ABSTRACT
L. After Mean
VI. CONCLUSION AND RECOMMENDATION
LITRATURE CITED
A.O.A.C. (Association of official Analytical Chemistry). 2000. Official Methods of Analysis (Ed. Helrich, K.) 15th ed. Arlington, Virginia. USA.
Abbasi, N.A., L. Zafar, H.A. Khan and A.A. Qureshi. 2013. Effects of naphthalene acetic acid and calcium chloride application on nutrient uptake, growth, and yield and post-harvest performance of tomato fruit. Pak. J. Bot. 45:1581-1587.
Abdul, M.A, M.R.N.El-Greadly, Y.I Helmy, S.M.Singer.2007. Responses of tomato plants to different rates of humic based fertilizer and NPK fertilization. J. App.
Sci. Res. 3:169-174.
Adani, F., P. Gerevini and G. Zocchi. 1998. The effect of commercial humic acid on tomato plant growth and mineral nutrition. J. Plt. Nut. 21:561-575.
Adekiya,A.O., and Agbede, T.M. 2009. Growth and yield of tomato (Lycopersiconesculentum Mill) as influenced by poultry manure and NPK fertilizer.Emi. J. Food and Agric., 21:10-20.
Adriano, D.C., T.A. Woodford, T.G. Ciravolo. 1978. Growth and elemental composition of corn and bean seedlings as influenced by soil application of coal ash. J. Environ. Qulty. 7:416-421.
Adubofuor, J., E.A.Amankwah, B.S.Arthur, and F.Appiah. 2010. Comparative study related to physico-chemical properties and sensory qualities of tomato juice and cocktail juice produced from oranges, tomatoes and carrots. Afri. J. Food Sci. 4:427-433.
Adviento-Borbe, M.A.; Doran, J.W.; Drijber, R.A. &Doberman.2006. A. Soil electrical conductivity and water content affect nitrous oxide and carbon dioxide emissions in intensively managed soils. J. Environ. Qual.,35.
Agbede, T.M., S.O. Ojeniyi and A.J. Adeyemo. 2008. Effect of poultry manure on soil physical and chemical properties, growth and grain yield of sorghum in southwest, Nigeria. Am. J. Sust. Agric. 2:72-77.
Agyemen, K., I. Osei-Bonsu, J.N. Berchie, M.K. Osei, M.B. Mochiah, J.N. Lamptey, Kingsley Osei, and G. Bolfrey-Arku. 2014. Effect of poultry manure and
different combinations of inorganic fertilizers on growth and yield of four tomato varieties in ghana. Agric. Sci. 2:27-34
Akinci, S., T. Buyukkeskin, A. Eroglu and B.E. Erdogan. 2009. The effect of Humic Acid on Nutrient Composition in Broad Bean (Viciafaba L.) Roots J. Nut.
Biol. Sci. 1: 81-87.
Albayrak, S., and N. Camas. 2005. Effects of different Levels and Application Times of humic acid on root and Leaf Yield and Yield components of forage turnip (Brassica rapa L.). J. Agron. 42:130-133.
Alghobar, M.A., and S. Suresha. 2015. Evaluation of metal accumulation in soil and tomato irrigated with sewage water from mysore city, karnataka, india. J.
saudi Soc. Agric. Sci. 11. DOI: 10.1016
Ali, R. Gurmani, Jalal-ud-Din, U.K. Sami, R. Andaleep, K. Waseem, A. Khan and Hadyatullah. 2012. Soil application of zinc improves growth and yield of tomato. Int. J. Agric. Biol. 14: 91–96
Alvarez-Tinaut, M.C., A. Leal and L. Recalde. 1980. Iron-manganese interaction and its relation to boron levels in tomato plants. Plt. Soil. 55:377-388
Aman, S., and A. Rab. 2013. Response of tomato to nitrogen levels with or without humic acid. S. J. Agric. 29:181- 186
Aminifard, M.H., H. Aroiee, H. Nemati, M. Azizi and H.Z.E. Jaafar. 2012. Fulvic acid affects pepper antioxidant activity and fruit quality. Afr. J. Biotec.
