KR20160120443A - 양자 적용기술을 활용한 에너지 방사비료물 - Google Patents
양자 적용기술을 활용한 에너지 방사비료물 Download PDFInfo
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- KR20160120443A KR20160120443A KR1020150049431A KR20150049431A KR20160120443A KR 20160120443 A KR20160120443 A KR 20160120443A KR 1020150049431 A KR1020150049431 A KR 1020150049431A KR 20150049431 A KR20150049431 A KR 20150049431A KR 20160120443 A KR20160120443 A KR 20160120443A
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- C—CHEMISTRY; METALLURGY
- C05—FERTILISERS; MANUFACTURE THEREOF
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- C05F11/00—Other organic fertilisers
-
- C—CHEMISTRY; METALLURGY
- C05—FERTILISERS; MANUFACTURE THEREOF
- C05D—INORGANIC FERTILISERS NOT COVERED BY SUBCLASSES C05B, C05C; FERTILISERS PRODUCING CARBON DIOXIDE
- C05D9/00—Other inorganic fertilisers
- C05D9/02—Other inorganic fertilisers containing trace elements
-
- Y02W30/90—
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- Chemical & Material Sciences (AREA)
- Organic Chemistry (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Inorganic Chemistry (AREA)
- Fertilizers (AREA)
Abstract
Description
도2는 본 발명의 양자 적용기술을 활용한 에너지 방사비료물이 입상 또는 분상으로 적용된 일례를 나타내는 제2예시도이고,
도3은 본 발명의 양자 적용기술을 활용한 에너지 방사비료물이 입상 또는 분상으로 적용된 일례를 나타내는 제3예시도이고,
도4는 본 발명의 양자 적용기술을 활용한 에너지 방사비료물이 입상 또는 분상으로 적용된 일례를 나타내는 제4예시도이고,
도5는 본 발명의 양자 적용기술을 활용한 에너지 방사비료물이 액상으로 적용된 일례를 나타내는 제5예시도이고,
도6은 본 발명의 양자 적용기술을 활용한 에너지 방사비료물이 액상으로 적용된 일례를 나타내는 제6예시도이고,
도7은 본 발명의 양자 적용기술을 활용한 에너지 방사비료물이 액상으로 적용된 일례를 나타내는 제7예시도이고,
도8은 본 발명의 양자 적용기술을 활용한 에너지 방사비료물이 액상으로 적용된 일례를 나타내는 제8예시도이고,
도9는 본 발명의 양자 적용기술을 활용한 에너지 방사비료물이 액상으로 적용된 일례를 나타내는 제9예시도이다.
Claims (5)
- 엽면비료와 토양개량제로 이루어지며, 엽면비료가 부식산, 아미노산, 기베레렉산, α-나프톡시아세트산, β-나프톡시아세트산, 트리아콘타놀, 사이토키닌과 같은 생장 조절제 100~4중량%에 대해 NPK 0~96중량%를 함유하고; NPK와 생장 조절제의 합계량에 대해 미량 영양성분 5~15중량%를 함유하며; 토양개량제가 부식산 100~60%이고, 미량 영양성분이 0~40%를 함유하고; 상기 부식산과 미량원소의 혼합물에 대해 계면활성제로서 2~7중량%의 방향족 숱폰산 축합 생성물을 첨가하여 이루어진 입상, 분산 또는 액상의 비료에 있어,
가우스(gauss)가 0G인 양자(quantum)가 전사된 것을 특징으로 하는 양자 적용기술을 활용한 에너지 방사비료물. - 제1항에 있어서,
상기 입상, 분산 또는 액상의 비료에 무기질 비료를 더 함유하며,
상기 무기질 비료 14-14-14 200~500kg에 대해 부식산 200~3500g, 혼합 미량 영양성분 20~150g 및 계면활성제인 방향족 숱폰산 5~15g을 추가한 것을 특징으로 하는 양자 적용기술을 활용한 에너지 방사비료물. - 제1항에 있어서,
상기 양자는 자기소멸 코일 방법, 무유도 트로이드 코일의 변형 방법, 위상 짝짓기 방법, 또는 플라즈마 튜브 방법 중 하나를 이용하여 양자 에너지 물질로 제조되는 것을 특징으로 하는 양자 적용기술을 활용한 에너지 방사비료물.
- 제1항에 있어서,
상기 양자는 오색혈토를 이용하여 제조된 양자 에너지 발생물질을 이용하여 제조되는 것으로,
분말 형태의 양자 에너지 발생물질로 이루어진 고형분과 증류수를 1:1의 비율로 혼합하여 슬러리화하는 단계;
상기 양자 에너지 발생물질을 여과하고, 일정한 입도를 유지할 때까지 분쇄하는 단계; 및
분쇄가 완료된 양자 에너지 발생물질을 침전시켜 고점도 상태의 양자 에너지 발생물질만을 채취하는 단계;를 포함하는 제조방법에 의해 제조되는 것을 특징으로 하는 양자 적용기술을 활용한 에너지 방사비료물. - 제4항에 있어서,
상기 분쇄 단계는,
슬러리화가 이루어진 양자 에너지 발생물질을 2000RPM으로 120분간 분쇄를 하되, 1mm의 비즈(beads)로 이루어진 분쇄수단으로 평균입도가 5㎛ ~ 6㎛의 입도로 유지될 때까지 분쇄하는 1차 분쇄 단계;
0.5㎜의 비즈로 이루어진 분쇄수단을 통해 3000RPM의 회전으로 180분동안 분쇄를 실시하여 평균입도가 1.3㎛ ~ 1.7㎛의 입도를 유지할 때까지 분쇄하는 2차 분쇄 단계; 및
0.2㎜의 비즈로 이루어진 분쇄수단을 통해 4000RPM으로 240분 동안 분쇄하여 평균 입도가 0.2㎛ ~ 0.4㎛의 입도를 유지할 때까지 분쇄하는 3차 분쇄 단계;를 포함하는 것을 특징으로 하는 양자 적용기술을 활용한 에너지 방사비료물.
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| CN109020755A (zh) * | 2018-09-26 | 2018-12-18 | 北京平安福生物技术研究所有限公司 | 应用于设施人参种植的活性小分子有机碳生物肥料及其制备方法 |
| CN109251083A (zh) * | 2017-07-12 | 2019-01-22 | 上海盛泽生物科技有限公司 | 一种可提高施肥效率的绿色有机肥 |
| CN109369246A (zh) * | 2018-11-06 | 2019-02-22 | 河南心能圆生物技术推广服务有限公司 | 一种非化学品叶面肥及其制备方法 |
| KR20200092661A (ko) * | 2019-01-25 | 2020-08-04 | 박철희 | 양자에너지 발생장치를 이용한 유기질비료 제조방법 및 그 유기질비료 |
| KR20250008190A (ko) | 2023-07-07 | 2025-01-14 | 주식회사 선두기업 | 양자에너지 발생장치를 이용하여 양자에너지처리된 고체형유기질비료를 이용한 액체화유기질비료의 제조방법 및 그 액체화유기질비료 |
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| CN109251083A (zh) * | 2017-07-12 | 2019-01-22 | 上海盛泽生物科技有限公司 | 一种可提高施肥效率的绿色有机肥 |
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| KR20250008190A (ko) | 2023-07-07 | 2025-01-14 | 주식회사 선두기업 | 양자에너지 발생장치를 이용하여 양자에너지처리된 고체형유기질비료를 이용한 액체화유기질비료의 제조방법 및 그 액체화유기질비료 |
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