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为解决涉及一些较大分子的反应之固体酸催化问题,以价格便宜的硅酸钠为主要原料合成了磺酸基官能化介孔材料MSU,并采用固体核磁共振(SSNMR)等技术研究了所合成材料(MSU-SO3H)的结构和酸性.结果表明,合成的磺酸基官能化的MSU具有规整的介孔结构,其总体酸性略弱于微孔分子筛HZSM-5.  相似文献   
3.
沸石复混肥对油菜苗期养分吸收、产量及土壤性状的影响   总被引:1,自引:0,他引:1  
在盆栽条件下,比较了不同沸石含量的沸石复混肥对盆栽油菜苗期不同阶段N、P、K养分吸收量,油菜籽产量及土壤性状的影响.结果表明:沸石复混肥处理与对照复混肥比较,在苗期的前2个月,油菜吸收的N、P、K均为前者大于后者,而在第3个月开始,为后者大于前者.从整个苗期来看,相比复混肥对照,沸石复混肥处理的油菜N、P、K养分吸收量均有所下降,其中磷吸收量随沸石复混肥中沸石比例的增大而明显下降.沸石能减轻土壤酸化程度,提高土壤pH值,降低EXC-Mn.沸石在复混肥中的比例以10%~15%的含量较为合适,相比对照复混肥,增产可达9.7%.  相似文献   
4.
石灰性土壤交换性盐基组成的测定,通行的方法是采用70%乙醇溶液反复洗盐,再经pH 8.50.1 mol L-1氯化铵-70%乙醇(CH3CH2OH)溶液进行多次交换处理,测定交换液中的K+、Na+、Ca2+、Mg2+浓度。但此方法常常受操作步骤繁琐,以及土壤中碳酸盐的溶解量因多次浸提而增加的困扰,最终导致测定结果偏高。基于上述原因,选择不同浓度、不同pH的NH4OAc和NH4Cl 10种交换剂,对比分析10种交换剂中的碳酸盐溶解度和土壤交换性钙镁含量。结果表明,pH=8.5 1 mol L-1氯化铵-70%乙醇(CH3CH2OH)溶液较适合石灰性土壤交换性盐基的测定。此新方法是先经70%乙醇(CH3CH2OH)溶液洗盐,再用pH8.5 1 mol L-1氯化铵(NH4Cl)-70%乙醇(CH3CH2OH)溶液进行一次性交换处理,然后测定交换液的K+、Na+、Ca2+、Mg2+浓度,简化了操作程序的同时有效抑制了土壤碳酸盐的溶解,降低了测定结果的偏差。  相似文献   
5.
为生物炭应用于农田Cd污染的控制及治理提供相关科学依据,研究通过根箱试验,研究棉纤维生物炭对水稻根际和非根际土壤可交换态和不可交换态Cd含量及水稻植株中Cd分配的影响。研究表明:随着棉纤维生物炭的施用量增加,根际和非根际土壤可交换态Cd含量都呈下降趋势,同时不可交换态Cd含量都呈上升趋势。随着棉纤维生物炭的施用量增加,非根际土壤pH值呈逐渐上升趋势。非根际土壤pH值与可交换态Cd含量之间存在显著负相关关系,与不可交换态Cd含量之间存在显著正相关关系。可见,施用棉纤维生物炭可在一定程度上提高非根际土壤pH值,进一步降低了非根际土壤可交换态Cd含量;而根际土壤可交换态Cd含量的下降,主要受棉纤维生物炭的理化性质影响,受土壤pH值影响不大。随着棉纤维生物炭的施用量的增加,水稻各部位Cd含量及累积量都呈现下降趋势,其中籽粒Cd含量的下降幅度最大,为36.57%,根的Cd含量的下降幅度最小,为12.56%。由于茎鞘的生物量和Cd含量都较大,茎鞘中Cd累积量最高,平均为25.44μg plant-1,是籽粒的2.85倍。因此,在进行农田土壤Cd修复的同时,除了要关注农产品Cd污染,还要考虑如何妥善处理大量的富集Cd的农业废弃物,避免产生二次污染风险。  相似文献   
6.