11:13179-85
Anderson-Cook, C.M., M.M. Alley, J.K. Roygard, R. Khosla, R.B. Noble, and J.A.
Doolittle. 2002. Differentiating soil types using electromagnetic conductivity and crop yield maps. Soil Sci. Soc. Am. J. 66:1562-1570.
Antoniaa, L., T.A.Sabina, andS.Patsayeva. 2004. Quantification of pigments in tomato leaves using reflectance spectroscopy ENEA Centro Ricerche Energia Frascati, I-00044 Frascati (Roma), Italy Physics Department, M.V.
Lomonosov Moscow State University, Moscow 119899 Russia Corresponding.
Arshad, A.K., M. Sajid and A. Rab. 2014. Tomato fruit quality as affected by different sources of phosphorus. Pak. J. Nut. 13:692-699
Ashraf, M., S. Nasir and Sarfaraz. 2004. Biological effect of bio-fertilizer-humic acid on mung beans (Vigna radiate L.) Wilczek.Int. J. Bio and Biotec. 5:164-167.
Aslam, M., M. Hussain, M.A. Nadeem and A.M.Haqqani. 2004. Comparative efficiency of different mung bean genotypes under Agroclimatic conditions of Bhakkar. Pak. J. Life Soc. Sci. 2:51-53.
Atefe, Ameri and A. Tehranifar. 2012. Effect of Humic Acid on Nutrient Uptake and Physiological Characteristic Fragaria ananassa var: Camarosa. J. Biol.
Environ. Sci. 6:77-79
Aurelice, B.O., F.H.M. Carlos, E. Gomes-Filho, C.A. Marco, L. Urban, M.R.A.
Miranda. 2013. The impact of organic farming on quality of tomatoes is associated to increased oxidative stress during fruit development.
DOI:10.1371/j.
Ayes, H., and F. Gusher. 2005. The effects of sulfur and humic acid on yield component and macronutrient contents of spinach. J. Biolo. Sci. 5:801-804.
Azarpour, E.A., M. Karim, Motamed, M. Maral and H.R. Bozorgi. 2012. Effects of bio, mineral nitrogen fertilizer management, under humic acid foliar spraying on fruit yield and several traits of eggplant (Solanum melongena L.) Afr.
Agric. 7:1104-1109.
Azeem, Mohammad and R. Ahmad. 2011. Foliar application of some essential minerals on tomato (lycopersicon esculentum) plant grown under two different salinity regimes. Pak. J. Bot. 43:1513-1520.
Azza, A.M.M., I.S. Shaymaa, N.G. Abdel-Aziz, M.H. Mahgoub. 2012. Growth, flowering and chemical constituents of Chrysanthemum indicum L. plant in response to different levels of humic acid and salinity. J. Appl. Sci. Res.
8:3697-3706
Bari, H., and S. Diner. 1983. Lignite-based nitrogenous fertilizers for recovery, utilization, and environmental effects. J. Ener. Sour. 7:87-94.
Barman, S.C., G.C. Kisku, and S.K. Bhargava, 1999.Accumulation of heavy metals in vegetables, pulse and wheat grown in fly ash amended soil. J. Environ. Bio.20:
15-18.
Basavara, J., C. Patil, R.M. Hosamani, P.S. Ajjappalavara, B.H. Naik, R.P. Smitha, and K.C. Ukkund. 2008. Effect of foliar application of micronutrients on growth and yield components of tomato (Lycopersicon esculentum Mill.) Karnataka J. Agric. Sci. 21:428-430
Bashir, M.K., and M.M. Azeem. 2008. Agricultural Credit in Pakistan: Constraints and Options. Pak. J. life Soc. Sci. 6: 47-49
Belay, A., and Tedla. 2003. Direct and residual effects of organic and inorganic fertilizers on soil chemical properties, microbial components and maize yield under long-term crop rotation. Thesis PhD (Plant Production and Soil Science)-University of Pretoria.
