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作 者:李晓[1] 张吉旺[2] 李恋卿[1] 潘根兴[1] 张旭辉[1] 郑聚锋[1] 郑金伟[1] 俞欣妍[1] 王家芳[1]
机构地区:[1]南京农业大学农业资源与环境生态研究所,南京210095 [2]山东农业大学作物生物学国家重点实验室,山东泰安271018
出 处:《土壤》2014年第2期269-274,共6页Soils
基 金:公益性行业(农业)科研专项经费项目(200903003)资助
摘 要:本文通过大田试验研究了施用生物质炭对玉米的生长性状、产量以及土壤性质的影响。生物质炭是小麦秸秆在350℃~450℃下限氧热裂解制成。田间设置了20t/hm^2和40t/hm^2两个生物质炭施用水平。结果表明:①施用生物质炭在玉米拔节期抑制了植株生长,其株高、地上部生物量和叶片叶绿素含量均显著低于对照;在生育后期施用生物质炭20t/hm^2处理的玉米生物量、叶面积指数和叶绿素含量显著高于对照,40t/hm^2处理则没有显著性差异。②施用生物质炭显著影响土壤特性,在施用量为20t/hm^2和40t/hm^2时,土壤有机碳含量较对照分别提高34.79%和44.93%,土壤全氮含量在40t/hm^2水平下显著增加12.2%,同时还显著提高了土壤的pH和土壤含水量,显著降低土壤体积质量;③施用生物质炭玉米产量的提高范围为2.2%~4.8%,但不同施用量间差异不显著。本研究结果为生物质炭改良和培肥土壤、提高作物生产效率、促进土壤可持续利用及作物增产提供了一定的理论依据。This paper investigated and analyzed the effects of biochar on maize plant growth, yield and soil properties in field experiment, with the biochar addition at the rates of 0, 20 t/hm^2 and 40 t/hm^2. The results showed that, compared with the control (no biochar used), biochar amendment with 20 t/hm^2 and 40 t/hm^2 biochar inhibited the maize growth at the beginning growth, showed in lower plant height, less biomass and leaf chlorophyll content. With biochar addition at the rates of 20 t/hm^2, the maize plant maintained higher biomass, leaf area index and chlorophyll content in the late growth stage, but no significantly difference with 40 t/hm^2, With the biochar addition at the rates of 20 and 40 t/hm^2, soil organic carbon were increased by 34.79% and 44.93%, soil total nitrogen increased by 4.88% and 12.20%, respectively. Biochar amendments significantly increased soil pH and soil volumetric water content, but decreased soil bulk density. Compared with conventional treatment, the maize yield were increased by 4.80% and 2.20%, with the biochar addition at the rates of20 t/hm^2 and 40 t/hm^2, but no significantly difference with control. The results above provided a theoretical basis for biochar on improving soil fertility and enriching the efficiency of crop production in the Huang-huai-hai Plain.
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