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        A Preliminary Study on lntensive Curing with Alcohol-based Fuels

        2015-11-07 01:34:58JipingZHANChaofanDUYuLULinrongJlANG
        Agricultural Science & Technology 2015年10期
        關(guān)鍵詞:煙草效果研究

        Jiping ZHAN,Chaofan DU,Yu LU,Linrong JlANG

        Longyan Tobacco Industrial Co.,Ltd.,Longyan 364000,China

        A Preliminary Study on lntensive Curing with Alcohol-based Fuels

        Jiping ZHAN*,Chaofan DU,Yu LU,Linrong JlANG

        Longyan Tobacco Industrial Co.,Ltd.,Longyan 364000,China

        The research investigated application effects of alcohol-based fuels in in-tensive curing.The results showed that alcohol-based fuels allow flexible adjustment of temperature and heat supplying.What's more,in treatment A,the cured tobac-cos are softer and brighter,with more oil content and higher proportion of first-class tobaccos.Per leaf weight increased by 0.13 g and output value per kang (a heat-able brick bed)deducting energy cost grew by 188.66 yuan.In addition,the con-tents of reducing sugar and potassium enhanced within the ranges of high-quality tobacco,and chemical components are more coordinated.

        Cured tobacco;Alcohol-based fuels;Application effects

        C urrently,curing of tobacco is mainly based on coals[1-2].Ho-wever,such practice con-sumes lots of coals and causes envi-ronment pollution.What's worse,coal is a non-renewable resource,and it becomes necessary to seek alterna-tive energy[3].For the researches avail-able,highlights are given to com-pressed straw stalk[4],straw gasifica tion[2]and biomass fuel[3],but less at-tention is paid to replacement of coal by alcohol-based fuels.The research investigated application ofalcohol-based fuels in intensive flue-cured to-bacco barns,providing theoretical sup-ports for application of alcohol-based fuels.

        Materials and Methods

        Test materials

        The testmaterials included a burner,a set of U-shaped pipeline ra-diator,a set of weighing tool,1 t me-thanol,1 t honeycomb briquette and 2 hm2Yunyan No.87(growing in moder-ate-fertility farmlands).Besides,to-baccos were cured in two intensive flue-cured tobacco barns meeting na-tional standards.

        Test design

        The test designed two treatments. Specifically,treatment A contained a burner,a set of U-shaped pipeline ra-diator,and the tobaccos were cured in an intensive barn ready for heat-sup-plying system transformation,with methanol.In treatment B(CK),tobac-cos were cured in an intensive barn with honeycomb briquette.

        According to Three-stage Curing of flue-cured Tobacco in Intensive Barns in Longyan City,tobaccos should be harvested as per ripeness demands upon tobacco species and location.After harvesting,tobaccos should be classified,and then,130 up-per leaves are strung onto every to-bacco stick and 100 middle or lower-part leaves are strung onto every stick. Tobacco leaves from 320 tobacco sticks should be collected for every curing.In the test,typical tobacco leaves were selected and signed as test samples,and then hung from tier-poles 2,4 and 6 m away from door. Two sticks were hung in every location and every barn contained 18 sticks,totaling 126 sticks.Upper,middle and lower-parts tobacco leaves were cured respectively.

        Measurement items

        In the test,heat supply with alco-hol-based fuels,tobacco load of barns,dry tobacco quantity,energy con-sumption,cured quality of tobacco and average price were measured.As for fresh/dry weight,sample stick was weighed before curing;fresh tobacco and sample stick were weighed and then the weight of sample stick and cured tobaccos were weighed.Finally,fresh tobacco on everystickand weight of cured tobacco can be com-puted.

        Tobacco grade and appearance quality were appraised by technicians organized by Longyan Tobacco In-dustrial Co.,Ltd.,on basis of color,ripeness,structure,identity,oil content and chromaticity[6].Chemical compo-nents were measured by related method[7].