Besford, R.T., 1979. Uptake and distribution of phosphorus in tomato plants.Plt. Soil 51:331-340
Besford, R.T., and G.A. Maw. 1975. Effect of potassium nutrition on tomato plant growth and fruit development. Plt. Soil 42:395-412.
Bhatt, L., and B.K. Srivastava. 2005. Effect of foliar application of micronutrients on nutrient uptake in tomato. Veg. Sci. 32:158-161
Bhuma, M., and G. Selvakumari. 2003. Studies on the effect of green gram to potassium humate on soil fertility. Madras Agric. 90:444-449.
Bielinski, M. Santos. 2010. Effects of Pre plant Nitrogen and Sulfur Fertilizer Sources on Strawberry. Hort. Tech. 20:193-196
Biljana, B., and M. Aca. 2009. Correlation between nitrogen and chlorophyll content in wheat (triticum aestivum l.) Kragujevac J. Sci. 31:69-74.
Bjelić, V., D.J. Moravčević and D. Beatović. 2005. Effect of greenhouse conditions on Zn, Fe and Cu content in tomato fruits. J. Agric. Sci. 50:101-105
Bledsoe,R.W., and C.H.Henry.1950.The influence of mineral deficiency on vegetative growth, flower and fruit production, and mineral composition of the peanut plant. Plt. Physiol. 25: 63-77
Bohradevelopers. 2015. www.gsp.gov.pk. All rights Reserved.
Botrini, L., M.L.D. Paola, and A. Graifenberg. 2000. Potassium affects sodium content in tomato plants grown in hydroponic cultivation under saline-sodic stress. Hort. Sci. 35:1220-1222.
Brady, N.C., and R.R. Weil. 2002. Elements of the Nature and Properties of Soils.
Prentice Hall, New Jersey.
Brake, S.S., R.R. Jensen, and J.M. Mattox. 2004. Effects of coal fly ash amended soils on trace element uptake in plant. Environ. Geol. 45:680-689
Brannon, C.A. and L.E. Sommers. 1985. Preparation and characterization of model humic polymers containing organic Phosphorus. J. Soil Biol. Biochem. 1:213- 219.
Bremner, J. M., and C. S. Mulvaney. 1982. Nitrogen total. Pp.395-622. In: A.L. Page, Miller and D.R. Keeney, (eds). Method of soil analysis, Part-II.2nd edition.
Am. Soc. Agron. Madison. WI.
Bremner, J.M., and C.S. Mulvancy. 1982. Nitrogen total. Pp. 395-622. In A.L. Page, Miller and D.R. Keeney, (eds). Method of soil analysis, part II. 2nd edition.
Am. Soc. Agronamy. Madism. WI.
Britt, Burton-Freeman, PhD, MS. 2011. Tomato Consumption and Health: Emerging Benefits. Amr.J. lifestyle medi. 5:182-191
Brooke, M. R., J.K. Kirby, F. Degryse, H. Harris, M.J. McLaughlin and K.
Scheiderich. 2013. Copper speciation and isotopic fractionation in plants:
uptake and translocation mechanisms. New Phytologist 199:367–378
Bucagu, C., J.J.M. Mbonigaba, and B. Uwumukiza. 2013. Effects of mineral and organic fertilizers on crop productivity and nutrient use efficiency in smallholder farms of Southern Rwanda. Rwanda J. vol. 1. No. 1
Creda.C.F.S., 1980. The mineral nutrition of wild plants.Annual review of ecology and systematic. 11:233-260.
Calahorro, V.C., T.C. Cano, and V.G. Serrano. 1987. Effect of acid and heat treatments on surface area and porosity of a Spanish coal with high mineral matter content. Fuel 66:441-584
Camille, B., H. Gautier, F. Bourgaud, D. Grasselly, B. Navez, C. Caris-Veyrat, M.
