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市場調查報告書
商品編碼
1324225
2030 年矽肥市場預測 - 按類型、可溶性類型、型態、用途和地區進行的全球分析Silicon Fertilizer Market Forecasts to 2030 - Global Analysis By Type (Calcium Silicate, Amorphous Silica and Other Types), Soluble Type (Water-soluble, Citrate-soluble and Acid-soluble), Form (Liquid and Solid), Application and By Geography |
根據Stratistics MRC的數據,2023年全球矽肥市場規模為18.9億美元,預計到2030年將達到25.6億美元,預測期內年複合成長率為4.4%。
矽肥包括化學肥料和天然肥料。矽肥通常用於水耕園藝作物、花卉作物、穀物和田間作物,如大豆、小麥和甘蔗。為了改善作物生長和產量,矽沉積在土壤、土地或植物表皮組織中。矽通過強化細胞壁、提供對細菌和真菌疾病的抵抗力、防止根部生根以及減少生物和生物脅迫來支持所有一年生作物和蔬菜作物的生長和產量。Masu。
據聯合國糧食及農業組織(FAO)預測,2021年至2030年,全球小麥和其他粗粒農業產量預計將成長約9%,相當於同等耕地面積。
影響矽肥需求不斷成長的主要要素包括都市化、對有機農業日益成長的興趣以及對健康、有機和永續食品的渴望。對永續食品的需求不斷成長是推動矽肥銷售的主要要素。德國對有機食品的需求正在增加,該行業可能會擴大。在印度,對小麥和水稻作物的需求正在爆炸式成長。因此,對矽肥的需求將隨著小麥和水稻的需求而增加,從而提高水經濟和小麥產量。有機農業實踐正在世界各地穩步擴展。因此,隨著有機農業的推廣,田間種植對矽肥的需求預計將大幅增加。
矽肥行業面臨的主要課題是生物肥料和天然肥料市場的擴大。此外,污染和作物產量的誤報也與矽肥有關。由於二氧化矽的 pH 值較高,因此不用於水耕法。因此,生物肥料作為無化學替代品的使用正在增加,但市場潛力有限。
對於園藝作物,矽肥可增加作物新陳代謝和葉子葉綠素含量,同時最大限度地減少營養失衡和金屬毒性。它還可以增強水果和蔬菜對鹽、乾旱和霜凍等環境壓力的抵抗力,並保護它們免受疾病和害蟲的侵害。因此,園藝作物能夠以更高的產量擴大產量,同時免受環境的有害影響。由於園藝作物產量增加,矽肥市場預計將進一步擴大。
矽肥等化肥對環境和使用者有害。如果矽肥料進入動物或人類的內臟,就會導致疾病甚至死亡。因此,這些因素限制了市場潛力。
由於2020年COVID-19大流行,世界各國政府實施了嚴格的封鎖法規,矽肥市場的成長受到阻礙。因此,田間作物產量、園藝作物產量和其他相關作物類型在 2020 年前幾個月均出現下降。然而,2021年,農作物產量的增加和封鎖相關法規的放鬆提振了矽肥市場。
預計液體細分市場將在預測期內佔據主導市場佔有率。許多農民更喜歡液體矽肥,因為它們更容易在整個田地中均勻地施用和分配肥料。此外,液體矽肥對於農民來說也是一個更實用的選擇,因為它很容易與其他液體肥料和農藥混合。
矽酸鉀是型態經常使用的矽肥料,因為它溶解度高且易於被植物吸收。矽酸鉀具有廣泛的用途,包括腐蝕抑制劑、植物肥料和混凝土緻密劑。在木結構住宅中,它還可以起到阻燃劑的作用。此外,它還為植物提供矽和鉀,這是植物生長和發育的兩種必需營養素。這些優勢正在推動這一領域的擴展。
亞太地區在矽肥行業中佔據最大佔有率。這是因為該地區農業規模龐大,人口不斷成長,糧食需求不斷增加,導致對高效肥料的需求不斷成長,以提高農作物產量。此外,該地區主要矽肥生產國和消費國包括中國和印度,推動了市場擴張。
由於對有機食品和永續農業的需求不斷成長,預計北美矽肥市場在預測期內將迅速擴大。在美國、加拿大、墨西哥等國家,矽肥使用頻繁,且對環境友好。此外,隨著農民意識到矽肥的好處,預計北美地區矽肥的使用量將會增加。
According to Stratistics MRC, the Global Silicon Fertilizer Market is accounted for $1.89 billion in 2023 and is expected to reach $2.56 billion by 2030 growing at a CAGR of 4.4% during the forecast period. Silicon fertilizer can be either chemical or natural. Silicon fertilizers are frequently used in hydroponically grown horticultural, floricultural, and field crops like cereals, soybeans, wheat, and sugarcane. To improve crop growth and yield, silicon is deposited in soil, land, or plant epidermal tissue. They support the growth and yield of all annual and vegetable crops by helping to strengthen cell walls, providing resistance to bacterial and fungal diseases, preventing lodging, and reducing biotic and abiotic stress.