        Results and Analysis

        Analysis on heat supply effect

        In curing barns,as shown in Table 1,treatments A and B (CK)both en-hanced room temperatures from 23℃to 70℃with maximal heat power,with an average rate of 6.27℃/h.In control group,it took about 26 h and the aver-age rate increased 1.8℃/h,which indi-cated that alcohol-based fuels per-formed better in heat supply.

        Curing costs

        As shown in Table 2,tobacco weight kept 24.41 kg higher relative to control after alcohol-based fuels were fired in barn.Specifically,the costs of dry tobaccos(1 kg)in barns were 3.27 and 1.23 yuan by alcohol-based fuels and coals.

        Table 1 Heat supply capacity of curing barns in different treatments

        Table 2 Comparisons of curing costs

        Appearance quality of cured tobac-cos

        As shown in Table 3,leaf struc-ture,identity,and oil content of cured tobaccos were better in treatment A than those of treatment B.What's more,the rate of yellow tobacco in treatment A maintained higher than that of treatment,but the rates of green tobacco and variegated tobacco were 3.12%and 0.75%lower.

        As shown in Table 3,leaf struc-ture,identity and oil contents all kept higher in treatment A than those of treatment B;the rate of yellow to-baccos was 3.87%higher in treat-ment A,but the rates of green and variegated tobaccos were 3.12%and 0.75%lower.

        Economic profits of cured tobaccos

        As shown in Table 4,treatment A performed better in terms of averaged price,the proportion of first-class to-bacco,per leaf weight,and output val-ue per kang(a heatable brick bed)de-ducting energy cost,which kept 1.09 yuan/kg,5.23%,0.13 g and 188.66 yuan higher than those of treatment B. Chemical components of cured to-baccos

        The coordination ofchemical components directly reflects tobacco ripeness,as well as taste quality[8].It can be concluded from Table 5 that bothoftwochemicalcomponents met the demands of high-quality to-bacco tobaccos.Specifically,reduc-ing sugar and potassium contents in treatment A maintained higher,but nicotine and total nitrogen were low-er.Therefore,chemical components of tobaccos in treatment A are much more coordinated.

        Table 3 Appearance quality of cured tobaccos

        Table 4 Economic profits of cured tobaccos

        Conclusion and Discussion

        In the research,alcohol-based fu-els allow flexible adjustment of tem-perature and heat supplying.What's more,in treatment A,the cured tobac-cos are softer and brighter,with more oil content and higher proportion of first-class tobaccos.Per leaf weight increased by 0.13 g and output value per kang (a heatable brick bed)de-ducting energy cost grew by 188.66 yuan.In addition,the contents of re-ducing sugar and potassium enhanced within the ranges of high-quality to-bacco,and chemical components are more coordinated.

        Alcohol-based fuel heating sys-tem is on basis of methanol,discharg-ing CO2and water.It is obvious thatthe fuel is a clean energy,reducing la-bor intensity.Furthermore,the cured tobaccos tend to be sifter and brighter with more oils.Besides,the treatment with alcohol-based fuel heating system performed better in the proportion of first-class tobacco,averaged price,per leaf weight and output value per kang(a heatable brick bed)deducting ener-gy cost,possibly caused by flexible temperature adjustment,good heating effects and simple curing techniques.

        Table 5 Chemical components of cured tobaccos

        Nevertheless,because methanol is flammable liquid,the potential safety hazard should be taken into considera-tion for further promotion.Besides,al-cohol-based fuels are energy con-suming,and methanol is expensive. Therefore,further exploration should be conducted on energy saving of al-cohol-based fuels.

        [1]Tobacco Research Institute,Chinese Academy of Agricultural Sciences(中國農(nóng)業(yè)科學(xué)院煙草研究所).Shandong Tobacco(山東煙草)[M].Beijing:China Agriculture Press(北京:中國農(nóng)業(yè)出版社),1999.