Weiss and M. Génard. 2009. Effects of low nitrogen supply on tomato (solanum lycopersicum) fruit yield and quality with special emphasis on sugars, acids, ascorbate, carotenoids, and phenolic compounds. J. Agric. Food Chem. 57:4112-4123
Chapin, C
Chen, Y., and T. Aviad. 1990. Effects of humic substances on plant growth.In: Humic Substances in Soil and Crop Science: Selected Readings, eds.P. MacCarthy, C.
E. Clapp, R. L. Malcolm, and P. R. Bloom, pp. 161-186. Madison, WI: Am.
Soc. Agron. Soil Soc. Am.
Chen, Y.C.Y.W., X. Tang, S.M. Yang, and J.Y. Wang. 2010. Fate of Nitrogen from organic and Inorganic sources in Rice-Wheat Rotation Cropping System. Agri.
Sci. China. 9:1017-1025.
Christian, G., L.B. Jacques, F. Jean-Sylvain and J.L. Andriolo. 1998. Ontogenic changes in the construction cost of leaves, stems, fruits, and roots of tomato plants. J. Exp. Bot. 49:59-68.
Christopher, R.S., 2014. The productive reuse of coal, biomass and co-fired fly ash.Vitruvius, De architectura, “Pozzolana,” Book II, Chapter VI, 1st century B.C
Ciecko, Z., A.C. Zolnowski, and A. Chelstowski. 2009. Long-Term Effect of Coal Fly Ash Application on Soil Total Nitrogen and Organic Carbon Concentrations.
Handbook of Application of Phytotechnologies for Cleanup of Industrial, Agricultural, and Wastewater Contamination.pp.147-158.
Clark, R.B., S.K. Zeto, K.D. Ritchey, and V.C. Baligar. 2001. Mineral acquisition by maize Grown in acidic soil amended with Coal combustion products. J. Fuel Proc. Tech. 50:249-260.
Corine, C.D.G., L.F.M. Marcelis, R.V.D. Boogaard, W.M. Kaiser and H. Lambers.
2003. Interaction of nitrogen and phosphorus nutrition in determining growth.
Plt. Soil, 248:257-268
Daniel, P.S., R.J. Reid and S.M. Ayling. 1998. Phosphorus Uptake by Plants: From Soil to Cell Plant Physiology. 116:447-453
Daur, I.,A. Bakhashwain. 2013. Effect of humic acid on growth and quality of maize fodder production. Pak. J. Bot. 45: 21-25.
David, L. E., and C.H. Lim. 1986.Translocation of calcium in relation to tomato fruit growth. Ann. Bot. 58:679-688
Davidsson, K.H.O., J.G.Korsgren, J.B.C.Pettersson, and U. Jäglid. 2002. The effects of fuel washing techniques on alkali release from biomass, Fuel 81:137-142.
De-Groot, C.C., R. Van Den Boogaard, L.F.M. Marcelis, J. Harbinson and H.
Lambers, 2003.Contrasting effects of N and P deprivation on the regulation of photosynthesis in tomato plants in relation to feedback limitation.J. Exp. Bot., 54: 1957–1967
Demeyer, A., J.C.V. Nkana, M.G. Verloo. 2001. Characteristics of wood ash and influence on soil properties and nutrient uptake: an overview. Bioresour Tech.
77:287-95.
Demirbas, A., 2010. Oil, micronutrient and heavy metal contents of tomatoes. Food Chem. 118:504-507
Deo, B., G. Nahak and R.K. Sahu. 2010. Assessment and distribution of heavy metals in mung bean (Vigna radiata) grown on coal mine spoil. J. Environ. Sci. 4:51- 56.
Diana, M., A. Lazureanu, P. Mariana-Atena, M. Harmanescu, I. Gogoasa, I. Gergen.
2008. The influence of mineral fertilization about Nitrogen content in soil, plant and tomato fruit Bulletin UASVM, Horticulture 65:1843-5254
Dick, D.P., A.S. Mangrich, and B.F. Pereira. 2002. Chemical and Speetroscopical characterization of humic acids from two South Brazilian coals of different ranks. J. Braz. Chem. Sci. 13:165-167.