According to Food and Agriculture Organization (FAO), in 2021-2030, global agricultural production is predicted to increase by roughly 9% for wheat and other coarse grains, which will be on the same area of arable land.
Some of the main factors influencing the growth in demand for silicon fertilizers include urbanization, an increase in interest in organic farming, and a desire for healthy, organic, and sustainable foods. The growing demand for sustainable food products is the primary factor driving silicon fertilizer sales. The industry will expand as a result of Germany's increasing demand for organic foods. In India, there is an explosive increase in demand for wheat and rice harvests. As a result, the demand for silicon fertilizer increases along with the demand for wheat and rice, which together help boost the water economy and wheat yield. The practice of organic farming is steadily growing throughout the world. So, with the adoption of organic farming, there would be a significant increase in the demand for silicon fertilizers for field crops.
The main challenges for the silicon fertilizer industry are the expanding bio- and natural fertilizer markets. Furthermore, pollution and falsified crop yields have been linked to silicon fertilizers. Silica is not used in hydroponic crop cultivation due to its high PH level. As a result, the market's potential is being restricted by the growing use of biofertilizers as chemical-free substitutes.
For horticulture crops, silicon fertilizer increases crop metabolism and leaf chlorophyll content while minimizing nutrient imbalances and metal toxicity. It fortifies fruits and vegetables by increasing their resistance to environmental stresses like salt, drought, and frost, as well as by shielding them from diseases and pests. As a result, the horticulture crop expands its production with higher yields while also being protected from the damaging effects of the environment. The market for silicon fertilizer is anticipated to expand further as a result of the rising production of horticultural crops.
Chemical fertilizers, such as silicon fertilizers, are harmful to the environment and those who use them. When silicon fertilizers enter an animal's or human's internal organs, they can lead to illness and even death. As a result, these elements are limiting the market's potential.
Due to strict lockdown regulations put in place by governments all over the world in 2020 as a result of the COVID-19 pandemic, the silicon fertilizer market's growth was hampered. Field crop production, horticulture crop production, and other related crop types all experienced a decline in the first few months of 2020 as a result. However, in 2021, there was an increase in crop production, which fueled the market for silicon fertilizer due to the ease of lockdown-related regulation.
During the forecast period, the liquid segment is anticipated to hold a dominant market share. Many farmers prefer silicon fertilizer in liquid form because it is simpler to apply and results in a more even distribution of the fertilizer throughout the field. Furthermore, liquid silicon fertilizers are also a more practical choice for farmers because they mix easily with other liquid fertilizers or pesticides.
Potassium silicate is a form of silicon fertilizer that is frequently used because of its high solubility and easy absorption by plants. Potassium silicates have a wide range of applications, including as a corrosion inhibitor, a plant fertilizer, and a concrete densifier. In wooden homes, it serves as a fire retardant as well. Additionally, it provides plants with silicon and potassium, two nutrients essential to the growth and development of plants. Such advantages are boosting the segment's expansion.
With a significant share of the market, Asia-Pacific is regarded as the largest region in the silicon fertilizer industry. This is because the area has a sizable agricultural sector, a growing population, and rising food demand, which has led to a greater demand for efficient fertilizers to increase crop yields. Additionally, major producers and consumers of silicon fertilizers in the region include China and India, which is boosting market expansion.
Due to rising demand for organic food and sustainable agriculture, the North American market for silicon fertilizers is anticipated to expand rapidly in the forecast timeline. In the United States, Canada, Mexico, and other countries, silicon fertilizer is frequently used and is environmentally friendly. Furthermore, as farmers become more aware of their advantages, the use of silicon fertilizers is anticipated to rise in the North American region.
Some of the key players profiled in the Silicon Fertilizer Market include: Agripower, Aries Agro Ltd. , BASF SE, Denka Co. Ltd., Fertipower Norway, Fubang Fertilizer, Fuji Silysia Chem, Goodearth Resources Sdn Bhd, Ignimbrite, Maileduo Fertilizer, MaxSil, Multimol Micro Fertilizer, Plant Tuff Inc., Redox Pty Ltd. , Vision Mark Biotech, Yara International ASA and Zhongnong Lvhe Silicon.
In July 2023, BASF and Zhejiang Guanghua Technology Co.,Ltd. (KHUA) have signed a Letter of Intent (LoI) for the supply of Neopentyl Glycol (NPG) from BASF's Zhanjiang Verbund site to KHUA. This agreement marks a significant milestone in the long-term partnership between both parties.
In June 2023, BASF is inaugurating the expansion of its Innovation Campus Shanghai, China, consisting of two new research and development (R&D) buildings. The company has invested a total of €280 million since 2012 to its Innovation Campus Shanghai, thus enhancing its innovation capabilities and better support its customers in China and across Asia.
In May 2023, Denka Company Limited has decided to conduct joint research with Transform Materials LLC, a global microwave plasma technology provider, to establish its technology for realizing the low-carbon production of acetylene. The signing ceremony was held on May 23, 2023.