Two pot experiments were conducted to evaluate biochar derived from dead dairy cattle as a mineral fertilizer, especially phosphorus (P) fertilizer, and to clarify the effect of particle size of biochar on plant growth (Zea mays L.) and P uptake. To produce the biochar, body parts of dead cattle were placed in a charring chamber and allowed to char at 450°C for 4 h. The biochar was of high pH and rich in major plant nutrients, especially P. Application of fine biochar (< 1 mm) increased P uptake by the corn plants grown in soil of low available P status. As a result, plant growth was improved following biochar application and dry matter production was also increased. The effect of the biochar application on the P uptake and plant growth was promoted by the application of mineral nitrogen (N) fertilizer. Soil analysis after harvest indicated that the biochar application increased soil pH, available P and exchangeable calcium (Ca) and magnesium (Mg) compared with the soil before seeding, while soil available N and exchangeable potassium (K) were considerably decreased. The decrease in the soil available N was incomprehensible, because the result of the mass balance given by the difference between input as the applied N from the biochar and fertilizer N and output as the N uptake by the plants was positive. We observed a similar result in the mass balance of K to the case of N. The medium (2–4 mm) and coarse (> 4 mm) grade biochar did not significantly affect plant growth, because P uptake was not, or was only slightly, increased by the application of these biochars. Dissolution of P from the coarser biochars was probably slower than that of the fine biochar. The lower dissolution of P from the medium and coarse biochars was supported by the lower P absorption efficiency of these biochars compared with that of the fine biochar and superphosphate. The effect of fine biochar on plant growth and P uptake was similar to that of superphosphate. We can therefore conclude that fine biochar derived from cattle carcasses is an effective source of P fertilizer and amendment for soil acidity. The N and K contents in the biochar, although relatively high, cannot be relied upon as a mineral fertilizer. Further studies are needed to assess whether the N and K contents of the biochar indicate it can be regarded as a useful fertilizer.  相似文献   
7.
Summary Aluminum toxicity due to the cation Al+3 is a major factor limiting yields in acid soils. Wide genetic variability to aluminum tolerance is found in oat genotypes. The objectives of this study were to determine the number of genes controlling aluminum tolerance in oats and to verify if any detrimental effects were present of the aluminum tolerance genes on grain yield and grain quality in Al+3free soils. Aluminum tolerance was estimated as the average regrowth of the main root after exposure to toxic levels of Al+3 in a hydroponic solution under controlled conditions. The number of genes controlling that trait was estimated from the distribution of the average root regrowth frequencies in a population of 333 recombinant inbred lines (RIL's) in generations F5:6 and F5:7. The effects on grain yield and grain quality were assessed in a subpopulation of 162 RIL's chosen based on their aluminum tolerance response. Aluminum tolerance in the evaluated population was controlled by one dominant major gene with the tolerant genotypes carying Al a Al a and the sensitive ones al a al a alleles. No detrimental effects of the Al a allele on grain yield or grain quality were detected.Part of the Master of Science dissertation of the first author  相似文献   
8.
将甜橙果汁与牛乳调和,通过单因素试验,对稳定剂成分、酸味剂配比、杀菌条件进行确定,然后通过L9(34)正交试验对主要原料配比、稳定剂各成分配比进行研究。结果表明,原橙汁20%,脱脂乳粉3%,蔗糖10%,柠檬酸0.25%,乳酸0.025%,高黏度CMC0.25%,PGA0.1%,高脂果胶0.20%,80℃下杀菌15min,可制作出质量和风味俱佳的甜橙牛乳酸性饮料。  相似文献   
9.
以脱脂牦牛乳为试验材料,发酵3.5 h滴定酸度为试验指标,在不同菌种最佳组合方式筛选的研究基础上,利用响应面Box-Behnken中心组合试验研究了4株筛自牧区、发酵性能优良的菌种:保加利亚乳杆菌(MGD1-3)、嗜热链球菌(MGB39-5)、嗜热链球菌(G81-1)、植物乳杆菌(BM5152)不同接种比例对牧区奶干渣发酵效果的影响。结果表明,优化得到最优组合式发酵剂为:MGD1-3体积分数3.06%、MGB39-5体积分数0.64%、G81-1体积分数0.55%、BM5152体积分数2.04%,滴定酸度为75.87°T。为了便于实际操作,确定最终体积接种比为:MGD1-3∶MGB39-5∶G81-1∶BM5152=30∶6∶5∶20,接种量体积分数为6.0%,该条件下进行3次平行试验,得到滴定酸度平均值为74.21°T;将接种优化后组合式发酵剂制成的奶干渣(试验组)与牧区采集奶干渣(对照组)进行感官与理化指标比较,结果表明该组合式发酵剂发酵性能优良。  相似文献   
10.
Abstract. Crops on sandy soils (<5% clay) are exposed to K deficiency due to the small release and high leaching losses of K. Reliable tools are needed to improve the K management in cropping systems with limited K input, such as organic farming where import of nutrients are restricted according to the EC regulations. We investigated K balances and exchangeable K (Kexch) changes in an organic crop rotation experiment. Potassium leaching decreased from 42 kg ha−1 in 1998/99 to 21 kg ha−1 in 2000/01 as an average of a crop rotation (spring barley, grass-clover, winter wheat and pea/barley) with manure application and without catch crops. In the same period, spring Kexch decreased from 5.0 to 3.0 mg K 100 g soil−1 (0–20 cm). The retention of the straw K left in the field after harvest increased with decreasing levels of Kexch. The cereal crops did not respond to K application but in the pea/barley mixture the pea yield increased by 46%. The concordance between measured K balances and changes in Kexch was weak. Exchangeable K is suitable as a tool for K management on a rotational basis, and a Kexch above 3 mg 100 g soil−1 in the autumn should be avoided to minimize K leaching.  相似文献   
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