Dileep, K., A.P. Singh, P. Raha and C.M. Singh. 2014. Effects of potassium humate and chemical fertilizers on growth, yield and quality of rice (oryza sativa l.).
Bangladesh J. Bot. 43:183-189
Domenico, M., L. Cossignani, G. D'Arco, M.S. Simonetti, P. Damiani. 2006. Pure lycopene from tomato preserves extra virgin olive oil from natural oxidative events during storage. J. Am. Oil Chemists' Soc. 83:933-941
Dorneanu, A., Emilia, Alexandrescu, Ariadna, Stefanescu, Daniela, Prodan,F.Badiu.1997. Complex effectiveness of organomineral fertilizers
with nitrogen depending on the nature of coal sources.Publicatiile Societatii Nationale Romane pentru Stiinta Soluluiv. 29: 64-73.
Dorota, K., K. Górecka, R. Górecki, H. Michalik, T. Glapś. 2000. Comparison of physical and chemical characters of tomato fruits grown from plants received from seeds or obtained in vitro Acta Physiologiae Plantarum, 22:284-287 Eivazi, A.R., Rastergarni, A.R. Habibzadeh, A.F.Y. Mogaddam, and G.Khlilzadeh.
2013. Influence of manure fertilizers on morpho-physiological traits of tomato (Lycopersicon escutentum Mill). Pak. J. Agric. Sci. 1:89-93.
El-Bassiouny, H.S.M., A.B.Bakry, A.A. El-Monem, and M.M.A. Allah. 2014.
Physiological role of humic acid and nicotinamide on improving plant growth, yield, and mineral nutrient of wheat (triticum durum) grown under newly reclaimed sandy soil. Agric. Sci.5:687-700.
Ergun, G., B. Uner and B. Karakus. 2009. Chemical composition of tomato (Solanum lycopersicum) stalk and suitability in the particleboard production. J. Environ.
Biol. 30:731-734
Erik, H., Murchie and K.K. Niyogi. 2011. Manipulation of Photoprotection to Improve Plant Photosynthesis. Plt. Physi. 155:86-92
Eyheraguibel, B., J. Silvestre and P. Morard. 2008. Effects of Humic substances derived from organic waste enhancement on the growth and mineral nutrition of maize. J. Biores. Tech. 99:4206-4212.
Ezra, B.A., I.U. Abubakar and B.A. Babaji. 2011. Nutritional Quality of Tomato (Lycopersicon esculentum Mill) as Influenced by Mulching, Nitrogen and Irrigation Interval. J. Agric. Sci. 3:266-270
Fahramand, M., H. Moradi, M. Noori, A. Sobhkhizi, M. Adibian, S.Abdollahi and K.
Rigi. 2014. Influence of humic acid on increase yield of plants and soil properties. Int. J. Farm.All. Sci. pp: 339-341
Fang, L., H. Z._Zhen, G. L._Cong, and S. Dian. 2001. Variation of Contents of Cd, Hg, As, Cr, Pb and Al in the Fields Applied with Flying Ash and Produced Vegetables Agro-environmental Protection
FAO. 2006. Fertilizer use by crop and plant nutrition bulletin 17. United Nations Rome
Ferreira, A.S., F.A.0. Camargo, M.J. Tedesco, and C.A. Bissani. 2003. Effects of tannery and coal mining residues on chemical and biological soil properties and on corn and soybean growth and yield. Ecotox. Environ. Saf. 73: 1950-58.
Fredeen, L., I.M. Rao, and N. Terry. 1989. Influence of phosphorus nutrition on growth and carbon partitioning in glycine max. Plt. Physiol. 89:225-230
Frias-Moreno, N. 2014.Effect of nitrogen deficiency and toxicity in two varieties of tomatoes (Lycopersicum esculentum L.).Agric. Sci.5:1361-1368.
Gao, Zhanguo H.L., and Z.H.Z. Zhigang. 2003. Physicochemical Characteristics of Fly Ashes and Situation & Prospect of Its Utilization as Resources. J. Capital Normal Uni.