        [2]CUI ZJ(崔志軍),MENG QH(孟慶洪),LIU M(劉敏),et al.Tobacco straw gasifica-tion as an alternative to coal in tobacco curing(煙草秸梗氣化替代煤炭烘烤煙葉研究初報(bào))[J].Chinese Tobacco Science(中國煙草科學(xué)),2010,31(3):70-72,77.

        [3]FEI H(飛鴻),CAI ZD(蔡正達(dá)),HU J(胡堅(jiān)),et al.Study on Tobacco Baking With Biomass Energy(利用生物質(zhì)烘烤煙葉的研究)[J].Contemporary Chemi-cal Industry(當(dāng)代化工),2011(6):565-567,592.

        [4]GUO SP(郭仕平),XIE LW (謝良文),ZENG SH(曾淑華),et al.Research on application effect of flue-cured tobacco straw briquetting replacing coal on to-bacco flue curing(烤煙秸稈壓塊代煤在煙葉烘烤中的應(yīng)用效果研究).Modern Agricultural Science and Technology(現(xiàn)代農(nóng)業(yè)科技),2015,0(6);178-179.

        [5]TAN FL(譚方利),F(xiàn)AN SJ(樊士軍),DONG YH(董艷輝).Practical Effect of Biomass Briquette Fuel and Coal for Tobacco Curing(生物質(zhì)壓塊燃料及煤炭燃料在煙葉烘烤中的應(yīng)用效果對比研究).Modern Agricultural Science and Technology(現(xiàn)代農(nóng)業(yè)科技),2014,(10);201-201.

        [6]WANG YT(王彥亭),XIE JP(謝劍平),LI ZH(李志宏).Tobacco regionalization in China(中國煙草種植區(qū)劃)[M].Beijing:Science Press(北京:科學(xué)出版社),2010:24-29,36-37.

        [7]WANG RX(王瑞新),HAN FG(韓富根),YANG SQ (楊素勤),et al.Chemical quality analysis of tobaccos (煙草化學(xué)品質(zhì)分析)[M].Zhengzhou:Henan Sci-ence and Technology Press(鄭州:河南科學(xué)技術(shù)出版社),1998.

        [8]SUN FS(孫福山).Research on relation-ship of tobacco quality with tempera-ture,humidity,and yellowing degree(烤煙變黃期溫濕度、變黃程度與煙葉品質(zhì)關(guān)系研究)[J].Tobacco Science and Technology(煙草科技),1991(4):39-42.

        Responsible editor:Xiaoxue WANG

        Responsible proofreader:Xiaoyan WU

        醇基燃料密集烘烤應(yīng)用效果初報(bào)

        詹吉平*,杜超凡,盧雨,姜林榮 (福建省煙草公司龍巖市公司,福建龍巖364000)

        研究了醇基燃料密集烘烤的應(yīng)用效果,結(jié)果表明:使用醇基燃料進(jìn)行煙葉烘烤,溫度調(diào)控性靈敏、供熱效果好,烤后葉片更柔軟,油份更足,顏色橘黃鮮亮,上等煙比例提高5.23%,單葉重增加0.13 g,單炕扣除能耗成本后產(chǎn)值增加188.66元,其還原糖及鉀的含量在優(yōu)質(zhì)煙適宜范圍內(nèi)有所增加,內(nèi)在化學(xué)成分更為適宜和協(xié)調(diào)。

        烤煙;醇基燃料;密集烘烤;應(yīng)用效果

        福建省龍巖市煙草公司科技項(xiàng)目(2014-18)。

        詹吉平(1979-),男,福建龍巖人,碩士,主要從事烤煙生產(chǎn)與煙葉烘烤技術(shù)研究工作。*通訊作者,E-mail:zhanjp9811022@126. com。

        2015-08-06

        Supported by Longyan Tobacco Company S&T Project(2014-18).

        *Corresponding author.E-mail:zhanjp9811022@126.com

        Received:August 6,2015 Accepted:September 16,2015

        修回日期 2015-09-16

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