in the Asian and Pacific region - the consequences for agricultural production, Food and Fertilizer Technology Center, Extension Bulletin 415.

131. Naab, J.B., Boote, K.J., Prasad, P.V.V, Seini, S.S., Jones, J.W.(2009), “Influence of fungicide and sowing density on the growth and yield of two groundnut cultivars”, Journal of Agricultural Science, Vol. 147, Issue 2, pp. 179-191.

132. NFDC/FAO (1989), Crop Response to Fertilizer.

133. Nigam S.N, Palmer B, Valentin G.S, Kapukha P, Piggin C, Monaghan

B. (2003), “Groundnut: ICRISAT and East Timor”, Agriculture: New Direction for a new Nation - East Timor, ACIAR, No 113, pp. 90-94.

134. Oldeman, L.R, Makkeling R.T.A and Sombroek (1990), World map of the status of human - induced soil degradation: An explanatory note ( revised 2nd edition), Wageningen. ISRIC, the Netherlands.

135. Pham Van Toan, Ha Dinh Tuan (2004), The role of biological nitrogen fixation in increasing crop production and soil fertility in Vietnam Symbiotic nitrogen fixation prospects for anhanced application in tropical agriculture, international workshop on the biological Nitrogen Fixation Challenge Program Initiative edited by R. Serraj Oxford & IBH Publishing Co. Pvt. Ltd New Delhi 2004. ISBN 81 264 16147, pp. 311-317.

136. P.K. Ghosh, K.K. Bandyopadhyay, Devi Dayal, M. Mohanty (2006), “Evaluation of straw and polythene mulch for enhancing productivity of irrigated summer groundnut”, Field Crops Research, Vol. 99, Issues 2- 3, pp. 76-86.

137. Sconyers, L.E., Brenneman, T.B., Stevenson, K.L., and Mullinix, B. G.(2005), Effects of plant spacing, inoculation date, and peanut cultivar on epidemics of peanut stem rot and tomato spotted wilt, Plant Dis. 89, pp. 969-974.

138. Shiyam J.O (2010), “Growth and yield response of grondnut (Arachis hypogaea L.) to plant densities and phosphorus on an ultisol in Southeastern Nigeria”, Libyan Agriculture Research Center Journal Internation, 1(4), pp. 211-214.


139. Singh F, Oswalt D.L (1991), Genetics and breeding of groundnut, International Crops Research Institute for the Semi-Arid Tropics, India.

140. Songsri P, Jogloy S, Vorasoot T, Akkasaeng C, Patanothai A, Holbrook C.C (2008), “Response of reproductive characters of drought resistant peanut genotypes to drought”, Asian Journal of Plant Sciences, 7(5), pp. 427-439.

141. Tillman B.L, Gorbet D.W, Whity (2002), “Factor to Consider”, Farmer saved peanut seed, University of Florida, Florida.

142. Tiwari.K.N.(2001), “The changing face of balanced fertilizer use in India”,

Better Crop International,Vol. 15, No. 2, PPI/PPIC Publisher, pp. 24-27.

143. Vadez V, Srivastava N, Krishnamurthy L, Aruna R, Nigam SN (2005), “Standardization of a Protocol to Screen for Salinity Tolerance in Groundnut”, ICRISAT ejournal, 1(1).

144. Xie. J.C.(1995), “Balanced fertilization and the sustainable development of China’s Agriculture”, Balanced Fertilization to increase and sustain Agriculture Production, International Potash Institute, Bern/Switzerland, pp. 397-412.

145. Zhang Mingqing, Lin Xinjian (1996), “Studies on nutritional status of upland soil and balanced fertilization for peanut in southeast area of Fujian”, Journal of Peanut Science, CNKI, (3), pp. 11-17.

146. Zhao D, Wright D.L, Marois J.J (2009), “Peanut yield and grade responses to timing of bahiagrass ternination and tillage in a sod-based crop rotation”, Peanut science, 36(2), pp. 196-203.

147. Zheng Hai-hui (2005), A primary report of experiment on sowing date of spring peanut under plastic mulching, Hui′an Agro-technology Station, Hui′an, Fujian 362100, China.

148. Zhou Kejin, Ma Chengzhe, Xu Chengbao, Li Dingbo (2003), “Effects of potash fertilizer on nutrient absorption by peanut and its yield and benefit”, Chinese Journal of Applied Ecology, 14(11), pp. 1917-1920.

149. Zhou Lu-ying, X.D. Li, Wang Li Li (2006), “Effects of different application rates of N, P, K, Ca fertilizers on photosynthesis properties, yield and kernel quality of peanut”, Journal of Peanut Science, (2), pp. 1-5.

150. Zhuang Wei-jian, Guan De-yi, Cai Lai-long, Zhao Chao-wu, Shan Shi- hua, Liu Si-heng (2004), “Growth Characters and Cultivation Technologies of Polythene Mulched Spring Peanut in Fujian”, Peanut Science and Technology, Crop Science Institute of Fujian Agricultural and Forestry University, Fuzhou 350002, China.


PHỤ LỤC


1. Một số ảnh minh họa trong thời gian nghiên cứu.

2. Mẫu phiếu điều tra nông hộ.

3. Kết quả tính toán chi tiết hiệu quả kinh tế của các thực nghiệm.

4. Kết quả phân tích thống kê số liệu về các yếu tố cấu thành năng suất và năng suất của các thực nghiệm.

Phụ lục 1


MỘT SỐ HÌNH ẢNH MINH HỌA



Ảnh 1: Vùng cát biển thực hiện nghiên cứu đề tài



Ảnh 2: Làm đất gieo hạt lạc thí nghiệm


Ảnh 3: Đo đếm, theo dõi trên ruộng thí nghiệm


Ảnh 4: Đo đếm một số chỉ tiêu sinh trưởng, phát triển của lạc trước thu hoạch



Ảnh 5: Đầu vụ đông xuân thời tiết âm u, mực nước ngầm cao



Ảnh 6: Bệnh lở cổ rễ gây chết cây con, giảm mật độ của các công thức gieo sớm trong thí nghiệm thời vụ

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