Gartner, C., W. Stahl, and H. Sies. 1997. Lycopene is more bioavailable from tomato paste than from fresh tomatoes. Am. J. Clin. Nut. 66:116-122
Gary, C., N. Bertin, J.S. Frossard and J.L. Bot. 1998.High mineral contents explain the low construction cost of leaves, stems and fruits of tomato plants.
J.Exp.Bot. 49(318).
Gerenda, J.S., and B. Sattelmacher. 1999. Influence of Ni Supply on Growth and Nitrogen Metabolism of Brassica napus L. Grown with NH4NO3 or Urea as N Source. Ann. Bot.83: 65-71
Ge-Tida, S. Shiwei, C. Minghan, D. Huang and K. Iwasaki. 2008. Effects of nitrogen forms on carbon and nitrogen accumulation in tomato seedling. Agric. Sci.
China; 7:1308-1317.
Ghany, T.M.A., M.M. Alawlaqi and M.A. Al-Abboud. 2013. Role of biofertilizers in agriculture: a brief review. Mycopath 11: 95-101
Ghorbani, R., A. Koocheki, M. Jahan1, G.A. Asadi. 2008. Impact of organic amendments and compost extracts on tomato production and storability in agro ecological systems Agro. Sustain. Dev. 28:307-311
Giovanni, A., G. Caternolo, E. Rossi, and P. Martiniello. 2011. Effect of Manure vs.
Fertilizer Inputs on Productivity of Forage Crop Models. Int. J. Environ. Res.
Public Health. 8: 1893-1913.
Glaser, B.,J. Lehmann, and W. Zech. 2002. Ameliorating Physical and Chemical Properties of Highly Weathered Soils in the Tropics with Charcoal - A Review. J. Biol. Ferti. Soils. 35: 219-230.
Goldin, A., F. Hawking, and R.J.Schnitzer. 2013. Advances in Chemotherapy.
Review book Science– p:342
Gothberg A, M.Greger and B.E.Bengtsson. 2002. Accumulation of heavy metals in Water Spinach (Ipomoea aquatica) cultivated in the Bangkok region, Thailand.
Environ. Toxicol. Chem. 21: 1934 - 1939.
Goyal, S., K. Chander, M.C. Mundra, and K.K. Kapoor, 1999. Influence of inorganic fertilizers and organic amendments on soil organic matter and soil microbial properties under tropical conditions. Biol. ferti.Soil. 29:196-200
Grant, R.F. 1997. Changes in soil organic matter under different tillage and rotation mathematical modeling in ecosys. J. Soil Sci. Soc. Am. 61:1159-1175.
Gundersen, V., D.McCall, and I.E.Bachmann. 2001. Comparison of major and trace element concentrations in Danish greenhouse tomatoes (Lycopersicon esculentum Cv. Aromata F1) cultivated in different substrates.J. Agric. Food Chem. 49:3808-15.
Gupta, A., A.Kawatra, and S.Sehgal. 2011. Physical-chemical properties and nutritional evaluation of newly developed tomato genotypes. Afr. J. Food Sci.
Tech. 2:167-172.
Gupta, M., A. Kumar and M. Yunus. 2000. Effect of fly ash on metal composition and physiological responses in Leucaena Leucoephala (lamk). De.Wit. J. Envi.
Moni.Ass. 61:399-406.
Hakli, O., D.A. Gumrah, A.E. Nalbant, O. Fruze and Y. Yuda. 2011. The conversion of low-rank Kilyos coal to nitrogeneous fertilizers. Energy sources, part A:
Recovery, Utilization, and Environmental Effects. 33:164-170.
Hala, S.M. El-Bassiouny, B.A. Bakry, A.A. El-Monem,M.M.A. Allah. 2014.
Physiological Role of Humic Acid and Nicotinamide on Improving Plant Growth, Yield, and Mineral Nutrient of Wheat(Triticum durum) Grown under Newly Reclaimed Sandy Soil. Agric. Sci. 5:687-700
Halime, O. Unlu, H. Unlu, Y. Karakurt, and H. Padem. 2011. Changes in fruit yield and quality in response to foliar and soil humic acid application in cucumber.
