农业工程学报
農業工程學報
농업공정학보
2005年
2期
111-115
,共5页
罗庆明%李秀金%朱保宁%杨懂艳%李来庆
囉慶明%李秀金%硃保寧%楊懂豔%李來慶
라경명%리수금%주보저%양동염%리래경
玉米秸秆%NaOH%负荷率%生物气%厌氧消化
玉米秸稈%NaOH%負荷率%生物氣%厭氧消化
옥미갈간%NaOH%부하솔%생물기%염양소화
corn stalk%sodium hydroxide%loading rate%biogas%anaerobic digestion
提出通过NaOH化学处理以改善玉米秸秆的可生物消化性能、提高玉米秸秆厌氧消化产气量的方法.NaOH添加量为玉米秸秆干物质的8%.对未处理和经NaOH处理的玉米秸秆进行了厌氧消化对比试验研究,厌氧消化负荷率为35,50,65和80 g/L.分析并比较了两者在不同负荷率下的日产气量、累积产气量、单位TS和VS产气量等.结果显示,与未处理玉米秸相比,NaOH处理过的玉米秸的干物质消化率和产气量明显提高,在35,50,65,80 g/L负荷率下,产气量分别提高了13.1%,39.8%,48.3%和47.8%,单位TS、VS的产气率分别提高了13.1%~48.3%、23%~61.3%;两种玉米秸分别在35和65 g/L负荷率下获得了最高单位TS产气量.NaOH化学处理使玉米秸细胞壁结构和化学成分发生了明显的变化,分别有53.2%、46.9%和66.6%的木质素、纤维素和半纤维素被分解,其中1/2~2/3被转化成了易被厌氧菌利用的可溶性物质,这是产气量提高的主要原因之一.研究结果对提高玉米秸的产气效率、实现大规模应用具有重要指导意义.
提齣通過NaOH化學處理以改善玉米秸稈的可生物消化性能、提高玉米秸稈厭氧消化產氣量的方法.NaOH添加量為玉米秸稈榦物質的8%.對未處理和經NaOH處理的玉米秸稈進行瞭厭氧消化對比試驗研究,厭氧消化負荷率為35,50,65和80 g/L.分析併比較瞭兩者在不同負荷率下的日產氣量、纍積產氣量、單位TS和VS產氣量等.結果顯示,與未處理玉米秸相比,NaOH處理過的玉米秸的榦物質消化率和產氣量明顯提高,在35,50,65,80 g/L負荷率下,產氣量分彆提高瞭13.1%,39.8%,48.3%和47.8%,單位TS、VS的產氣率分彆提高瞭13.1%~48.3%、23%~61.3%;兩種玉米秸分彆在35和65 g/L負荷率下穫得瞭最高單位TS產氣量.NaOH化學處理使玉米秸細胞壁結構和化學成分髮生瞭明顯的變化,分彆有53.2%、46.9%和66.6%的木質素、纖維素和半纖維素被分解,其中1/2~2/3被轉化成瞭易被厭氧菌利用的可溶性物質,這是產氣量提高的主要原因之一.研究結果對提高玉米秸的產氣效率、實現大規模應用具有重要指導意義.
제출통과NaOH화학처리이개선옥미갈간적가생물소화성능、제고옥미갈간염양소화산기량적방법.NaOH첨가량위옥미갈간간물질적8%.대미처리화경NaOH처리적옥미갈간진행료염양소화대비시험연구,염양소화부하솔위35,50,65화80 g/L.분석병비교료량자재불동부하솔하적일산기량、루적산기량、단위TS화VS산기량등.결과현시,여미처리옥미갈상비,NaOH처리과적옥미갈적간물질소화솔화산기량명현제고,재35,50,65,80 g/L부하솔하,산기량분별제고료13.1%,39.8%,48.3%화47.8%,단위TS、VS적산기솔분별제고료13.1%~48.3%、23%~61.3%;량충옥미갈분별재35화65 g/L부하솔하획득료최고단위TS산기량.NaOH화학처리사옥미갈세포벽결구화화학성분발생료명현적변화,분별유53.2%、46.9%화66.6%적목질소、섬유소화반섬유소피분해,기중1/2~2/3피전화성료역피염양균이용적가용성물질,저시산기량제고적주요원인지일.연구결과대제고옥미갈적산기효솔、실현대규모응용구유중요지도의의.
NaOH pretreatment was employed in order to improve anaerobic biodegradability and biogas yield of corn stalk.Corn stalk was first treated for 30 days at ambient temperature by sodium hydroxide (NaOH), NaOH amount added was 8% of dry matter of corn stalk. The untreated and NaOH-treated corn stalks were then anaerobically digested at mesophilic temperature (35℃) in batch reactors. For each corn stalk, four loading rates of 35, 50, 65 and 80 g/L were used. The results showed that NaOH pretreatment could significantly improve the biodegradability of corn stalk and increase biogas yield. The total biogas yield of NaOH-treated corn stalk was increased by 13.1%, 39.8%, 48.3%, and 47.8% over the untreated one for the loading rates of 35, 50, 65 and 80 g/L, respectively. The loading rates of 35 and 65g/L achieved the highest biogas yield per gram of TS(total solid) loaded, for untreated and NaOH-treated corn stalk respectively. The contents and dry matter of main compositions of the corn stalk were changed significantly through NaOH pretreatment, approximate 1/2 ~ 2/3 of lignin, cellulose, and hemicellulose decomposed were converted into readily biodegradable soluble compounds. The biogas yield per gram of TS and VS(volatile solid) loaded for NaOH-treated stalk were increased by 13.1%~48.3% and 23.0%~61.3%, respectively, as compared with the untreated one. The average biogas yield per gram of VS reduced was the same for both untreated and NaOH-treated corn stalk, but not for the average biogas yield per gram of TS reduced. The results provided useful information for large-scale anaerobic digestion of corn stalk for production of renewable bioenergy and reduction of pollution associated with corn stalk.