Sci. Res. and Ess. 6:2800-2803
Hamalainen, J.P and M.J. Aho. 1995. Effect of fuel composition on the conversion of volatile solid furel-N to N20 and NO Fuel. J. Environ. Mgt. 74:1922-1924.
Haq, N., M. Zubair and H. Derawadan. 2012. Interactive effects of nitrogen, phosphorus and zinc on growth and yield of Tomato (Solanum lycopersicum).
Afr. J. Agric. Res. 7:3792-3769
Hasan, M.M., V.M. Prasad and S.Saravanan. 2014. Effect of FYM, NPK and micronutrients on yield of tomato (Lycopersicon esculentum mill.) cv.heem sohna under protected cultivation. Int. J. Agric. Sci. Res. 4:17-26.
Helmut, L., A.A. Al-Masoom. 2012. Towards the rational use of high salinity tolerant plants: vol. 2: Agriculture and forestry under marginal soil water conditions.
Springer Science & Business Media, Science–p-447
Helmy, A.K., M.N. Hassan and S. Taher 1963. Absorption of Na, K and Ca by barley roots at constant ionic strength. J. Plt. Sci. 18:133-139
Hera, C., 1995.The role of inorganic fertilizers and their management practices.
ArticleFertilizer research. Springer Link. 43:63-81
Herbert, D.A., E.B. Rastetter, L. Gough and G.R. Shaver. 2004. Species diversity across nutrient gradients an analysis of resource competition in model ecosystems. Ecosystems 7:296-310.
Hernández, Suárez, M., E.R. Rodríguez, &R.C. Díaz.2007a.Mineral and trace element concentrations in cultivars of tomatoes. Food Chem. 104: 489-499.
Hill, M.J., and C.A. Lamp. 2001. Use of pulverised fuel ash from Victorian brown coal as a source of nutrients for a pasture species. Aus. J. Exp. Agr. Ani. Hus.
20: 377-384.
Hu, L.F., and R. Keren. 2004. Effects of Cattle Manure on Release of Macro- Elements in Bottom Ash. J. Agro-environ. Sci. 2: 336-340.
Isa, A., M. Yunusa, B.D. Margaret, D.V. Manoharan, L.DeSilva, D. Eamus. and C.G.Skilbeck. 2008. Economic and environmental advantages of using fly ash as a soil amendment in agronomy. J. Plt. Environ. Inter. 38:1466-1472.
Isah, A.S., E.B. Amans, E.C. Odion, and A.A. Yusuf. 2014. Growth Rate and Yield of Two Tomato Varieties (Lycopersicon esculentum Mill) under Green Manure and NPK Fertilizer Rate Samaru Northern Guinea Savanna. Int. J. Agron.
Article ID 932759,p-8.
Ishaq, M., I. Ahmad, M.S.Ullah, A. Bahader and N. Taj. 2002. Characterization of khushab coal (punjab pakistan). J. chem. soc. pak. 24:240-245
Ishida, B.K., Ma, J., and Chan, B., 2001. A simple, rapid method for HPLC analysis of lycopeneisomers.Phytochem. Anal., 12, 194-198.
James, C.B., S.K.Athikkattuvalasu, and G.R.Kashchandra . 2001. LEPS2, a Phosphorus Starvation-Induced Novel Acid Phosphatase from Tomato. Plt.
Physiol. 125:728-737
Jastrow, J.D., C.A. Zimmerman, A.J. Dvorak and R.R. Hinchman.1979.Plant Growth and Trace-Element Uptake on Acidic Coal Refuse Amended with Lime or Fly Ash. J. Environ. Qlty. 10:154-160
Javaria, S., M.Q. Khan and I. Bakhsh.2012. Effect of potassium on chemical and sensory attributes of tomato fruit. J. Ani. Plt. Sci. 22: 1081-1085
Javaria, S., M.Q. Khan, H.U. Rahman and I. Bakhsh. 2012. Response of tomato (Lycopersicon Esculentum L.) yield and post-harvest life to potash levels. S. J.
Agric. 28:227-235
Jaywanti, P., K. Rani, S.Kalpana, K.K. Gupta. 2011. Application Impact of Coal Fly Ash, and Water Hyacinth on Cultivation of Tomato. Int. J. Res. in Chem. and Environ. 1:71-76
Jiahua,W., L. Baoshan, D. Yunzhong, L. Jiqing and W. Gang. 1995. Study on Effect of Soil Amelioration with Coal Ash. J. acta pedol.sinica
Jillani, G., T. Hussain. and R. Ahmad. 1994. Substitution of organic manures with humic substances to enhance microbial activity. Abstracts of 5th National Congress on Soil Sci. J. Environ. Qual. 6: 267- 270.
Joe, M., and L.G.Mary. 2009. Iron uptake and transport in plants: The good, the bad, and the ionome. HHS Public Access Chem. Rev. 109:4553-4567.
Jonas, C., J. Chianu and Mairura. 2012. Mineral fertilizers in the farming systems of sub-Saharan Africa. A review. Agronomy for Sustainable Development, Springer Verlag (Germany), 2:545-566.
Jones, J.B., 2007. Tomato plan culture: In the Field Greenhouse, and home garden, second edition book CRC press, sci.p-240
Juárez-Maldonado, A., M.A.Benavides,K.D.A. Romenus, and A.M. Díaz, 2014.Dynamic modeling of mineral contents in greenhouse tomato crop.
Agric. Sci., 5:114-123.
Jyrki, Hytönen. 2003. Effects of wood, peat and coal ash fertilization on Scots pine foliar nutrient concentrations and growth on afforested former agricultural peat soils. Silva Fennica 37: 219-234.
Kabir, M., M.Z. Iqbal and M. Shafiq. 2011. Toxicity and tolerance in samanea saman (Jacq.) Merr.to some metals (Pb, Cd, Cu and Zn). Pak. J. Bot. 43: 1909-1914 Kahlaoui, B., M. Hachicha, S. Rejeb, M.N. Rejeb, B. Hanchi and E. Misle. 2011.
Effects of saline water on tomato under subsurface drip irrigation: nutritional and foliar aspects. J. Soil Sci. Plt. Nut. 11:69-86
Kalra, N., M.C. Jain, H.C. Joshi, R. Choudhary, R.C. Harit, B.K. Vatsa, S.K.
Sharma, V. Kumar. 1998. Fly ash as a soil conditioner and fertilizer. Biores.
Tech. 64:163-252
Kandlakunta, B., R. Punna, U. Paruchuri, B. Sangras, K. Krishnaswamy, S. Qadri, U.
Putcha, and S.BoindaIa. 2009. J. Sci. Food Agri. 89:384-389.
Karen, R. Little, Michael T. Rose, William R. Jackson, Timothy R. Cavagnaro and Antonio F. Patti. 2014. Do lignite-derived organic amendments improve early- stage pasture growth and key soil biological and physicochemical properties.
Crop and Pasture Sci. 65:899-910.
Katkat, V.P., H. Celik, M. Ali and B.B. Ayk. 2009. Effects of Soil and Foliar Applications of Humic Substances on Dry Weight and Mineral Nutrients Uptake of Wheat under Calcareous Soil Conditions. Aust. J. Basic & Applied Sci, 3: 1266-1273.
Kavanaugh, C.J., P.R. Trumbo and K.C. Ellwood. 2007. The U.S. Food and Drug Administration's Evidence-Based Review for Qualified Health Claims:
Tomatoes, Lycopene, and Cancer. JNCI 99: 1074-1085
Kaya, C., and D. Higgs. 2002. Response of tomato (Lycopersicon esculentum L.) cultivars to foliar application of zinc when grown in sand culture at low zinc.
Sci. Hort. 93:53-64